Into the Impossible With Brian Keating - Annie Jacobsen: How One Lab Leak Ends the World in 6 Days
Episode Date: July 28, 2026Annie Jacobsen on BIOLOGICAL WAR: how a single lab leak could take us from outbreak to anarchy in six days — and why bio may be scarier than nuclear. WIN a signed copy of BIOLOGICAL WAR or NUCLEAR ...WAR, a meteorite & more — enter free: https://briankeating.com/annie (Join there for the free Biological War Scenario Simulation and Source Dossier + early access to my next Nobel-laureate interview.) Covid killed ~1% of the people it infected. Pneumonic plague, untreated, kills nearly 100% within 24 hours. In her new book Biological War: A Scenario, bestselling journalist Annie Jacobsen war-games what happens when an engineered pathogen escapes — drawing on interviews with presidential advisors, secretaries of defense, STRATCOM commanders, epidemiologists, and directors of Operation Warp Speed. We get into gain-of-function, the Soviet bioweapons program, mirror life, AI and bioweapons (including her conversation with Sam Altman), the Fermi Paradox and the Great Filter — and why the first 24 hours decide everything. ENTER THE GIVEAWAY + GET THE FREE SOURCE DOSSIER: https://briankeating.com/annie GET THE BOOK (Annie narrates the audiobook): https://www.amazon.es/Biological-War-non-fiction-thriller-bestselling/dp/1911742035 https://play.google.com/store/audiobooks/details?id=AQAAAEBqvjj-QM 0:00 Covid was 1%. Pneumonic plague is 100%. 1:31 Why this conversation matters (please subscribe) 2:05 Don't judge a book by its cover — Biological War 4:54 "You can only mitigate extermination" 5:50 Reporting a classified world without a clearance 9:00 Gain-of-function: cure or weapon? 11:22 BSL-4, Vektor & the Siberia lab leak 15:28 Katalin Karikó & the two sides of the lab bench 18:06 Paul Berg & when biology turned dangerous 20:42 Paranoia as doctrine: why the Soviets cheated 23:13 Tailored bioweapons & genetic privacy 27:16 Could it happen again? What Covid taught us 33:40 The WHO "not airborne" mistake & the collapse of trust 36:52 Both sides failed: the vaccine politics 39:48 The "euphoria" enhancement — dark-hearted evil 44:02 Why "airborne" changes everything 45:50 Climate vs. AI: the next scenario? 48:12 Biological twilight & "devolution" 52:52 Fritz Haber and the hubris of genius 54:36 AI + bio: the real threat 1:00:34 Mirror life: the extinction-level horror 1:04:44 Trinity Day, Iran & "the atomic weapon" 1:08:26 The Fermi Paradox & the Great Filter 1:09:34 A gift for Annie (a meteorite + a piece of the Moon) 1:16:36 Igor Domaradsky's secret notes 1:21:12 Daschle, anthrax & "inhuman things just to survive" 1:21:56 If you were President: shutting down the internet 1:27:18 Who dies first — first responders and mothers 1:33:02 Sam Altman, ChatGPT & the change OpenAI made 1:37:26 "You want me on that wall" 1:40:00 A hopeful ending ABOUT ANNIE JACOBSEN Pulitzer Prize finalist and author of Nuclear War: A Scenario, Operation Paperclip, Area 51, and Surprise, Kill, Vanish. GO DEEPER • Katalin Karikó — the mRNA breakthrough: https://open.spotify.com/episode/3oPZMPMlzsEFEyvVHA5dAE • Jay Bhattacharya — Follow Science, Not Scientists: https://www.youtube.com/watch?v=iTnJNXYFg9M • Freeman Dyson — Into the Impossible: https://www.youtube.com/watch?v=egpsFbbpkHQ A FEW SOURCES FROM THE BOOK (full dossier at https://briankeating.com/annie) • "Confronting risks of mirror life," Science (2024): https://doi.org/10.1126/science.ads9158 • Ken Alibek, Biohazard (the Soviet program from the man who ran it) • Biological Weapons Convention (1972): https://disarmament.unoda.org/en/our-work/weapons-mass-destruction/biological-weapons/biological-weapons-convention SUBSCRIBE so guests like Annie keep saying yes: https://www.youtube.com/DrBrianKeating?sub_confirmation=1 Newsletter + meteorite offer: https://BrianKeating.com/edu: https://briankeating.com/annie Get the transcript, fascinating bonus content, and my Monday M.A.G.I.C. Message: https://briankeating.com/yt Support Into the Impossible on Patreon, get my weekly M.A.G.I.C. Message, unfiltered bonus content, and live monthly Office Hours with me: https://www.patreon.com/drbriankeating Join this channel for perks, monthly Office Hours, and your name in the Member Roster at the end of every episode: https://www.youtube.com/channel/UCmXH_moPhfkqCk6S3b9RWuw/join What scares you more — nuclear war or biological war? Tell me in the comments. #AnnieJacobsen #BiologicalWar #Bioweapons #Pandemic #BrianKeating #IntoTheImpossible #NuclearWar #MirrorLife #AI #Biosecurity Learn more about your ad choices. Visit megaphone.fm/adchoices
Transcript
Discussion (0)
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COVID had a 1% death rate, 1%.
