Transcript
#868: Tim’s Founder Kitchen — From Brainstorm to The President’s Office in Two Months (Featuring Jake Becraft, Strand Therapeutics)
0:00 In genetic medicine, I would call it the holy grail. For the last thirty years has been thinking about How do we Administer intravenous. Which means into the bloodstream.
0:11 genetic medicines. That can get to places throughout the body. We've been trapped in one organ for the past thirty years, and that's the liver. We're the first company that I'm aware of to show this extent of ab scopal response in visceral deep. organ metastes in a
0:34 multitude of patients. And really right off the bat. But I want The world to understand. Is that we are standing right now. On the precipice.
0:44 Uh. A revolution. In genetic medicine. we're going to be able to get to a point in the not too distant future where I think a lot of types of cancers are at the very least. Chronic diseases instead of death sentences.
0:58 Hello, boys and girls, ladies and germs. This is Tim Ferris. Welcome to another episode of the Tim Ferris Show where it's my job to deconstruct world class performers. Has been my job for more than a decade. This episode's gonna be in experimental format. It's gonna be half interview. half live jam session because Many of the most fascinating conversations that I have.
1:21 I cannot record. They're often involving startup founders because for close to twenty years I've been an angel investor. That started in two thousand eight in the Bay Area. And some of those companies include Shopify. I was the first advisor when they had something like ten or twelve employees, Uber, pre seed round advisor. Then you got Facebook now known as Meta, Twitter, Alibaba, Duolingo, Clear. It goes on and on. And Certainly plenty of fatalities, but when things are interesting, they are so interesting. And I've wanted to share some of these conversations, but when they're about fundraising or something really confidential, I can't do that. So I want to think up
1:55 How I could create A series. In this case, we're calling it as a placeholder Tim's Founder Kitchen. I'm sure there's a better name. Please let me know on X at T Ferris if you have suggestions. But these are gonna be Actual brainstorming slash jam sessions with founders who are willing to share the audio. And in this case
2:16 We have an episode with Jake Braft. Of Strand Therapeutics, which is one of the companies I am most excited about. They're very, very bold. And in this conversation, you will hear. An actual early stage brainstorming session that led two months later to those talking points being with the president of the United States in the Oval Office, so to speak. So
2:39 You will get to track A position in conversation. And a comms conversation. And the homing in on that message. that ultimately leads to hopefully some real high level policy change involving
2:53 Testifying in front of Congress and all sorts of stuff. So this is a rare instance where you get a before and after. And so that's a two part conversation with Jake. In the process of listening to this, you will also Learn. a lot about the future of medicine. You'll learn a lot about genetic medicine. And the whole thing I think is very, very exciting. Now if you want to skip to part two where we kind of find our groove and you get to hear about the results of the earlier conversation. You can do that by hopping to about one hour and eighteen minutes, but you will miss
3:26 the early questions and the process of refining and refining and refining. that ultimately led to those results. And had one more note on that initial dinner where Jake and I met in Boston, there were two other attendees. You have Jamie, who is CEO of Alden Scientific, A L D E N, and then you have Phil, who is CEO of Holobi, H O L O B I O M E.
3:50 And both of them. ended up winning ARPA H grants. for the research and work that they're doing. And ARPH for people who don't know. is modeled on the defense agency DARPA, which is incredible in its own right. And RBH does not operate its own laboratories, instead it
4:06 funds or empowers visionary teams to take bold, seemingly impossible challenges in human health. And they do that by pulling from private industry, universities, and elsewhere. So this is for The high risk, high reward. experiments and projects in biomedical and health breakers. In any case
4:25 Who is Jake in brief, but I won't spoil the party by giving you a polished description of Strand just yet. I will say Jake B. Craft is the CEO and co-founder of Strand Therapeutics, a company building one of the most advanced programmable genetic medicine platforms in biotechnology. You can find him on X at Dr. SinBio. That's D-R-S-Y-N-B-I-O. And Strand, be sure to check it out. Strand, as you would expect, S-T-R-A-N-D. Tx.com. That's strand TX.com. I really enjoyed this conversation. It's an experiment, so please, please let me know what you think. On X is probably the easiest way to do it at T Ferris, T-F-E-R-R-I-S. And without further ado,
5:09 That was a long preamble because I wanted to set the stage and I do really want your feedback on this. How can I make this better? How can I make it more interesting? Let me know. But Let's get to Jake. Be craft. Optimal minimal.
5:22 At this altitude, I can run flat out for a half mile before my hands start shaking. And I also do personal questions. Now it's in the time. A cybernetic organism, living tissue over metal indoor cellar. S Please bear with the first description when we start off.
5:48 That is the starting point, and Jake later gets all fired up as I expected him to. And you'll see how we start kind of top of the funnel, something very broad, and it gets refined, refined, refined, refined. And then that leads into the second part where we get to talk about the results. What does strand do? So strand designs what we call
6:12 Next generation. Genetic medicines. You have DNA inside of your cells. The DNA makes RNA copies of itself, and then that RNA makes proteins. And actually life. is all proteins your skin your hair
6:27 Your organs, every cell is basically just proteins stacked together. That is everything that we are, right? You don't really see the DNA and the RNA. It's very small. The protein is what we think of as like our being. And so The way to actually intervene in disease, the way to get to its core. Is to Create the correct proteins. If you have a deficiency, everything from an enzyme problem to a rare disease to cystic fibrosis, it's usually a problem.
6:56 With a protein that is being incorrectly made by a cell. And so what we have figured out over decades and decades is. What's gone wrong with that protein and what would need to go right to fix that protein or how you would replace that protein correctly. What we have not figured out. is how to make the cells do that. And that's because it's actually a very complicated it's very complicated problem to tell certain cells in the body to do various different things. And so what we are really focused on building
7:27 We know what proteins need to be made. We know where they need to be made. What we need to do is get the message of what type of protein. be made and we need to do that effectively and safely. And so what we have
7:44 essentially figured out a way to do is take that message, which is in the form of an a molecule called RNA. A lot of people are familiar with it from the COVID vaccines, but those are very small examples of what RNA could actually be utilized to do. And then we have found a way to send those messages into the body into diseased areas where they can access the cells and essentially return the cells to a state of homeostasis, which either corrects the problem or, you know, in the case of cancer, removes the problem, any of those pieces. And so that's the base case of what we're trying to accomplish. Mm-hmm. Let me back up and give people a little context. So the first time we met
8:21 was in Boston at a dinner. Do you want to describe? I don't think they'll mind. Who else was there? Who else was at the dinner? Another biotech CEO, Phil Strandwitz, and a I don't know how to classify Jamie's job. He's a leading professor at the MIT. Yeah, polymath.
8:39 MIT Media Lab, Professor Healthcare Entrepreneur, Advisor to Anyone who wants to know fancy things. Sort of guy. And then me. I'm already an investor in Holobiome.
8:51 Phil's company, love what Jamie's up to, and very interested in what he's building as well. We can put that in the show notes. We'll put all that in the show notes. And then we met. And part of the reason I became very interested in strand, there were a lot of reasons. So one is The technology, the results, the photograph. Or I should say images that you showed me, which we'll get to in a second. Second is founder builder who is technical, but for whom also this company
9:18 This is going to be a strongly worded statement, but is like existential. You're not a hired gun CEO who has been brought in. This is very much entwine with your identity and personal mission, which I find very attractive. Quite.
9:34 Interrelated with that is the fact that I found you to be a very good Communicator. over that dinner. I learned a lot. You recommended a number of books to me at the dinner and then afterwards. I'd say chief among which was the Genentech origin story, which is one of the best, I would say, business books I've ever read. Just unbelievably good. Cause it also, and I can't believe it made it past all the genentec sensors, but like actual contracts. I mean, screenshots of contracts, negotiations, mistakes.
10:04 All of the serendipitous lucky moments and unforced errors by universities and so on that had to coalesce for Genentech to even survive. It's just an incredible story. And I Also Just again, this is more for people listening than
10:24 For you, but I'll continue to fluff a little longer, which is also that you seem to me to be very aggressive without being Haphazard. You were just furious at this dinner when I started trying to get an idea of the general biotech scene in Boston and asking questions about various startups and figures and companies at how conservative and dogmatic, maybe would be a very
10:50 generous way to put it, you view a lot of folks Not all. But the default, right? The status quo. And In contrast how you're going.
11:00 You're taking big swings, right? You were taking big swings. So all those things are attractive. When it comes to strand, let's Talk the image for a second. What was the image that you showed me? Or images. I
11:14 Happened to show you a a photo. one of the very first patients that entered our trial, the way that these early stage trials work. In oncology. This was in patient with stage four melanoma. In early stage trials, you end up with patients who have been through every exhausted every option by the time they end up in your trial.
11:34 And they're often have pretty progressed disease. You hope you can offer something to these patients. They had melanoma, so that's a skin cancer, but they had not only aggressive what we call cutaneous metastasis, which is across their surface of their body and the skin, but they had what's called visceral metastasis, which is that's actually what kills you in melanoma is the metastasis to the organs of your body and it was in their lungs. It was in other sorts of areas.
12:03 I think muscle deposits and bone deposits and in addition to that, this patient had had multiple other therapies that melanoma responds very well to. What's unfortunate about the current state of affairs in in melanoma and in some cancers is we have these immunotherapy drugs. Yeah. biggest blockbuster of the last few years is a drug called Ketruda from Merck.
12:26 incredible miracle drug won a Nobel Prize a few years ago. In melanoma, if you respond to that drug, a lot of patients do. That's Right. If you don't. the likelihood of survival.
12:40 begins to diminish very quickly. And this patient had had Key true they had had a whole number of other drugs through many what they call lines of therapy. You get a drug Your cancer responds or it doesn't. If it doesn't respond, you go to the next and the doctor, the oncologist cycles you through a number of drugs. And this patient was at a fairly advanced hospital that not only had given them what they call the standard of care and then the second line standard of care, they had given them actually a number of other just like Maybe this will work, maybe this will work, you know, you're trying to help the patient stay alive. And the picture that we have, and this is in, you know, if someone if you Google our ASCO poster, which is a big clinical oncology conference. How do you spell ASCO?
13:23 A S C O, it's an abbreviation for the American Society of Clinical Oncology. It's a meeting. every summer in Chicago that Sort of is the big breakthroughs in clinical medicine For oncology. It's the top of the top in a lot of ways.
13:40 for people big results, small results. We had presented this photo there, and I had met you a little bit afterwards to show the photo itself is quite striking, and it's in that poster. Yeah. It's basically a body riddled with Cancers. They're everywhere.
13:57 I like to say you don't have to be an oncologist to look at that scan and understand the extent. Of which This patient responded. Sort of. Just riddled.
14:08 And then No more. And As a scientist, right? You Tim, you mentioned something earlier, which was this is more than a company for me. And actually a company is only about
14:21 One. third to one half of the time that I've spent on this like mission to make genetic medicine work correctly for patients. You know, one of the greatest accomplishments in that career that I've had thus far is being able to like say that you did help a person. If that was just one person, one patient. I'd say Wow, what uh what a career. We dream of more. We have big ambitions here at Strand. I have ambitions for what we're gonna how many people in the scale at which we're going to be able to help people, however.
14:52 That was The first time that I really felt like our science went out into the world and it took someone's grandmother and Not only kept them alive, but were a year and a half in. And they still have no detectable Legions. Yeah, it's it's wild.
15:06 In the investor deck, right? The pitch deck. that I initially Read and had I apologize for that, but like a million five hundred thousand questions about. What
15:19 for the non technical folks. The Muggles. They can look things up and are curious. What are things that stuck for them? Like particular slides. Or phrases.
15:30 Certainly the images, but is there anything else that comes to mind? that really resonated with people from that deck. I think There's one other bigger, you know, generalist investor who had come into the round personally. And I had been having a conversation with them about something in oncology that we call the Kaplan Meyer curve. Kaplan Meyer curve, if you're looking at oncology results, is sort of a survival graph.
15:53 So you have, you know, you maybe look at like two years. And you look at From a hundred percent where you start the study. And then it looks like a step ladder going down. The standard of care line has some amount of, you know, people like steps down and you wanna have your drug be significantly above that. Either having more people alive longer, or you know, you have like a what they call the long tail where like Everything goes to zero in standard of care at a certain time point, but you have an amount of patients that just like
16:22 look cured. They continue on for many years. And in drug development, we get very used to looking at those graphs and sort of making very statistical calls and saying, Oh, this doesn't look like it's active, or this drug's uh isn't that great. But Think One of the things that I've spoken to some generalists, some of our larger investors who maybe aren't from the biotech world, and I've I've tried to zero in on some of those survival graphs with.
16:47 Інове степс. These are Lives. The lines that go down on the set the vertical part of the step is
16:56 Someone's loved one die. But the ones that go horizontal and every time you see Something go further along. That is someone who got to expire even if it's just Three months.
17:09 You have no idea what that means within that person's life. And When we take that Kaplan Meyer curve and those steps, and we zero in on each patient. We start to look at them and we start to say, like, this is a patient that didn't think they would see. Christmas in twenty twenty four.
17:28 And they just celebrated The new year of twenty twenty six. Tá. I think is meaningful in what we're doing. Now whether or not that will be a good product.
17:39 The good drug Is like Can someone take this? And it does sound like a good dr injecting a therapy into someone. In a way that is Very hard to replicate, but did a great thing for that individual person is a good drug, fundamentally. It is a good drug. It helped that person.
17:57 And a good product is much more This is where the idea of how we get medicines to people come into play. I'll give you a different example. There's something else that we're working on called in vivo cell therapy. Essentially there's an entire type of science that we have discovered how to take the immune cells out of a patient, take their immune cells out, reprogram them. So that they learn how to attack
18:22 Cancerous blood cells. and then put them back into a patient. They are phenomenal drugs. There are people who are about to die of like myeloma. And then they get this struck.
18:34 But the drug costs. Not Making money the drug costs. Seven hundred fifty thousand dollars to make. just to manufacture. It costs
18:43 Three months of time. to manufacture. It's very hard to see a world in which that drug has a large impact on the patient population because of the
18:54 The fundamental cost, the cogs, the cost of goods sold, not biotech, just straight business. The cost of doing it and the time it takes to get it to people. That's a bad product. And so If you could say Instead of taking the cells out of the body
19:11 If you could reprogram them while they're still in the patient. Now you have a good product. You know, if you can make the cells recognize the cancer, the immune cell's program to activate against the cancer in the same way. but make it an outpatient procedure where a patient just gets hooked up to an IV bag for two hours and then goes home.
19:31 That is a phenomenal product. I have to look at this from the perspective of a non specialist because that's what I am. But If you were giving a TED talk on this and had to kind of get across At least part of what you're doing. I feel like what you just said sort of hits the nail on the head within the first few minutes. You'd have to talk about the central.
19:52 Dogma, so to speak, of DNA as master copy, so to speak. M R and A. And then protein. But Just like in a in brief, could you describe what the treatment actually looked like for the patient in those photographs, the before and after.
20:08 Like dots everywhere representing tumors and then Holy shit. I think everyone, whether they're technical or not, that looks at that deck probably had the same response. To those images. In cancer, you have chemotherapy, I think people are fairly familiar with. You also have immunotherapy, which is the ability to activate the immune system. to attack the cancer directly. And that's what some of the biggest blockbuster drugs of all time are currently Merck's Keetruda, Bristolmeyer Squibbs, Op Devo, and then there's a number of other types of immunotherapies which are classified as
20:43 Checkpoint blockades. So What that is. is Your cells essentially have a way to tell the immune system that they
20:53 are your cells So you don't want your immune system to attack your own body, obviously. And so one of the mechanisms that you have is this IMU signal that you can send to the immune system, your cells can send to the immune system. Cancer has hijacked that mechanism. To protect themselves.
21:10 From being attacked by the immune system. And what we figured out was a way to block those signals. And that's the entire field of immunotherapy, not the entire field, but I would say a vast majority of the field of immunotherapy and the successes of the last decade of treating cancer and also commercial success for a lot of these companies has been based on. Further refining better checkpoint. The problem With that. Is that
21:36 They're all very similar. mechanistically. And so if one doesn't work. If you have cancer and I give you ketruda and it doesn't work. The chances that the next types of therapies will work. Since all of them are very similar mechanistically.
21:52 The chances diminish quite drastically. And there's some nuance here. And I'm sure if there's, you know, oncologists listening to me and they're like, no, but you don't know. And double negative this cancer, if you combine with these, it doesn't matter, right? In general, these mechanisms. become degenerative and we don't have good additional options to excite the immune system. A second Theory. For going back to the nineties was If instead of just
22:19 blocking the cancer's ability to hide from the immune system. If that's not enough, what we actually need to do is we need to activate the immune system directly. And it would be best if you could send that activation signal from the tumor itself. So now you have a tumor instead of just blocking the tumor's ability to hide, you actually have a tumor that's sort of screaming like, I am a foreign object. Please come and Eat me. That's kind of how immune systems kill things. They like eat the other cells. And so
22:50 The issue. This is not new. This is Basic science from immunology from the ninety's the problem is. We haven't had a good way to get the tumors to send those signals. We've tried to make the signals in the lab and then inject them into the tumors, and the problem is the signal just like
23:07 goes away immediately and then it's circulating in the body and the immune system doesn't know what's sending the signal. We've tried everything we can to like make this signal artificial and get it into the tumors. And every single time we've uh we do it, it's either not enough in terms of no efficacy, or it activates the immune system in all sorts of places. We don't want it, and it causes all sorts of toxicities. And so What we're doing With our medicine.
23:32 Is Delivering the instructions. into the cancer cells. In a way that causes the cancer to basically send its own signal out. So it's artificial in that we have made it in a lab, but instead of making the signal, we're making a message that tricks the cancer into sending the signal.
23:52 And so That is drastically different. It makes a huge difference in both safety and efficacy because now you are Recapitulating
24:03 How? the signal works naturally. If the cancers weren't cancerous, if they were just deregulated and they cells were starting to grow out of control, your cell would naturally send the signal and be like, Oh no, something's wrong. And your body would take care of it. You actually generate cancer like all the time in your body in terms of dysregulated cells, your immune system just comes in and takes care of it before it becomes like a You know, when it becomes a real problem. That's when you get tumors, that's when you get the disease we call cancer. And so
24:31 What we're doing is we're sort of resetting that system. We're having the tumors resend the signal out. And so What We created in that first drug. Was a very simple administration procedure. You take our genetic medicine and you inject it into the tumor directly. And what that does.
24:50 Is the immune system comes into the tumor. And it kills it. But then. It gets activated by that killing process, and it learns what the tumors look like, and it can better identify the other tumors that have been hiding. Throughout the body.
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27:38 That's the point that I was hoping to get to. It's basically like in this case of this patient, not to be laborer. this point, but it's like you injected, if I'm remembering correctly, into cutaneous, meaning like at the just under the skin. Not sure what the right term is nodules like instances of cancer. So my follow up question was gonna be like Well, then how do you suddenly get to the visceral instances? And I think that's what you're describing.
28:03 So it within the world of oncology. Is that a novel observation? Is that something that is new in terms of being able to do that? So it it's something called the abscopal response or the abscopal effect. Which means that One tumor is sort of what you've put the activating drug into, and that's where, you know, the immune system will attack first. But now the immune system is activated and
28:26 Educated. to go and kill the other tumors. It's not new in the fact that like I didn't come up with that name. It has been observed in limited other settings of a few other drugs that people have gone out with. The problem has been that it's been very, very limited. In terms of the ab scope response that other people have seen, so
28:48 For instance, you would have a patient with a tumor maybe melanoma patient, so they'd have a cutaneous lesion, a skin lesion on their chest, and then they'd have another one on their shoulder. And you would inject the one on the chest and the shoulder one would also kind of shrink. They're in the same region. The immune system is sort of like fighting the cancer in the same region, but you wouldn't necessarily see that happen in like the lungs. And so one of the Big. pushbacks on a drug like the one that we took to the clinic two years ago was
29:18 You don't die from having tumors all over your skin. You die from when they metastasize into your lungs and into your liver and impact the organ functioning, right? That's how patients die of melanoma. So if you are only able to address the tumors that you can either inject or that are near the injected tumors. You won't have an effective drug if a patient already is like further along.
29:40 We are to my knowledge. One of the first companies, if not the first company, to demonstrate a direct injectable drug into the tumor. That In a
29:51 large number of patients. This isn't a one off. It wasn't one miracle patient. That is a beautiful photo of that patient. And I'm so happy that they're still on the trial and still doing great. And that's amazing. But you know, this is about being broadly applicable because that's how you actually impact population level lives. And so We're the first company that I'm aware of to show this sort of like extent of ab scopal response in. visceral deep. organ metastes in a multitude of patients. And really right off the bat. I mean, this is from the very first patients we put on this trial.
30:25 At the very beginning of it. began responding. That is Very uncommon. It's very uncommon to have patients on a phase one trial on the drug six months later. And of our first three patients that ever entered this trial in the summer of twenty twenty four. Two of those three are still on the trial eighteen months later.
30:46 That is something that I think is Fairly. Shocking. If we were A traditional biotech company.
30:52 We'd be really happy with all of this data. And we'd say, Wow. Let's take this forward. However, Yeah, I think the real message of strand and what we can accomplish in genetic medicine is
31:06 We don't have to stop it just injecting into the tumors. There are a number of concerns with injecting from a product perspective. Not a drug perspective, but a product perspective. The difference between
31:18 A drug is all about does this work? And a product is about How will these patients get these drugs? And Injecting directly into a tumor. Is doable. And most oncologists can handle it, especially for skin cancer patients. But as you go to rural health communities, it gets harder and harder to have doctors that have that training. And as you get to other sorts of tumors beyond skin cancer patients,
31:40 Some of their skin lesions have been removed by a surgeon, and then you go beyond skin cancer, how are you going to inject a patient with non small cell lung cancer? Like you start to get this I idea of you there's a limited amount of patients you can access, right? And so you have a product. Maybe limitation. In cancer, the way that we actually treat cancer patients is that there's an infusion clinic, you go to the infusion clinic, the oncologists and the nurse practitioners and everyone technicians hook you up to some sort of an infusion, and then the oncologist can monitor multiple patients at a time. And that's what our infrastructure looks like right now of how we treat patients. And if you want to have the largest impact in medicine, you need to make medicines that plug into existing infrastructure. As much as you want to like tell everyone, hey, change everything about how you think about treating patients, the way to like have a near term impact is to build drug solutions that can plug into existing infrastructures.
32:32 You know, if we become a giant biotechnology that has all sorts of resources. Maybe we can talk about changing how everyone gives drugs, but for right now, we do need to if we want to be able to help the most amount of patients in the near term, we need to plug into that infrastructure. We need to find ways that we can access organs. I say In addition. The bloodstream is also a really good way to get around the body, believe it or not. The bloodstream carries oxygen to everywhere in your body. And so if your drugs can travel through the bloodstream and get where they're going. Very effective. In genetic medicine, I would call it the holy grail.
33:06 for the last thirty years has been thinking about How do we IV administer intravenous Which means into the bloodstream. Administer.
33:15 genetic medicines. That can get to places throughout the body. We've been trapped in one organ for the past thirty years, and that's the liver. The liver naturally filters your blood. And thus it picks up a lot of these genetic medicines that we put into the bloodstream.
33:32 And so what we've done For the last thirty years. is figure out how we can treat diseases in the liver. With this like you know it's this old internet meme, right? Which is like step one, blank, step two, question mark, step three, profit. Right. I remember like the old days of Reddit. People used to use that structure, right? Step one, do this, step two, question mark, step three, profit. In biotech in genetic medicine, the joke is like step one, prove it works in the liver. Step two, question mark, step three, We'll treat all these diseases, and after thirty years.
33:59 We've really nailed step one. And step two has remained this like big question mark. And so when we started strand. Our number one goal actually was not. even to get to this first drug, as amazing as it's been for these patients and as Happy as I am.
34:14 That we have been able to help those people in their lives, and as impressive as it is. Our main goal was to solve this step two question mark that's been sitting there in plain sight. And I guess the bigger Peace here. Is that
34:31 Everyone who thinks they know what they're talking about in genetic medicine will say, Well, the issue is delivery. It's like it they you need to be able to deliver. And I'm like That's a very hand wavy. Again, it's just a cheap answer, which is like not Wrong. But it is
34:48 Incomplete. And I believe that it's actually three problems at once. It's three children in their father's trench coat pretending to be an adult. It's like we're delivery, and then you open it up and it's like potency, specificity, and delivery are all here inside. And No one wants to hear that because people want simple solutions. They want like, oh, it's delivery, so we'll just fix delivery. And
35:11 Just Thirty years in, no one has a good idea about this piece, right? And I'd say that the thing at strand that like when I started the company that I just could not understand why everyone didn't see what I was trying to tell them, and I was very bad at pitch. I was you think I'm too much of a scientist now, perhaps, or maybe your audience does uh if they're listening, but like, man, you should have seen my very technical zero market insight. pitch deck of twenty eighteen that is Complete dog shit. It is an awful I am can't believe someone funded us.
35:45 I'm a huge fan of Elon Musk's like first principles based thinking, right? I I don't know if Elon is the one who invented first principles based thinking, but I think he's probably the main evangelist and popularizer of this like thinking modality where you know if you take SpaceX for example His idea was what is the thing preventing commercial space flight? And it's dollars. Hm. kilogram of launch. Like it's just like dollars per kilogram. That's it. How do you get it down? And you start to like, well, where's the cost centers in a launch? And you go, okay, well the cost center in a launch is in like these rockets, launches that are that are that we're just tra we're trashing 80% of it. And you go, well
36:25 Like why don't we just like reuse them and people are like well, you know, they do this, they do that, uh you know, they're hard to retrieve, they're in the ocean, they're floating, they can't and he goes, He goes, Well what if they like land themselves? And it's like that's an insane thing to it's an insane person thing to say. But I want like the world to understand. Is that we are standing right now. On the precipice. Of
36:46 A revolution. In genetic medicine. And that's important for a number of reasons. One, it's important because there are near term diseases. that we're gonna be able to solve. we're going to be able to get to a point in the not too distant future where I think a lot of types of cancers are at the very least.
37:04 chronic diseases instead of death sentences. You know, we all want to get to cures. I want to get to cures, but we are getting at least to a a point where It's a manageable disease. That's I think a a near term. Peace. But we're standing there's sort of multiple lines of technology that are coming together that I think people are are not fully appreciating what they're going to mean for the future of medicine. And so
37:27 There's a lot of focus right now on like AI based. Drug discovery. And people are building proteins and antibodies and all sorts of stuff with AI models that are doing incredible things. We have Decades.
37:39 Of work on designing exquisite proteins that do all sorts of stuff from edit genomes to cure whatever in some sort of mouse model. What we don't have is the infrastructure. The medical biomedicine infrastructure. That gets any of these
37:56 things, these discoveries, whether they're made by a human With Microsoft Word stitching amino acids together, whether they're made by an LLM that knows exactly all the pieces that are gonna make this, whether it's made by high throughput screen of fourteen different robots in concert. It doesn't matter. What matters is how we're going to get those into patients, how we're going to get them into the places they need. And I think about this. as this infrastructure of medicine comes forward and what this will actually mean for the future of healthcare. Anyone In any sort of a place of power throughout the world.
38:30 I think needs to understand where in the next 10 to 2 years we very well may be headed with medicine, which is Smaller indications. Niche indication. We're moving in a way where I think medicine becomes maybe not completely bespoke, but much more refined. And The way that we get there
38:49 We're going to get there technologically and we're going to get there from a design perspective much quicker than we're going to have the infrastructure to actually deliver those medicines to people. Safely, effectively, at scale. And so Our goal at strand and our challenge is building drugs today.
39:06 that impact patients' lives. We're not a research institute. Our goal is not to do really cool research on mice and join the ranks of people who have cured mice of cancer. There's millions of them. There's could be a Nobel Prize every five minutes for someone who's cured a mouse of cancer. Our goal is to cure human beings of human being cancer. Our goal is to cure human beings of human being diseases and do so in a safe, effective, scalable way that impacts a person's life as little as possible. And That is what we're building we're building as a commercial organization. We're building drugs today, but what we're doing is we're laying the groundwork.
39:43 for this infrastructure to where When we're successful in tumors with the new trial that we're running this year. When we're successful with being able to Ivy deliver, you know, infuse a genetic medicine that goes to the tumors, we have a uh, you know, an instruction manual, what we call a payload, right? The protein that we're tricking the cancer into making. We have one that we've chosen. But Success there.
40:06 Actually means that I could now in six weeks design a completely new protein. to be delivered to the tumors. And I could just go over and over and over again. I'm only going to be gated by the infrastructure I have to build like new ones of those and the FDA's ability to move quickly with us as we try to test new and newer things, but we know the general high level safety of this. That's coming. That's coming in a lot of other areas of the body where we're designing things to get into T cells so we can help temporarily. influence the immune system. So you could take out things like autoimmune disease and allow patients to
40:41 revert back to their pre-treated state without doing any sort of genetic modification. We're trying to get All sorts of these therapies forward, and every time You have a success. We lay the groundwork for this infrastructure going forward. I want people to understand it. One because
40:59 We have Large ambitions. First they thought that the first principle based approach we were taking was incorrect. They're like, it's a delivery problem. You need to build a better delivery vehicle. Why don't you focus on that? And I'm like, okay, everyone's done that. Now we've shown this complex solution actually fixes this like age old problem, and we're going to be continuing to move that forward. I'd say
41:22 the biotechnology will be dragged kicking and screaming into the future, or it will be built up in a new way from new players. For us I want To find the people.
41:35 throughout the globe who want to partner on these things. The innovators in America. Those are all sorts of different sorts of folks. Let's dig into that just for a second. Like first it's with this podcast. Let's say I was like well I got good news and I got bad news. The bad news is I can't put this out to my whole audience.
41:52 The good news is You get to tell me. Which thousand people? I send it too. And that gets hand delivered to a thousand people. And I mean a similar way to look at it would be like all right, you're given a TED talk, but it never gets sharing.
42:06 It is only for The thousand people in that room. But you get to hand pick them. Who are those people? It could be categories of person.
42:15 But How would you think about that? I think policy leaders, not just in the United States, but you know across the globe that need to think like critically. Around
42:26 How we are going to both Handle. enable and empower the future of medicine because things, you know, incentives, things are going to look quite differently. Ten years from now. than they do today in terms of like
42:39 The scope and the style in which we can build medicines. And the policy leaders are important. Because ultimately they're gonna determine the rules by which healthcare is played. Is that one way to put it? Yeah. Healthcare is very similar to the space industry. And that policy leaders essentially have two major pieces is that they are both the
42:59 arbiters of what is allowed to be done, and they are a major payer, not the only payer, but they are a major payer. of the purchasing of that and so As the fundamentals of medical development change. Now I'm not making a drug that I hope to Give to
43:18 two million people worldwide. I'm making A hundred thousand variants of a drug that I'm hoping to give to ten thousand people worldwide, or ten thousand variants of a drug that hope to give through a hundred thousand people worldwide. Now get to more people, but there's more variants. Both the regulatory and the payment systems, I think, need to adapt themselves to allow for that. It's on us, the medical innovators and the engineers and the entrepreneurs. To build systems that are still good products, you have to think about where you're going and then build a system that can still be a good product. If it costs
43:52 10,000 times as much, it's not going to work. It just won't work at scale and you won't access these patients. But if you can See a path forward and think creatively. And one of my I'm not a politics guy, but I am fascinated by policy and how incentives shape the future of highly regulated industries like biomedicine, like space, like all these things and and that is
44:16 regulation plus payment. I think that there's Incredible work to be done. And The last big time of I think productive collaboration between worldwide policymakers and the United States as a leader, the last big collaboration of that came in the eighties. When biotech started to take off in the nineties when it really ripped.
44:36 When we started to harness the power of recombinant proteins. The Genzyme book, you plugged it earlier. That's a phenomenal Oh the genetic, yeah. Genzyme's the Genentech of Boston. I get the two of them were like but the Genentech book really, you know, studying the history of Gen Zyme Genzyme actually had the leader. Henry Tremir Who was the actual quarterback, I'd say, of the policy innovation, you know, worked with government officials to figure out like what will this new class of medicines look like that aren't just small molecules that you can take home, right? We have, you know, now we have antibodies, we have all these drugs that are amazing because of it. We have the Orphan and Rare Disease Act, which led to people building these rare diseases. And so
45:13 rare disease drugs. I'd say We need to have more productive collaborative conversations around what the future will look like because things are going to change very fast. You know, I read the AI report from the the White House, for instance, and the sort of how the state of AI is. And I looked at it, I read through it and I was like, The actually need one of these for biotechnology as well, because things are changing as rapidly and it's going to be further accelerated by AI. And if we don't have some productive conversations, we're going to be stuck in one of two places. One is where only the ultra rich can get the really
45:47 disruptive drugs because they're the ones who can pay for it because we don't have a system set up to like have these new radical changes commercial quick enough or dispersed quick enough. Or the second is the Inability to pay. The inability to find ways that like support an ecosystem makes a uninvestable thesis for investors. And so all of these like great innovations that we have coming out of the lab right now get off at their knees because Just like space, space industry, it's a long time cycle to read these things out, and you need capital to get there. So a lot of what
46:23 I try to do in my own. meandering way is kind of answer the like thousand people in a room question. And then to figure out it's like okay. Let's just say you're spending time in DC, you sit down, somebody, their staffer convinced them to sit down for thirty minutes. What do you lead with? And then that can inform potentially right like the website or appearances on podcasts and stuff. So
46:44 Just in case it's helpful, I can obviously share this afterwards too, but it's like Couple of things come to mind. Right. And I think in terms of so once you identify the people in the room, then it's like what does the TED talk look like if you got twenty minutes? on stage. And I mean, you're good at this stuff, but sometimes you're so close to it that it's helpful to have a muggle who's No, it's I wanna hear this, Timba. A free communication lesson from someone much more versed in the area. Well, yeah, thank God, because I can't do science. So the
47:13 Gotta gotta allocate responsibilities well. Uh you don't want me in charge of developing immunotherapy. So The Christmas story and the photos. So if you kinda like started with that. I'm just Walking through in my
47:26 Made up. TED Talk. And then You talked about Let's just say you went from there like, okay, let me take a sidebar for a minute.
47:35 And you talked about SpaceX and the reusable rockets. And the Analogy also of Like once you have this engineering platform developed from first principles.
47:48 Now you have something that is payload agnostic. Once you've made it economically feasible. And you have this platform. Whether you're launching Yeah. Superconductors into space as an alternative to propellants for a satellite reorientation. Check out this company called Xeno. I might have to redact this, but they're in New Zealand at C E N N O they're pretty fucking amazing. But whether it's that, whether it's
48:09 Something else. is entirely up to you in terms of deliverables because you've done the hard work of developing this engineering platform. Then talking about like okay, well what does that actually mean for biotech? And you've got the holy grail. How do you Ivy administer genetic medicine?
48:26 And then you could segue till people because there's a good drug There are lots of good drugs that die. Why do they die? Because they're never going to actually make it. into production, so to speak, at scale on healthcare. And I've seen a lot of analogies with this. And I won't digress too far, but with psychedelic medicine. And it's just like, okay, you need like an overnight nurse. This is gonna be an eight hour experience or six hour experience.
48:48 And sure, you could argue that you might have the rich people pay ten thousand dollars out of pocket and that subsidizes the It's sort of like Uber Black subsidizing Uber X. Like there is an application there, but if it's fundamentally incompatible with current healthcare, you're trying to win a race with your ankles tied together. It's probably not going to happen. And Then you have people looking at like five MO DMT instead of Sil7 stuff, and I have my own thoughts on that. But sure, it's like
49:15 You look at the failure just real quick of like MDMA assisted psychotherapy when it got in front of the FDEA advisory committee, a lot of reasons for that. But then you have people coming out of the game and they're like, Oh, we tried to couple They tried to couple psychotherapy with it. The FDA does not regulate psychotherapy. It became a huge quagmire of Just Confusion and therefore these other people are like, Well, let's do methylone. It has a much shorter half life. You can actually fit it into like an hour.
49:41 hypothetically, right? You can decouple the therapy or just looking at drug effects, and lo and behold, like it's making a ton more progress. But the point of saying all that is that you've got the Kind of space X, you segue to like The holy grail. And then Like what if you could reprogram cells in the body?
49:59 What happens? And I do love the fire it up. Hand wavy delivery thing. Because you're like
50:06 What they've missed is and I'm again I'm ad-libbing here, so it might be just like is that they're right and they're wrong. They're wrong because Of reasons X, Y, and Z. This is a lot of hand wavy stuff and like We're still at a point where defining
50:20 triple negative breast cancer by what it isn't. It's like If you have trouble with your shoulder and you're like, Well, like good news, it's not like elephantitis and it's not you know Parkinson's disease and you're like how does that help me? It doesn't really. But Then you say they are right about delivery in the sense that like if you cannot plug this into healthcare.
50:40 and deliver it to impatients. Game over. Like it doesn't matter how effective it is in an N of one or an N of five or whatever your small clinical is. These are not necessarily in the order. But talking about
50:52 even though it's not the end goal, like what if we could turn cancer into a chronic disease, it can be managed. It's like back in fill in the blank. nineteen eighty X. HIV was a death sentence. And No longer the case. Now you look at on television and it's like you see ad after ad.
51:09 related to Some preventative, but also like maintenance drugs. That allow people to live with a chronic condition. So anyway, those are a few things that kinda hopped to mind. I would be curious, I mean For policymakers, what are the things that most catch their attention?
51:23 Whether from experience or hypothetically, what is it that actually gets their attention? Yeah, I was in D C lot yesterday. And my Overarching message is sort of like There are two things we need to
51:37 Do better. We have to understand We have to build regulations that I think are common sense that still allow us to like more cheaply test drugs. Right now for a lot of reasons. We have sort of vestidual over many years, uh reasons as to why we it takes us a lot of money and a lot of time to just get to a simple answer on a medicine, right?
52:01 And that is creating a world in which the biotechnology industry is incentivized to do very small steps forward because the Cost of failure is so high. that you're trying to reduce your risk in a way that is, let's make a drug that's ten percent better. Because taking a truly innovative risk would be very difficult to underwrite for certain investors. I'd say at the other side, the thing that catches folks' attention. Is
52:27 To talk about how medicine is fundamentally changing. And We all can see that AI is changing. How business is done, how people build things, how people read things, how people parse through information. It's making highly motivated people 10X better, if not more. And it's not just AI and biomedicine, it's sort of multiple threads coming together of novel technologies of how we build medicines, genetic medicines, and their sort of advancements, things like what we're bringing forward, our ability to diagnose diseases and subcategorize diseases and change the way in which we interpret.
53:02 How this disease is, the sequencing technologies which allow us to do that, and other sorts of computation and AI that plugs into those pieces, all of that's going to fundamentally change. Madison. Because if I can't just And I can't just make a decision around the drug that every breast cancer patient gets. And then I agree on the cost that that drug is and I pay for it a number of years and then the drug goes to generic and someone brings
53:25 the next drug forward that's 25% better and blah blah blah. And we just continue along that. That's the non-innovative way in which we've been developing medicines for the past number of years and every once in a while we have a breakthrough. Policymakers tend to to like that because it it comes down to like numbers. And medicine is a very interesting piece in policy. What do they like? Could you just say that again? They like the idea of breakthrough versus incremental. They like trying to learn about it. When you start to talk about medicine, it's very interesting because You think about paying for medicine, like the government or health insurer, but the government paying for medicine is a near term cost center that should long term reduce a larger cost center. So brand name medicines are eight percent of US healthcare spending, but
54:08 Hospitals are twenty six percent, something like that, in the high twenties, I believe. And so You imagine that like for eight percent of your dollar in healthcare spending, you are pulling down the amount of people that are now hospitalized. You are increasing people's life. You're keeping people in the workforce, you're keeping people in their homes, you're keeping people out of a system that no one wants to go to the hospital and and the government that pays for a lot of people's hospitalization in the form of Medicare and Medicaid, doesn't want to pay for people to go to the hospital. And so you begin to talk about that system and you say preventative healthcare, but all medicine to a certain extent can be thought of as preventative if it's able to stave off, you know, hospitalization. It's at least, at the very least, hopefully preventing you from being in the hospital. And so Policymakers
54:53 Like those conversations. I'm gonna try to keep this from like sounding too conspiracy theory, but what I'd love to know is What's in it for policy makers. To help you. And that might sound strange, right? Because I I'm not saying these are bad people and we could talk about the kind of industrial regulatory exchange programs.
55:14 another time, but like that's a thing. So I guess what I'm wondering is How do you align incentives with policymakers so that they feel compelled? And interested in being helpful. That's the big question that comes to mind. So let's just say There are a thousand policymakers listening right now. Or if you're in the room, but like what is your ask? If they're like, Hey, look.
55:37 Again, good news, bad news. Bad news is I can't meet again. I'm just too busy. Good news is If you have a reasonable ask, I can green light it right now. But you need to do it. What is the ask? My first ask right now is we need to streamline how we test new medicines in humans in clinical trials. In fact I
55:54 Yeah, maybe if this ever sees the light of day, hopefully the op ed that I wrote on like accelerating first in human trials and becoming a more innovative powerhouse as a country. Oh where's that? I just wrote it a couple of weeks ago and we submitted it to a handful of places in the last couple of days. I think that like it's the single greatest
56:14 advancement in biomedicine that we're going to be able to make. And it of course is it opens a lot of doors for us as as strand because we have way more ideas than we have the resources, time, and money to take forward at fift million dollars a try. But if you start to make it more simple, and a lot of these things are common sense regulations, we're we're spending way too much time and way too much money doing things that I think are quite antiquated and vestigial in our regulatory process. And so if you can reduce that time. And reduce the amount of money, then you can change the economics and the incentives around building new drugs. And you can begin to generate more diverse data that allows you to train things like AI models on what actually makes a difference in a drug and a human. We just don't have enough data. We don't have enough diversity of data. to be able to train them nearly to the level that we want right now. And a lot of it just at the end of the day, it comes down to like, does this do something in a human? You can do all you want in the lab, you can do all you want in mice, you can do all you want in primate studies, whatever it is that you do
57:14 It just doesn't matter to nearly the same level until you do it with a human and When Genentech and GenSy were coming up in the eighties and nineties, it was a comically fraction of the cost and time that it takes to bring new medicines forward today. This isn't a impossible thing. We've just created a lot of weird barriers and we need to get back to a first principle way of thinking within government as well. I'm not the only person preaching that. And I'm not I'm certainly not the only one in policy that thinks it. I'd say in America, we want to be the headquarters of innovation, but a lot of other countries want to be innovative too. In Asia and in the Middle East, there are countries that are like, we can do this. We have the technology, we can make investments into the space, we can make investments into companies earlier.
58:00 that we think have a high leverage point in the future health, and we want to, you know, go in those directions. The United States is is able to do it too. But that's it. If you did an eighty twenty analysis on the impediments and someone's like, Okay, we want to streamline, but like If there are ten items on your wish list. Let's pick two or three. What are those two or three?
58:19 One I think is that we should remove the FDA. From a Direct. permission based oversight organization on The beginning of first and human trials.
58:31 So let me just explain this for like a a different sort of audience. right now in order to do a clinical trial of what we call a first in human. The first time you give a drug to a human, a new drug, right? So a phase one. In order to do that in the United States right now, you need to write an IND, which is called an initial new drug application. To the FDA.
58:51 It's very long. I think ours for our first trial was twenty two thousand pages long. Oh It costs just to write it. You have to have professional writers, professionalized system, all sorts of very expensive things. Just to write it, it's millions of dollars. The studies that need to go into it are millions of dollars. The manufacturing of your drug and the associated analytics of your drug in order to be Correct in the document costs millions of dollars. And this tax up and up and up and up and up. And all of a sudden this application costs you$25 million. And it takes 18 months to put together. Now
59:23 In China. And in Australia. Two of the countries that do much faster. First in human trials, then the United States. They have a system where you go
59:35 to something to the hospitals called the IRB, the investigational review board. In Australia, they have a lot of professional centralized IRBs that manage multiple hospitals and they they work in like a for profit system to help companies get their procedures like figure out whether or not they're going to be a fit for the hospital. And You still have to do that in the United States. You have to go to the after you get the I and D approved by the FDA, you then have to go to the IRBs. And so right now,
1:00:03 Since it costs so much money and takes so much time to get an I and D from the FDA. If you have decided to do that instead of go to Australia and go directly to the IRBs in Australia or go to China. Your board wants you to Essentially go to the top hospitals. Hey, if we're spending twenty five million On an IND, I want you to go to MD Anderson, I want you to go to Sloan Kettering, I don't want you to go.
1:00:27 T. Pick a random great but random hospital in the Midwest. So now we have a lot of hospitals in the United States not running first in human clinical trials, which means we have a lot of Americans who exhaust their standard of care and can't get, you know, the access to drugs maybe before they are fully approved and they're just out of options unless they want to fly to Houston or New York or Philly or something like that. And a lot of people don't if they're, you know, facing the end of life or For all sorts of reasons people don't want to do that. And so you have Americans not having access to drugs you have companies
1:00:59 shoved into clinical trial sites that are already overburdened. You have IRBs at those hospitals, which are difficult to deal with and also overburdened and like trying to process all the people who are trying to come through their site's doors. And All of this is taking place after you've spent way too much money and way too much time submitting a safety document to the FDA in order for them to approve it, when the FDA actually has a lot better things to do as well. And so all of that. Reeks of an inefficient system. So if they said
1:01:32 Got it. Problem sounds terrible. You can author the solution. What is the alternative? So the alternative is to allow the hospitals
1:01:41 And their IRBs to make the they already make the decision on whether or not to run a trial and they're assessing the safety of the data that you have on your safety, as well as your efficacy and the sort of patients you want to go after. The IRB is going to assess that and make a call after you get the IND done. I think the system to transition to is What Australia calls it is a CTN, it's a clinical trial notification system. You Notify the authorities, the regulators, hey, we're going to run a trial. It's not a past system. There are exceptions. Certain types of drugs still need to go through them for like formal approval, but for the most part. You can notify them, go to the IRB. The IRB can say, yep, we think this is safe enough. And the reason that is still a very safe option because Patient safety is
1:02:26 From a drug company perspective, from everyone's perspective, is number one. There is nothing that will kill your company faster. There is nothing that will Just make me never be able to sleep again would be harming patients, especially harming patients because you are being sloppy. And the group that cares. Obviously cares. Just as much, if not more, than everyone else is the hospital's review board. Because the hospital does not want patients.
1:02:52 harmed or dying, God forbid, in their trials. The FDA isn't. magical in their oversight of safety, but you distribute this workload across the IRBs that exist throughout the United States, and they get certified with the FDA to be able to approve this. You can centralize the IRB so that Individual hospitals don't have to have their own IRB. You can have all of these systems. All of a sudden you have hospitals that have the ability to attract biotechnology companies for drug trials. They're now going to invest into
1:03:24 Their infrastructure it takes infrastructure to run clinical trials. And so the free market sort of picks up there. And builds a system. That I think Can accelerate clinical trial management.
1:03:36 And you free the FDA to focus on the things that matter, which is approving drugs based on Efficacy and safety. That's how drugs get approved. Mm-hmm. So I know you got You gotta run a bit.
1:03:48 We can chat again too. This is fun. We don't talk enough. Yeah, this is a juicy piece, so I wanna Two on it a little bit more. Yeah. So I've funded
1:03:57 A bunch of science in mostly New Zealand, but also in a few other countries simply because the the speed Uh cutting through red tape and the sheer amount of red tape is much less, but also at the same time. So that's why I would choose like a New Zealand And some of these very credible universities over like doing research.
1:04:16 No offense to Jamaica, but it's like there's psychedelic stuff going on in Jamaica, but it's like nobody in the US gives a shit, right? They're not gonna listen. It's not gonna hold anyone's attention. I guess what I'm wondering is Simultaneously, I can look at a New Zealand and say, Okay, it's mostly sheep. Yeah, you have some people, but it's a lot easier to run New Zealand than it is to run the United States. So I can't just say this works in New Zealand, copy and paste into the United States. Australia's is substantially larger. So I guess two questions. The first is like Zero to ten.
1:04:44 Confidence. What is your confidence level that if policymakers got behind it, that something could be done along those lines? Not necessarily even at the federal level, maybe at a state level. I'm not sure if I mean there's all sorts of complexity there, but what's your confidence level that something like that could be implemented in the US within the I don't know what the time frame would be, the next five years, let's just say five to ten years, if policymakers got behind it. And then the the corollary to that is Is there any competition for scientific innovation that is attractive to a company like Strand, much like companies are moving from, say, California to Texas because there are certain incentives? Is there a competition for talent globally?
1:05:25 through which it's if the UAE wants to green light something incredibly quickly and fund it. that Strand would be interested. Or Is it live or die, ride or die in the United States for any host of different reasons? I know some companies who have tried to tackle the FDA first because they're like, hey, once we have this data, we can kind of copy and paste a lot of it into the EMA in Europe, which is the sort of equivalent. I know that's a lot that I just threw out there, but
1:05:49 What are your thoughts? So to answer the first question, there's a global competition for running clinical trials like this. And actually what we are in the midst of right now is the United States massively losing to China. China has built an industrialized version of clinical trial infrastructure for first and human trials that is so
1:06:11 efficient and massively quick that they are They're just able to go faster and cheaper into the thing that matters most, which is first in human trials. And so the United States is actually in the process of very rapidly as a country falling behind China because What started as a place for American companies to come run clinical trials to get data and then take it to the FDA and then do larger trials in the United States has now created a flywheel structure within China where now just Chinese companies run their clinical trials faster than the American companies and then bring their Chinese discovered drugs to the United States. And what happens is the capital flow, the risk capital, then says, ah, these companies are more efficient. I will fund these sorts of aspects. And so
1:06:53 There's always like state by state. We want to have biotechnology here. Every state's always tried to have it, I'd say Just like AI tech like the best technologies remain in like Boston and San Francisco, just you know similar to like Tech companies might have left for Miami and Texas, but like where's open AI? It's in San Francisco. All due respect to Austin and Miami. I love those cities. But San Francisco just in It's hard to replicate those pieces and biotechnology has largely been spread between
1:07:21 Boston's really dominated a lot of it for the past thirty years, though in this new age of medicine, I'd say San Francisco is really rivaling Boston because the risk capital and the openness to like radical new ideas is much higher. I think that also attracts a healthy amount of like hype no substance companies and hype no substance founders and technologies, but I think that's a low price to pay to like take some big swings at like what could be transformational technologies. And I personally identify even though I run a company in Boston, I love Massachusetts. I personally identify with that ethos a little bit more of like If some bullsh hype filters into this, it's worth it in order to take the correct swings at the truly big ideas because one out of ten transformations is better than seven out of ten logical steps forward. So CTN in the US, like some version of that, as you described in Australia.
1:08:15 If you were a betting man, right? If you were like okay. I'm gonna go on polymarket and I'm gonna put half my net worth on a bet. What I guess I'm asking you if how possible or impossible is the task? Of
1:08:27 Retrofitting. The FDA and approval processes. I think Again, this is not a comment on politics, and this is also not a comment on like a lot of different things that are happening at the FDA right now.
1:08:39 But I will say in terms of the last ten years of the FDA, the time to which they would be open to such a radical transformation and radical in government bureaucracies terms, right? The thing about government bureaucracies is they very rarely seed their oversight. They will take new things to be oversight of, but like In general, regulatory anything. This is the problem with nuclear energy in America for the past thirty years. Like we just tack on one more thing and one more thing and one more thing and one more thing. And these cottage industries emerge to support the giant regulatory machinery. And we don't take a step back to be like, why are we doing this?
1:09:18 At the same time. I'd say To look at the FDA right now, this is probably the most. open I've seen people to the idea of like let's take a step back We want the FDA to be an exceptional regulatory body. We want them to build regulatory sciences that give us ultimate confidence in like the drugs that we build, but there are new technologies that we've been slow to implement. There have been markets that haven't been able to be fully created with technology for things like clinical trial analysis because no one was sure if the FDA would embrace them.
1:09:49 And there are things such as like early stage safety, which are already handled by hospitals themselves where It will take some time to make. But if I was a betting man, I'd say I give it a fifty percent likelihood that in the next you know, two years we can get to this. You know, I wouldn't be spending my time talking to policymakers about an idea. This isn't about me just trying to like have something to complain about to like a senator. This is like a I believe that this is possible. I believe that we can do this. I believe if we don't do it, it is actually existential. Like we will lose.
1:10:23 Like a lot of our ability to develop drugs in America. Over the next few years to China, if we don't do it, because Capital. has no allegiance. I also believe that like there's other countries and especially The UAE, for example, are ones that are watching it carefully and going, Hey, like
1:10:42 We have great technology. We have a great landing place for a lot of Western values and Western companies. We have great quality of life here. We could attract folks to come do innovative work here. And so when I hear various different leaders of countries in the Middle East talk about it. I certainly think it's possible because they are countries, at least over the last 10 years, where you've seen be able to make aggressive bets in certain directions in order to attract innovation. So if they were able to do that, then yeah, I mean, these sorts of things could radically transform how people think about developing medicines. And at the end of the day If we are able to develop better medicines quicker, faster, cheaper, more ambitiously.
1:11:21 Everyone wins. I've been So impressed with the speed at which the Department of Health and say Abu Dhabi or UAE, even more broadly speaking, but it's incredible. How? Ambitious they are, but in addition to that
1:11:37 How? willing they are to take big swings and Accelerate things. That's the country we've spoken to the least.
1:11:45 In the Middle East, I will I will say though I know that they have it's just you know, I mean it's connections and it's spending the time trying to decide like what people want to do. I'm a believer in allied countries coming together. We run our trials in the United States and Australia. I think countries that share very similar values on like the future of the world need to come together to build like innovative solutions to the massive problems facing us as like a human species. It's not every country though. No, it's not every country. Anything you wanna
1:12:14 Talk about just before we just in the last however many minutes we have. I've actually taken a lot away of responding to how you're responding to different pieces of the story, right? I I think I view it as important to sort of tell the world about this innovation and whether that means Find in the large sovereign wealth of the world that are going to help us.
1:12:35 Right now we are as a company, everything is working within our technology stack. We sit here and look at these problems of like, Gosh. To use a bad analogy, it feels like Sophie's choice sometimes around like how we're going to prioritize what we're going to work on. We can't work on everything. The other overused analogy is robbing Peter to pay Paul, right? It's like okay, this feels like
1:12:57 I wish this wasn't zero sum, but I have You know, if we look at what our technology can do today, I look across and I'm like, okay, we want to work on cancer, we want to work on autoimmune disease, but also like kidney is really interesting. And oh my God, we could do so much good if we applied this in the CRISPR space and all of these things. And so what I've been trying to spend the last six months of my time thinking about is like, what is the correct model. For us to make sure we are doing our diligence of advancing medicine at the fastest rate we possibly can. There are so many different things that we could work on, we strand, can work on. We need to find various different partners. Sometimes that's pharma partners that are like, we're interested in this disease area, and and it's very simple because the biotech and pharma companies work together all the time on partnerships, but I'd say, you know, what's really interesting is this opportunity. this global opportunity and this broader opportunity to say like
1:13:45 We could do all of these different diseases. We're we're fighting a resource constraint at all times. So how do we find other people who want to participate with us, both intellectually and with capital, that can help us build various different solutions, whether that's for diabetes, whether that's for polycystic kidney disease, whether that's for all sorts of other indications throughout the world. It'll take novel models, novel scientific models, because what we are doing is scientifically novel. So we'll need different sorts of business models to think about this, but You know, I'm You said something earlier about my like frustration with biotech's ambitions sometimes. And I think it's just like
1:14:24 Yeah, the Genentech and Genzyme people used to do insane things to try to get the you know, Genzyme used to drive around Boston collecting placentas from the hospitals. They had a van called the placenta mobile. They would pick up placentas and then use them to purify a protein that they were turning into a drug for a rare disease. It was like the ultimate founder mode of like, how do we stop this disease? And somehow we're now like, Well, I don't know what would that look like from a T P and if I can't think about like how the regul if the FDA won't uh think about a proven mechanism, and it's just fucking exhausting. We gotta like just Get our entrepreneurial pants back on and like
1:15:04 Try to fix disease. So I've just taken the few minutes you gave me and diatribe in six different directions, but I I we are there is so much cool stuff to do. There's so many like more interesting conversations for us to have on and off a recording that Tim, I love talking to you. You're just Fun, man. Yeah, we'll do more. You know, we didn't even really get into the platform aspect of things. I used the SpaceX analogy of, you know, the first principles. Engineering.
1:15:32 payload agnostic platform, right? We didn't even really get into the platform. Are you leaning away or leaning into the kind of programming reprogrammable. Language. A round strand. I'm leaning away from the the words
1:15:46 programmable or programming within there because they get people confused about what a platform is. Like in my new deck, it ends actually with this piece of like what strand Is. Strand is a flywheel of various technologies, AI models, manufacturing expertise, like talent, trade secret, all these pieces. That create a flywheel of how we build platforms for areas of the body that we want to access. That's the platforms, right? So tumor delivery is a platform. T cell delivery is a platform. We want to build more of those platforms over time. We build them as drugs, like the S take zero zero three that's coming to the clinic this year, six months ahead of schedule. That is a drug. But it is a platform for tumors. It's not a platform for everything you want to do throughout the body. And that's where people got lost. I think that's where Moderna got lost. They thought that it was.
1:16:37 You know, your tumor platform also worked for your liver, work worked for the kidney. We could do everything with one platform. It's just not true. And so what I've been trying to do is help people understand and to act the SpaceX analogy kind of works well within this because SpaceX over time built different platforms for different use cases that were more and more complex and took more and more time and knowledge and they used the learning. So Falcon one. was able to get single satellites up. That It took them a while to figure it out, but it they they were able to perfect the landing and the recovery and the reusability of a rocket that wasn't all that like
1:17:12 It was useful, but it wasn't super useful. Then they had Falcon Heavy. They were like, now we can take multiple things up, or we can take large payloads up, we can take astronauts up to the space station, we could do all of these things. Then they have Starship. Which is you can't start with Star Ship, even Elon. twenty years ago, being one of the greatest fundraisers and visionaries, couldn't go, we're gonna build Starship, that's our first product. You gotta build the Tesla Roadster to get to the model three. You gotta find the like the first minimal viable product that does. matter and helps you get your feet under yourself. And that's what our first drug was. And now we're building more and more ambitious things. I don't mind talking about a platform because I can scientifically prove we have a tumor platform. I can show you the data. Right, we have a T cell platform. I can show you the data of how we can swap things in for the T cell, whatever you want to put in a T cell.
1:17:59 We'll put into a T cell. Doesn't matter. But It's for a T cell. And we want to build more platforms over time. That's where I think where we need the most help of like, you know, finding novel business models, partners throughout the globe who are like interested. I don't mind it. I don't mind it anymore because we can defend it.
1:18:16 Yeah, totally. Getting satellites into orbit is different from getting to the moon, which is different from getting to Mars. Right. It's like Yeah. And injecting things into tumors is different than getting things to deliver to tumors autonomously through the bloodstream, which is different than getting to T cells, which is different than getting to your kidney, which is different than getting to your brain. Those are all different things and they will be bigger and bigger opportunities for us. And now we get to part two. This is the second conversation with Jake. This is roughly two months later, and a lot happened between the first and second recordings. Jake's op ed ran, we did a ton of split testing and behind the scenes work, the conversation around clinical trials and US competitiveness. reached new levels of traction, got in front of new audiences, and ultimately made its way
1:18:58 Let's just call it metaphorically to the Oval Office and we will get into all of it. So this next section is a follow up. What happened after the first conversation, what Jake learned from the response, and how he's thinking about the bigger story of Strand and the future of medicine. We get into a lot. of fun stuff in this section. Please enjoy. So Jake, we first recorded.
1:19:19 brainstorming and you had a lot well formed. different approaches to messaging. And then we stopped recording. But at that point you had a pending. Or hopefully pending op ed. Could you just walk us through What transpired after that.
1:19:36 We're working on the message, of course, and how to frame this so that people could digest what needs to happen and sort of both what needs to happen. Fundamentally, but also the urgency of it. So after that, the Washington Post actually placed it in their op ed. column. And it really, I think went viral, at least through, you know, a lot of biotech and medical policy communities. I sort of saw it spread its way across as you know, a number of people thought either I never heard this idea, it's a fantastic idea to start, or I never heard that there was this sort of pressing risk to our biomedical industrial base going overseas to China and the US is sort of contributing to it by getting in our own way. So after that, you and I sort of spoke through really sat down and
1:20:23 thought about what's working with the piece. And the piece was pretty fully baked. And when you put something in the Washington Post, you don't have all the control over the full message. There are many other professional publicists and folks involved in that endeavor, which is totally fine. I'm I'm I'm just a lowly scientist, but at the end of the day, You and I started sitting and talking about what grabs people's attention. How do we drive people into the bulk of the message? How do we make people care so that they'll pick up the message? And that was really helpful because about a day after the op ed ran, a member of a congressional staff had reached out and said, We're putting together a hearing on the Hill. around the risk to the biomedical industrial supply chain and biomedical industry in the United States in relation to what's going overseas to China and how competition is shaping up and sort of degrading our ability to develop medicines here in the United States. And so as we sort of talked through that idea. It really helped because we saw what was working with the piece. We saw what was confusing about the piece, and we saw maybe what was maybe not bad.
1:21:31 But what was helpful or better or caused more engagement or you know, ABC testing and all of a sudden A is ninety percent of the click through options. And so once we sort of saw that, and I think one of the things that surprised me the most about it, maybe it shouldn't be surprising, but the opportunistic tone of like this is The problem, but we can fix it. Maybe it should be obvious, but that's the one that got us going. And so when I went down to the hill about a week and a half after the piece ran. That's how we reframed the whole story, which is a much more productive way to get politicians to care about something, right? If you come to them and you say everything's bad and it's burning and we're done. Honestly, what is anyone gonna do? But reframing it and being upfront about like
1:22:15 Bad things are happening, but we can fix them. It's in your power. Let's go. Was taken up very well. And so between the testimony and a number of meetings after that. That day. Around DC, we really started to form a sort of fervor, and you know, fast forward to about two weeks ago. The president put out his policy objectives, his legislative objectives. And in those legislative objectives, in fact, you sort of the president recommends what he thinks the budget should look like, and then Congress takes it up and then actually bakes it into it.
1:22:46 for policy Sequencing but in the president's recommendations there is this exact idea. of removing barriers to getting early stage experimental medicines to American patients in America through FDA reform. And that's an incredibly turnaround for Washington, DC, which I think should inspire all of us to get more involved.
1:23:09 All right. So let me add to the recap. Thank you for that. So we Got on the phone. I was in Utah at the time, I remember, very different background. Had our first recording talking about the message. Spitballing stuff around. Then you published the op ed in the Washington Post. Afterwards came out.
1:23:26 And A piece I pulled it up. Very well baked. Edited piece. The headline was the US can't afford to offshore clinical trials to China. A burdensome regulatory environment is pushing clinical trials overseas.
1:23:41 And When I saw that I was like Okay. This may be the best of all possible options, but let's test that. And to your point. There are a lot of stakeholders, a lot of people involved, and also
1:23:53 People are busy. So if they've got Fifty stories to put out. Once they've done the work on one, they don't necessarily want to go back and have to fiddle and fuss with every headline that they've put out. But Internally grabbed it.
1:24:08 And had someone on my team go to a site called Pick Fo. We're not gonna get into the branding of pick foo, but Pickfoo dot com, which is sort of human plus AI helping you to split test. It could be an image, it could be the cover of a board game in my case, or a card game. It could also be a headline. And the purpose for doing that, since
1:24:31 People listening might think, Well, if there's so many stakeholders, you know they're not gonna change it, why even bother? It's because we got five different options and you and I were texting. I was like, What do you think of these six options? And you're like, These are the two that of the things that internally would come up with that you like it's like, okay, well let's only split test those, because otherwise what's the point? Cause the intention behind it is not to change the headline. But to then take messaging and emphasis that you can use in person or otherwise or on stage in terms of framing. So the fact that You had everything lined up.
1:25:06 have the you know refined story for congressional testimony and then to ultimately Get to the big office. It's pretty fun. It's a really fun compression of things. And
1:25:19 I should also I suppose just as a Recap for folks. highlight that what we're ended up talking about a lot towards the end of the conversation was just not simplifying the message for people, but how do you simplify it and make it appealing for Policymakers specifically.
1:25:35 And that's how the Text conversation unfolded around And this is also for those people are writing nonfiction books. Whenever there's a book that's like Why kids are all depressed? And it's only getting worse. You're kinda like, ah, do I really want to spend two hundred pages reading about that problem? But if it's like
1:25:54 why kids are all depressed and it's not the only way, then you're like, Oh, okay. There's actually potentially not a pot of gold at the end of the rainbow, but some type of prescription or recommendation for fixing the situation, then the response rate tends to be a lot higher. So where do things stand now? How do you feel about
1:26:13 The messaging. And you know me, I'm like the Person who likes to think of himself as smart, but nonetheless ends up asking dumb questions over and over and over again. But in terms of Messaging. Like how happy are you with the messaging? We can obviously bat things around. And then
1:26:30 Are the policymakers still the primary target for your personal External comms. Because the regulatory hurdles and like the molasses on the ground when you're trying to
1:26:44 push things through so Slow. Still compared to China or Australia, let's say. The idea itself
1:26:53 From our first conversation that was only Two months ago, not even. Yeah. Yeah, not even. We sort of had this conversation, this is important. Fast forward two months. the president puts out legislative priorities to Congress.
1:27:07 that has the message inside of it. I'd say I'm pretty happy with that sort of timeline of movement. And I think that What we successfully did with the story. Was The bad part of it
1:27:20 is like this is happening, this is bad, and driving urgency of like this isn't a let's have 12 more hearings. This is a we either fix this Today Or We get comfortable with only getting all of our medicines developed in China or discovered in China and then
1:27:38 The United States will just pay the bill. So two months is an incredibly quick time for really any amount of legislative progress. I mean, it's still not done, it's still not baked, it still needs, you know, these things need to be codified. The FDA needs to actually adapt them. But I'd say that's a lot of positive forward progress and shaping the story around like here is the solution. Up front, I think helped us really. tie folks in. One of the things I learned in trips to DC over the past year is a lot of people go down and are like, Complaining.
1:28:11 People will hear you out because that's what you do to a constituent if you're in public office, you're like, This is okay. I'm sorry that that happened. But it's really more like being a policulder to cry on than getting anything done. And so going with, you know, this is a problem, this is the urgency, it needs your attention, and here is a solution or part of the solution, and moving our narrative between hacking it out with you, moving the narrative to bring the solution up front, I think helps people not tune out immediately from like to understand what someone's bringing you a story with. We've talked about this in larger pieces of stories, right? Which is like How do you bring
1:28:50 your focus and your hook up front, right? To me, I like As a scientist, I like to drill down to the whole piece and like explain all the details to people and all the reasons why something is maybe fucked. And instead I think it's better to just start with like hey Things aren't going great. But There is a solution. And then if you want, now that you care a little bit and you see a light at the end of the tunnel, now we can go through the whole process. You can understand the nuance of like both what's happening, what we can do, and how we get to the other side. It's almost like
1:29:21 You know, when I talk to technologists who are building other companies like mine and try to help scientists understand how to pitch even to other technical investors, the thing I always come back to is No one We'll learn. Until they care. So your first goal.
1:29:37 is to make someone care about what you're doing, then They'll learn. Scientists are very spoiled because when you sit around with a bunch of scientists and talk science, they all care. It's a science thing. Scientists, they're implicitly like, oh wow, you study black holes and the gravity at the center of them. Like that's so interesting. You don't have to motivate it. There doesn't have to be a reason. There's just the reason is wow. Like cool. At MIT when I was there for six years, it was very spoiled environment because I'd be like, Well, I'm working on, you know, the future of RNA medicine and how RNAs are programmable. And they'd go, Wow, tell me more. And then you go out to an investor or you know, have dinner with Tim Ferris, and you gotta like wheel it back and be like, why does this even matter besides like
1:30:20 You know, being a footnote on genetics. And I think that's always a good learning. And it's something I've gotten used to with like talking about my company and talking about what we're doing. But then coming back to policy It just helped drive it back to me that like this is a fundamental truth of storytelling. Make people care. about if you're trying to get something done, make someone care, explain the problem, illustrate a solution, and then help them, then they can go a level deeper. We could talk about the specifics and the pathway there.
1:30:49 Yeah, for sure. And the storytelling. word is important'cause if you're proselytizing, if you're persuading In almost every instance it's gonna be some form of storytelling. Right. So After the op-ed came out, after you were
1:31:05 Giving your congressional testimony, et cetera, et cetera. You also sent me a few different docs. There was the investor Updunk, which we may not get into great detail on depending on How much needs to be redacted. But we can. We can always bleep it out or cut it. The second was Sort of a primer. On
1:31:23 And Edit notes, which is a suggestion. I mean, I'm not right about everything, but I was like, you know what, in the second piece There's the story of
1:31:38 Alpha Fold. And I was like, that's a great place to start because sometimes if you begin with high concept or you begin with things that are A little abstract. It's easy for people to get. Lost. Even if they understand it. For it to
1:31:54 cause them to drift, right? And so it's like, okay, maybe start with like story point story or like You know, sure you could start with like a shocking stat and then lead into like here's the problem, here's the solution. There are a lot of ways to do it, but the storytelling piece, it's easy for people to forget. Selling, pitching, board meeting. like you name it, a lot of it is gonna revolve around your ability to tell compelling stories.
1:32:17 So Where would you like to go next? I mean, I grabbed, of course, a whole bunch of things and before this call sent you my kind of edit notes as images that I scanned, but also as a loom where I kind of walked through my thinking behind some of those edit notes. I wanted to actually before we move to that, make a quick note for people mentioning PicFu. I don't have any uh equity in Picfu. Just like saying it, actually. Which is like I could make fun of the name, but it's like the fact of the matter is I just think it's hilarious to say. So the other application or value of the split testing is not just having maybe a better idea of one liners or framing that you could use in person because even though the headline of the op-ed couldn't be changed. When I then shared that article.
1:33:07 I was able to use the same link, sure, but I was able to use a different headline based on the split testing. And it was unambiguous, right? It was like one or two of the headlines. Tested were by far and away. the winners, statistically speaking. And so it's like all right, just grab that. Because ultimately top of the funnel, you need click through rate before people are ever gonna read the piece. So let's optimize for that. But coming back to I guess where to go next. You tell me, man, this is in service of whatever
1:33:37 You think might be Worthwhile to go over. So What are your thoughts? Well, move back to the longer piece that I've been
1:33:45 Just Trying to organise some of my thoughts around Where I think at least a Piece of The future of medicine is heading.
1:33:54 The working headline is R and A medicine and the rise of platform therapeutics. Yeah, so RNA medicine and the rise of platform therapeutics and Thinking about what even introducing to the world what a platform therapy or a therapeutic platform could be, why it changes medicine, why it changes how we think about developing medicines, deploying medicines in the near term, the medium term, and the long term, right? Where are we going, you know, what could be in the clinic next year because of this technology.
1:34:22 what could be possible with medicine in five years, and then where are we on a 10 to 15 year time curve in terms of what will be possible. And I've been trying to organize some thoughts around this, uh the way that I see the future. The policy piece of this story over the top is is an important aspect of it because Biotechnology and space, rocket companies, I think are actually two of the most similar industries out there. You have an incredibly long time horizon on investment. You have an incredibly high upfront investment cost. And you have essentially binary outcomes, right? The drug works or it doesn't, you get to orbit or you don't, you blow up on take off or you fail some early stage safety readout. Those are all very similar. What I think the rocket industry got out in front of them, and Elon as sort of the flag bearer of commercial space industry going back to the early two thousands got out in front of this message with was how to engage.
1:35:19 policy makers to enable innovation. To feedback on itself in a rapid context. And so in the two thousands, it actually was just like it is today with medicine, was very hard to like rapidly launch rockets. It was very hard to fail or or not completely succeed or just, you know, be given the privilege to take shots. Now I want to say putting a medicine into a human is not the same as launching a rocket that is available to blow up over the Gulf of Mexico and we can salvage that. We don't want to put people's lives in danger. But we do need common sense regulatory reform to enable this future of medicine. And as I sort of got to the end of that story with you and got that in front of Congress and got it into the president's
1:35:59 legislative priorities, they turned back to this piece of where do I see medicine going, where do I see platform therapeutics? And Your feedback on what I had put together is actually helpful because you one of the questions I saw in your loom was What do you mean by platform? What do you mean by infrastructure? Are these the same things or are these different? And so
1:36:20 Maybe it's more helpful to talk about like what a platform therapeutic is to start. Yeah. So a therapeutic platform, people have been claiming medicines are platforms for twenty years in the biotech industry, and they've almost always been wrong. It sounds good. The reason people like it is that theoretically, if you have a platform that is can be multiple drugs, then someone will give you a premium over the it's like when sweet green went public and they were like, We're a tech company, not a salad company. We deserve a markup in our market cap. And
1:36:49 You're like, okay, well, I mean, prove it, maybe. I don't know. Domino's is a tech company and an infrastructure company. So it is possible. This is like a Caffeine ketone induced. Like interjection, but People should go back and check out the stock charts on Domino's Pizza.
1:37:07 compared to like all the fancy tech companies and everything, it'll blow your mind. So just put that aside. But yeah. This doesn't happen in biotechnology enough for the record, but I try to be a student of like business and innovation broadly and study like how Elon has built SpaceX, how Domino's has built Domino's. That also shapes my global worldview on like, hey, biotechnology is having a rare earth metals. moment, a rare earth minerals moment with China right now that was, you know, 10, 15 years ago for the electric vehicle industry. On the domino side, like you look at that and you go, wow, wow, this is an incredible infrastructure of tech story of pizza that's like fine. It's fine. I'm from Illinois, near Chicago, so their pizza is like Fine to me, that's the official talking point. But
1:37:54 To like wheel it back, right? What is What is a platform in business, but I guess what is a platform therapeutic? So In medicine going back fifty years to the beginning of biotechnology, you started with let's design this drug and it's a molecule. It needs to be put together in a certain way. We do that in the lab and then we take it forward, we put it in a patient, we see how it works, and we move it through clinical trials. If it's successful, then it gets approved and then we can sell it in the marketplace. And then the company finally makes some amount of money. And the problem with that Just in terms of a like
1:38:27 IRR or verticalization story is that the company itself gets value because it learns how to do the process, but the technology doesn't build on itself. So you build one drug and you get that drug approved. The next time you start back at square one for either a different medicine or a different type. Maybe you take some learnings that you have about that medicine, but Everyone has the learnings because we we do science in the open, right? Everyone sees your FDA a lot of your FDA documents, they see your medicine that you're bringing forward. They see what has you have to publish your clinical trial results in certain forum. So you're not gaining any sort of peace by developing it, though you are, you know, as a business, you're flexing that muscle, which is helpful and it's helpful to have that experience as an organization, but you're not Decreasing the risk.
1:39:15 of future medicines. So a platform therapeutic seeks to build a common Technological infrastructure that you can build multiple different medicines off of. So An example of a platform would actually be Moderna's RNA vaccine platform. So people like to say this thing about the COVID vaccine about how Moderna built a COVID vaccine in sixty two days and got it into clinical trials. Sure, that's true.
1:39:43 62 days from the identification of the COVID antigen, the COVID sequence that they wanted to use, and then 62 days to like create a vaccine for testing, but they spent 12 years before that. developing this sort of technology, baseline technology, particles, RNA sequences, all these pieces to build a lot of other types of vaccines and therapeutics. And so when COVID came around, they had you know flu vaccine and all of these different types of other vaccines that they knew how they worked and they were able to kind of plug and play in A COVID sequence where a flu sequence used to be, and use that in that setting. And that's very powerful in terms of speed, mRNA vaccines aside, and what everyone's piece on them is. I just think that. The story of speed and the story of roll out is really important.
1:40:33 Just for folks who like me are like, Oh God, I'm getting Maybe not lost, but I'm like, ooh, this is biotech I don't know very much about. To come back to like the dominoes or let's say Uber. Or
1:40:47 SpaceX, but it's like if Uber has built the infrastructure and everything necessary. with Uber Eat to deliver Hamburgers. And Things delivered through reads that aren't food. And then it's like
1:41:00 Can you deliver these Vaccines. It's not the best example because you're not going to be shipping these to people's homes necessarily. But it's and they're like, sure. And then the story is, you know, in 60 days. Uber developed an entire system for delivering vaccines. It's like well, kind of. Right. But they had everything else already built that enabled them to do that. Which then for each
1:41:22 additional quote unquote launch. Not to mix the SpaceX, but they are de risking the entire endeavor and speeding it up by effectively skipping all of those steps that are already established. I would say Biotechnology is like
1:41:39 I think incredibly antiquated when it comes to like involvement of advanced technologies that are not biological. So when I think about like what we need to realize the future of medicine, there's two different buckets. One of them are new drug technologies. So these are programmable medicines, these are different sorts of ways to think about The drug that gets injected into the person, how is that going to be more advanced, safer, more controllable, more adaptable, more personalizable? The second piece is like physical.
1:42:14 deployment infrastructure. How do we build manufacturing, small scale manufacturing, and clinical supply chains that can deploy nationally and globally to make sure that in your neighborhood, you're able to get this advanced medicine. And those are two different and important pieces to what I see the future of medicine becoming. And so on the therapeutic platform side These are new technologies. This is what we're we're developing at strand, right? We're developing various different to use a space ex analogy, various different types of rockets.
1:42:50 And so the way we're thinking about this is you have payloads, right? Similar to satellites, that SpaceX is trying to get more and more fancy payloads, satellites, astronauts, eventually entire data centers or entire moon based crews into orbit in an efficient manner that's scalable for medicine. And in the same way, what we're trying to solve. Is doing that with Build the technological solutions to get these different proteins into the different areas of the body. And the reason that is such a pressing problem is that. Right now we have a lot of low hanging fruit that is diseases we know how to treat.
1:43:26 Proteins that we know could do something about it. But the inability to sort of get the protein to where it needs to go. But We are accelerating our knowledge with AI, right? You have Deep Mind and AlphaFold creating The ability to design almost any protein you can imagine to do anything. You have new AI research tools that are helping us understand disease at a higher level of complexity. We're very soon going to reach a massive bottleneck of all of these different solutions that we know. Exist like what to do.
1:43:58 And we can't get them where they need to go. We're gonna have a backlog of satellites and no ability to get them to orbit in a scalable manner. And so It's great to have AI tools. It's great to build all this new technology, but we've now taken the bottleneck that used to be discovery and we're shifting it over into deployment and testing. What I'd love to just come back to in case it has changed. What are the blockers?
1:44:23 In the way of your Most important. Responsibility as a CEO. 'Cause it's like I wanna make sure that what we're talking about is kind of in service of that. I think that's a fantastic question, actually, because
1:44:36 I guess what I'm saying about what medicine needs to have like a space X moment, for instance, I don't think at least that it's a non obvious thing to realize. The problem is how do you actually Execute it. And the reality of medicine development in the United States and how biotech companies work in the United States and the capital formation ecosystem that exists to create medicine in the United States is Incredibly swung to the incentivization. Of making minor steps forward.
1:45:09 And of doing single things at a time. And so biotechnology actually in the US is not set up from a venture capital standpoint in a lot of ways like Technology is, right? And in tech, you have people constantly being like, I'm going to build a generational company. In biotechnology, 90 plus percent of companies go, Here's an idea. I'm gonna take it from point A to point B.
1:45:32 Which is not point B is not commercial. It is point A is this is the idea, and I think it could work. And point B is here's some evidence that it works. And at point B, I'm gonna sell the asset. It's very similar to how people think about like real estate development, for instance. And so it's attracted almost like a private equity asset development sort of mindset. Sorry to interrupt, but like I try to be the muggle who's like, Ooh, that's interesting. Like that's very memorable. But just like current state of biotech. Comparable to real estate development for these following reasons. But what would it look like for us to have our SpaceX moment and why is that even relevant? I just that
1:46:10 Contrast is super interesting. It's the first time I've heard you say that. And like immediately I'm like, Oh yeah. Okay. Got it. I really think it is a capital markets problem. Let's go back to SpaceX again, because I just love talking about SpaceX.
1:46:24 No one would debate in two thousand four, maybe, that if you radically decreased the cost to orbit. of per kilogram. That that would not be an incredible business. That I think that that's very obvious. The question was Both technologically and how could we possibly get there. Luckily we had someone who was both already extremely wealthy. He wasn't a billionaire yet at that point, I don't think.
1:46:49 Which is fucking crazy to think about. Yeah. Yeah. Elon being a lowly a hundred and thirty millionaire. in the two thousands and who then just put it all on black and was like spin the wheel, Johnny, let's go. And then just shot rocket, shot rocket, shot rocket. I'm gonna go bankrupt. What up? He's like, I'll just go back and make another zip too, and I'll I'll do another PayPal if this doesn't work out. But by the way, I was a huge space nerd at the time and in high school, following this like story and listening to like all of the establishment voices being like, This guy is an idiot.
1:47:23 He doesn't know what he's doing, but he had both his own capital, but the other thing about Elon that I think everyone should be able to tell at this point is he's an incredible capital formation genius. He's an incredible storyteller, which is the key, which was one of the core keys of capital formation. For people listening, are we talking about fundraising? Is that what that means? Fundraising. Yeah. It's about getting money around the idea. Like the ability to pull tons of dollars together around a core insane long term mission is An incredible skill set that deep technology, which is sort of the umbrella that has like space and quantum computing and biotechnology, like anything that is along RD time horizon requires. And so the capital pools, the fundraising environment that is traditional biotech really deeply struggles.
1:48:15 With the idea. Of long-term bold idea investment. We have very few shots that are even allowed to be taken on goal. And so when I think about back to your original question. What is my goal as CEO who wants to not just build a better biotech widget. I don't wanna build a better mouse trap to catch more mice for this one person and exit out of the company. We wanna fundamentally change how we're able to build medicines.
1:48:39 That is a long and expensive road. even as you unlock, you know, if we get drugs approved and we are able to get revenues, by the time we're there, ideally our research engine is humming so much that even those drug revenues don't pay for all of our re it's a constant like feed forward until you break through to the other side and all of a sudden you're staring at a trillion dollar IPO. So you have to kind of like catch that. As CEO, I think about how do we find globally.
1:49:08 the people who are aligned with that idea. And that's collaborators, it's financial support, it's people who want to think about if you're trying to get the best IRR on your dollar. Between here and next year. I might not be your best bet. I'm sorry. I just we we might not be your best bet. We hope to be, we always hope to drive that original piece, but we want to be the 10, 20, 30 year. Massive return. That people are going to see while we push medicine forward. And so those capital partners.
1:49:39 They exist. They exist in the United States. They exist outside the United States. We Want to be able to reach those folks and tell them these stories and be able to, you know, when I think about my role as CEO as we try to actually build the future, I think about How do I get our story in a way? That is digestible because The people who
1:49:57 Think about these things. Everyone wants to cure cancer. I don't need a story behind curing cancer. I just need a story about like how we're gonna get there and how curing cancer is actually going to be One step. on the road to solving disease ret large.
1:50:11 I'm just kind of looking through some of the summaries of the last stuff that we talked about. These are things that really Stick out to me and then it's like, Okay. When I think of aerospace and I am not educated, I was not tracking it in the way that you were, or like a Steve Jurvison, right, who's been just fascinated by this stuff since day zero. But when I think of, say, NASA, and again not to I don't know what I'm talking about, but I think about NA and the government is incredibly
1:50:37 Slow moving and resistant to change. Because Because because there are gonna be a million different reasons. So it's like okay, how did Not to Designate.
1:50:50 Elon Musk is like the Paragon of all great things and like Archangel of Capitalism, but like he's done some pretty amazing stuff. Flaws and warts aside for now. He's the greatest currently living American industrialist. I don't know how anyone could possibly disagree with at least that piece. Yeah, with that piece. So with you and unlocking capital markets, capital formation to support this long term vision, right? There are people who have seemingly Done this kind of stuff.
1:51:18 Meaning patient capital, long term capital, vast quantities of money. who've done this before. SpaceX, I don't think would be the only example, at least in terms of like training Wall Street to be like, it's fine. Jeff is gonna figure it out. He told us what he's gonna do. Like Amazon is also pretty fascinating example. of sort of disciplining Wall Street to be like, Oh, we're the only company that analysts are gonna give a pass on like not being profitable for a hundred years, you know. And by the way, if you break even exactly every year, like that's not an accident, but um the pretty amazing financial planning.
1:51:54 What do you feel like you most need to do, right? Is it getting on the road and delivering a concise message to Sovereign wealth funds in your mind, are you like within three years, five years, we outgrow The vast majority of Venture capital firms.
1:52:13 And okay, maybe we step up and get up some PE firms. I mean, you already have some patient capital on the cap table. So what do you view as like the main dominoes that you need to tip over? Or at least conditions you need to set so that you can execute. On what you're describing. Let's wheel it back to One of the other great
1:52:31 capitalists and industrialists of the twentieth and twenty first century, Jeff Bezos. Because he actually is did things very differently than how Elon approached SpaceX in terms of building a company that is incredibly complex, incredibly long term minded, but he did it in the public market. And you could argue that Tesla has done that as well. And I think that there's an argument to be had there, but looking at what Amazon did. The thing I think every entrepreneur in the world should read is the correlated first public year to last year of Bezos' reign over Amazon investor letters. There's like a Google Doc link online that someone just put them all into one seventy-eight page PDF. And I think everyone should sit down
1:53:11 and spend an afternoon drinking coffee and reading them, knowing what happens with Amazon, reading 1998 through the dot com bubble burst, through the e-commerce generation, through social media, through everyone coming online and you know in our online world today. And watching how Jeff puts forward his vision of the future. It both like gives you a lot of respect, of course, the things he saw coming, but the thing that I respect about it as being a public company or going about building capital in that sort of a way is you need to say what you're doing in a way that makes sense for your investors. And I think for Amazon, they were incredibly undervalued until they weren't. For a very long time, Amazon was trading at like a pretty low PD ratio. And then all of a sudden, people were like, What is AWS, by the way? And it was like an explosion. I mean, I think it was like 20 side hustle. Little side hustle. Well, it was like it's like 2017 or 2018. I feel like they went from
1:54:12 Like a hundred and twenty dollars a share to over fifteen hundred dollars a share in what seemed like no amount of time, is all of a sudden people were like. Hold on. Wait, maybe owning all levels of the infrastructure and deployment ecosystem, plus the brand, plus then building your brands on top, plus also kind of owning the internet in a way, because what is AWS, by the way? It's twenty five billion dollar behemoth. stuck inside this company and they rocketed from like uh I I don't remember what their market cap was before that, but then you know, to one of the largest companies in the world. And That is like everything that's great, a overnight success, twenty years in the making. But if you read the letters and you see it over time, you see them making bets. Not every bet paid off, because not every bet should, but
1:54:58 I believe it's very important. I'm saying this, Tim, because you asked, What do I think I need to do? I think we need to say what we're doing. We need to say it publicly. We need to say it because it will attract partners. We need to say it because it will remind people who are on this mission with us about what we are building to. I think that. Obviously if you invested in Amazon's IPO you would have been very happy in twenty fourteen with the performance of your investment from then to then. But then if you invested in Amazon in twenty fourteen, you'd be very happy with the last twelve years of performance of that stock as well because they continued to make those investments. But you have to have people understanding your message and you need to say it.
1:55:37 You say it every day like a mantra. We are changing the pace of medicine because what happens is the exit ramp comes. If you're doing things great, the exit ramp will always come. You need to ask yourself if you should get off the highway. And Understanding and reminding yourself about what you're building every single day. helps you understand whether or not you need to get off the highway. And I'm not saying every single person should keep their head down and try to build a generational company when someone comes out and offers you an outsized amount of return on your dollar. Like you have stakeholders, you have shareholders, you have people you have promised a piece to And you need to be a diligent steward of their capital and be able to create value in that way.
1:56:17 But I do think that it helps frame What is our current value. that is different than our market cap, whether we're private or public. I remember there's a story about Amazon, I think during the dot com boom, I think this is about Bezos, where he wrote something like we are not our market cap, like across like every chalkboard or whiteboard in the Amazon headquarters during the dot com bubble burst, because obviously the tide went out on everyone. who operated through the internet because no one could discern the difference between a zero revenue, let's get the most people on our website company, and an Amazon who is actually building something real. And so
1:56:53 It's very important to understand your value in order to understand what would be an outsized near term value if, you know, an acquirer comes along or just like how we're going to build things because it's not about near term perception. It's about long term goal. And I like to think about this investment philosophy. When I look at someone like Josh Cushner and how he's made just like this incredible. run at Thrive Capital. I think when I look at some of those great investors who have made like these high conviction bets, it seems like they're able to identify this moment in time for companies that is post-conviction pre-consensus. It is
1:57:31 The ones who know know. We're post conviction. We're no longer saying, Can we do this? We're like, Oh my God, this is going to work. But it's pre-consensus because not everyone has caught on yet, or not everyone is convinced. There's a data set that insiders and technologists or whoever sit there and they go. Oh my god. I think we're there.
1:57:51 There's a moment, you know, if you go back and look at OpenAI or Anthropa or any of these companies, there's a moment probably in the late 2010s. When open AI was, you know, running where folks internally telling the story, if you listen to them are like, Oh my God, this is like accelerating. Before We got Dali before we got Chat GPT. Before we had these tools, there was an internal Post conviction.
1:58:14 Moment. And then of course there's the Oh wow, I think this beats the Turing test. We're post consensus. No one is, I think, going to be able to debate that AI is going to s it completely upend the way that everyone lives their life going forward. And that's the consensus moment. That's the five hundred billion plus market cap moment for all of these companies. And so. We need to understand. Where our
1:58:39 post conviction moment is. And then we need to build. to bring folks around. to the post consensus moment. One question popped into my head earlier that
1:58:49 I wanted to ensure I didn't forget, which is I don't have a strong feeling one way or the other, but the Moderna story is so apt in so many ways. And yet. There's a fly in the ointment, which is
1:59:03 Broadly speaking, but More specifically, you know Covid vaccine has become so politicized. That Despite what any one individual might think, they may just need to fall in line with kind of Party.
1:59:17 Templates or whatever you might talk about, depending on who you're talking to. And I'm wondering if that has presented any problem. Or if it is Behind closed doors and closed session, it doesn't really matter. Thinking about that analogy, there's probably better Maybe not better, but like different sorts of analogies you could use there that are just less
1:59:38 politically charged because there's no reason to wade into politically charged waters to explain these sorts of things. Another great example could just be like the original biotech story around people using technology to make insulin. We used to use pig pancreases, harvest them, grind them up, isolate the insulin, put it out. And the birth of biotechnolis was around people Taking the insulin gene
2:00:03 putting it into bacteria. And getting the bacteria to actually make the insulin protein and then isolating the protein from there. But that actually became a platform because then what did people do? They created her septin and other sorts of medicines by taking other proteins and dropping it in. Growth hormone, etc. Growth hormone. Exactly, right. And that's like the basis of like the genesis of biotechnology. That's the Genentech story that is, you know, also what Genzyme did. this sort of bi coastal war between San Francisco and Boston that's always existed in biotechnology, which I absolutely love. I think it makes things a lot more interesting and Just sort of gives a
2:00:42 good view on the cultures that sat fifty years before any of us were here. But That I think is actually maybe even a more powerful story. And, you know, we built those platforms and those companies built incredible value, and then we got away from it. Then we got more to like, okay, now biotechnology is a tool, let's get back to drug development. And capital markets skated in the 90s when pharma companies began verticalizing and consolidating. They began pulling in, you know, even the big guys themselves, you know, Bristol Meyer Squibb, BMS, that's a big pharma company. Why does it have that name? Because it used to be three companies. You talk to people who worked in
2:01:19 The eighties and the nineties they're like, Well, I used to work for Bristol, I used to work for Myers, I worked for Myers Squibb. They started pulling in. And then once they pulled in, they realized they were so large that they couldn't do research anymore. So they started buying small companies. And so what did our capital markets do? They started building for that acquisition. The problem that becomes on a on a timeline like that, though, is the whole industry. begins to skate. Where
2:01:44 the capital at the other end of the market is pulling. And if that capital is MA, mergers and acquisitions, buyups from big pharma, then everyone in the innovation industry is focusing on what? Pharma wants to buy. What kind of shoes Pharma wants to wear. Right. Yeah, yeah. What's Pharma doing today? What's the MA situation look like today? To the point where, like, this is an actual saying in biotechnology investing circles. It's called short the launch. It means that when a biotech company like mine has gotten a drug approved and is going to launch it themselves, actually take it commercial themselves, investors in the public market. on the whole will short that because they think a biotech company will mess it up, because there's like the muscle doesn't exist anymore because so few companies do it that
2:02:31 They're like short it. No, they're gonna mess it up. They're gonna miss their projection and their stock's gonna dip and we're gonna win. And That's just The market reacting to reality. It's not nefarious necessarily, but That sort of gives you a picture.
2:02:46 Of how Biotechnology has basically succumbed itself to be a little brother to the pharmaceutical industry, a pool Uh drugs that they can buy. Which?
2:02:58 That's wonderful. Google buying your startup in the tech industry is a great exit for everyone involved. However, if the entire tech industry was reliant on Meta, Google, Netflix, whoever buying your company, then you would see a lot weirder and less ambitious dynamics at the entrepreneurial side because you'd just be trying to figure out what is Sundar gonna do a year from now. You can't build for a select group of people's tastes. And that's the risk I think biotechnology has found itself in. Yeah.
2:03:29 Are there any um More recent examples. They don't have to be biotech, but outside of SpaceX, outside of Amazon, not going as far back. As Gentime and Genetic. Fun to look back at that, particularly
2:03:44 when you read some of these books on the birth of say Jan Tech and you realize it's like yeah this was kind of it's top of mind, so I'll mention it, but it was kind of like Apple, right? You had this like ragtag group of renegades in a garage. really flying by the seat of their pants and doing some wild shit. And As you said. Decades later.
2:04:06 when everyone is contorting themselves into their probably inaccurate prediction of what The Heads of Corp Dev or the CEO of big companies one, two, and three are thinking. The dynamic is just completely different.
2:04:22 Like the incentives are very different. The timelines are very different. how you think about building on Success. I mean to get back to like the platform. Like if every drug has to individually go from A to Z.
2:04:35 You don't have a platform. It's like if you're kind of skipping A to M and you're starting at M, like okay, maybe you have a platform. I'm wondering if there are any other entrepreneurs or companies that stand out to you as having parallels to what you're trying to do. Before I get to that, just because you just compared Genentech and Apple and um I
2:04:56 I wanna point something out to you. I don't know if you know this. I don't know if anyone knows this. So Art Levinson, who is the CEO of Genentech from nineteen ninety-five to Two thousand Something. was also on the Apple board of directors and became the chairman, replacing Steve Jobs and I don't know.
2:05:14 Twenty eleven or something. I did not know that. Yeah. There's a wonderful story. about the read through. And Art Levinston and his partnership and friendship with Steve Jobs between the two of them. They are highly
2:05:27 Highly related companies, and I think that is actually why I spend time studying. technology and why you see a increased interest, especially in the last five to ten years among traditional tech and deep tech Silicon Valley investors like Andreessen Horowitz or Playground Global, one of my investors. moving into biotechnology, seeing a resurgence of this Both technological
2:05:55 and cultural outlook towards building big ideas around what we can do with technology applied to Biology and human health. And that I think is really exciting. There's all sorts of examples of of companies that have built things like this. I think that Tesla's a great example. Uh well, maybe we should move away from uh from from an Elon. analogy. I I don't mean to like ride on Elon. I I just I have spent a lot of time like studying him. But like Apple is a great example of a company that sort of built like a core platform that solved a delivery problem. Not looking at the early Steve Jobs
2:06:34 first tenure at the company. But when he re came back to the company, I don't remember what year that was, ninety-eight, maybe, or something, he came back to the company, cut like 80% of their product offerings, refined it, created the smartphone era, upended Blackberry in a way that was like so I mean they were hated on, but he created that's a deliver system. That's what a smartphone is. Apple and the iPhone and the iPad, they're delivery systems of all of the technology workplace that can work within them. And by creating that delivery system, your iPhone and you are going to work within our ecosystem and attacking that market by partnering with Joni I and doing like a you know creating a culture around it, but also creating an ease of operability, created an an ability for other companies to deliver their products. to consumers so many companies Don't build smartphones, but they build
2:07:27 on smartphones. That's a delivery platform that also is constantly getting better. The iPhone one, I actually just saw an iPhone one recently at a friend's house. He like still has his original iPhone one. I was like, God, your dad must have been rich. No copy paste. Yeah, no copy like this thick, man. It's this thick. It's this thick, but it's also the screen is so s I thought it was so big, it's so small. But like Each successive one
2:07:54 Increased its capabilities, increased its form factor, increased what it could do, became a better delivery system, eventually supplanted, right over time you stopped using the earlier versions, but Each one, of course, had a ton of value and Apple delivered things to you. They sold you things, they said, you know, they had the iTun store, they sold you music, they used it to deliver their own products. They were also a platform for other people to deliver their products. And that created one of the most valuable companies in the entire world. And that is You think about what creates the most Value and what
2:08:29 Changes the way that we interact with the world around us. It is delivery solutions. It is Being able to launch enough satellites to put internet anywhere in the world and do that on an economical basis. It is a place where you could design any sort of software and get it into the hands of almost every single person on this planet, or at least every single person in the developed world. And I think for medicine. It is being able to reach any cell in the body and get the exact type of protein that we want there. And in the near term, it'll be more traditional medicines. It'll be we need to design them. And then we need to create them and then we need to test them and we need to get them to patients and you need to develop for larger patient populations. But if you want to see what that sort of technology enables on a 10 to 20 year timeline,
2:09:18 It's personalization. Cuz once you have a good view. Or a great understanding of how these delivery solutions work. And you have the infrastructure, manufacturing, clinical deployment, getting to patients both across the country, across the world. Then you can start to be like Well Why aren't we just building bespoke therapies? Right now the economics don't work.
2:09:38 But the economics of Spotify didn't work in two thousand one. If Spotify's entire market was through your desktop computer, you could have never built Spotify, but you can when they're smartphones. You can when people always have it in their car. And so in 2011, that's a much better time for Spotify to exist as a company and really take off. Now That is I think where the future of medicine sort of goes towards, right up. Hyper personalization. We're starting to see people trying to build personalized medicine right now. There's a story, baby KJ that came out last year in the New York Times. Jennifer Dowman was involved, uh a number of hospitals, they
2:10:16 corrected a baby, but the reality of that baby's genetic problem was that the change needed to be made in the liver. And That's great for that baby. And there's other diseases that we could do that for in the liver. But we're gonna run out.
2:10:30 Kidney disease is not going to be solved in the liver. Neurodegeneration is not going to be solved in the liver. And so we have to find the other solutions and then build infrastructure that creates an economically viable path forward to where bespoke medicines are possible. Yeah, we'll put in a link. to baby KJ. No, which I hadn't actually through a whole idea. My larger piece of where I think the future of medicine is going. Which I guess we're not going to get into today, but you you and I have texted on like why has CRISPR not delivered
2:11:02 On the expectations that had everybody. Euphoric. X years in the past. But in this particular case, KJ became the first patient to receive a a personalized systemic CRISPR base editing therapy, saving him from a fatal liver condition. So people can read more about that. Well, this is super fun. Nice to see you, man. Good to see you. And happy to try to be helpful any time.
2:11:24 You know how to find me. It's always fun to talk to you, Tim. All right, man. Take care. All right. We'll talk soon. Yeah. Take care, buddy. Later, man. Bye. Bye. Hey guys, this is Tim again, just one more thing before you take off, and that is Five Bullet Friday. Would you enjoy getting a short email from me every Friday that provides a little fun before the weekend? Between one and a half and two million people subscribe to my free newsletter, my super short newsletter called Five Bullet Friday. Easy to sign up, easy to cancel.
2:11:52 It is basically a half page that I send out every Friday to share the coolest things I've found or discovered or have started exploring over that week. It's kind of like my diary of cool things. It often includes articles I'm reading, books I'm reading. albums perhaps, gadgets, gizmos, all sorts of tech tricks and so on that get sent to me by my friends, including a lot of podcast. Guests and these strange esoteric things end up in my field and then I test them and then I share them with you. So if that sounds fun, again, it's very short, a little tiny bite of goodness before you head off for the weekend, something to think about. If you'd like to try it out, just go to Tim.blog slash Friday. Type that into your browser, Tim.blog slash. Friday, drop in your email and you'll get the very next one.
2:12:40 Thanks for listening. As many of you know, for the last few years I've been sleeping on a midnight luxe mattress from today's sponsor, Helix Sleep. I also have one in the guest bedroom downstairs and feedback from friends has always been fantastic. It's something they comment on without any prompting from me whatsoever. I also recently had a chance to test the Helix Sunset Elite. The Sunset Elite delivers exceptional comfort while putting the right support in the right spots. It is made with five tailored foam layers. including a base layer with full perimeter zoned lumbar support right where I need it, and middle lay with premium foam and microcoils to create a soft contouring feel. This spring, if you're thinking about upgrading your sleep, Helix will ship it to your door for free in the US, let you sleep on it for 120 nights, and if you don't love it, they're happy with Helix Guarantee, makes returns completely free.
2:13:30 Painless, so check it out. Go to helixsleep.com slash Tim. for twenty percent off site wide. That's helix sleep.com slash Tim for twenty percent off site wide. Longtime listeners know how important privacy is to me. In fact, my friends would call me. paranoid or they used to call me paranoid and now they think I was just depression in a sense. These days you may have noticed it is a lot harder to protect privacy. Anyone can find your information with a quick search. It's shockingly easy and I've had friends and paid people to red tee me to try to find my info. And uh
2:14:07 What you'll notice is that shadowy data brokers quietly collect and trade your home address, phone, family members, and more. It's a mess. You have to have a plan for defense. and you can fight back with Incogni. That's I-N-C-O-G-N-I. Incogni automatically removes your information across 420 plus data brokers with 1,000 plus additional sites covered in their unlimited plan, and they keep it scrubbed automatically. Deloitte has independently verified the headline numbers. In other words, 245 million plus removal requests. And the company adheres to strict security standards with an A plus rating from the Feder Business Bureau. And with their unlimited plan, if you find your info on a site they don't monitor, send them the link.
2:14:53 and their privacy team will handle it. Go to incogni.com slash Tim, INCO G N I.com slash Tim, and use code Tim at checkout to get 60% off of an annual plan one more time at Incogni.com slash Tim.
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