Pneumonic plague, you get it and you don't get antibiotics.
Inside of 24 hours, you're dead with 100% case fatality rates.
Is it up to us? And what can we do?
I'm talking to presidential advisors, secretaries of defense,
stratcom commanders, epidemiologists, directors of Operation Warpsfeed,
people who have their hand on the pulse.
He gave me this line, which just floored me.
He said, you know, Annie, in a large-scale biological attack,
there's nothing you can really do to prevent it.
You can only handle mitigating extermination.
Essentially, a kid in a basement with the help of a computational system,
an AI system like Claude could potentially make this kind of bio-weapon.
And that's the fundamental danger.
Bio is very, very, very different.
I take readers from outbreak to anarchy in six days.
Instead of being home under the cover,
not infecting people, you're out disco dancing in a very crowded place and you're essentially in the
middle of a super spreader event. That's straight up dark-hearted evil. If there is a lab leak, if the outbreak
can be shut down in the first 12 to 24 hours, you can actually prevent the dystopian ending. But once it's 24
hours, once it's 48 hours, 96 hours, it's out of the back. What scenario scares you more?
nuclear war, a biological war.
Quick thing before we start,
most of you watching this aren't subscribed.
If you've ever gotten something in one of my conversations,
subscribing is a single thing that decides whether guests like Annie say yes to the next pitch.
The scenario book that you've written this time is also kind of in a similar genre as your previous book,
which is just some of the,
I call it hard science fiction.
You call it science fact.
I agree, except up to the point when there's actually a disaster that's going to take place in this book.
You know, I sometimes say in my tweets in such, spoiler alert, it has a dystopian ending.
That's right.
And for those, you know, 10 of you out there who haven't read Nuclear War, you will have two treats in store for you.
Because these books are both incredibly historically accurately researched.
You're a journalist.
You're trained as a journalist.
You actually do the hard work of being a journalist.
But you see it from the eye of a storyteller.
You write for television.
I guess the first place I'd like to start is, yeah.
with what you're not supposed to do,
which is to judge a book by its cover.
So I want to take us through
this incredible new book,
Biological War Scenario.
So tell us about the cover,
the title,
and the subtitle,
which is just a scenario.
Well, it's a beautiful cover,
and I have to give credit
to the art department for that.
And you've been to a lot more places,
a lot more radical places
around the globe than I have.
You've been to a continent I have in there.
Yet.
Yeah, we may take it there.
Yet, yeah.
You know, biological war scenario
follows in the vein of nuclear
War a scenario. Not that I expected to write a follow-on book, although when I was reporting
nuclear war, a number of my sources said to me, Annie, you have to look at bio next. These are
people who work in counter-proliferation, a fancy word for, God forbid, you know, we need to make sure
that this kind of an existential threat doesn't happen. And, you know, they're similar in terms
of the title and the front, but, oh my goodness, they are diff.
friend to male animals, they are different scenarios. One note on your like science fiction versus
Zuma and Stack, what I like to say is it's, you know, it's hypothetical. It's a hypothetical
scenario based on war gaming that is done at the Pentagon. And you will note, I list my sources
in the front of the book, not the back. My first six books have the sources in the back,
But I want readers to realize, because I am now writing scenario, that this is who she spoke with.
And so you realize I'm talking to former presidential advisors, secretaries of defense, you know, stratcom commanders, epidemiologists, directors of Operation Warpsfeed, people who have their hand on the pulse, if you will.
And one of the individuals in this book, I was fortunate to interview was Colonel, retired Colonel Tom Earhart.
who worked in the Pentagon for a very famous office there called the Office of Net Assessment,
inside the office of the Secretary of Defense.
It was run for decades by a guy called Andy Marshall.
They called him The Wizard.
And the wargaming that was done in there is deeply classified.
But Colonel Earhart helped me to understand what it is, how it works.
And most importantly, he gave me this line, which just floored me and became a lot of the scenario,
which is when he said, you know, Annie, in a large-scale biological attack,
there's nothing you can really do to prevent it.
You can only handle mitigating extermination.
That freaked me out, and that became a real locus of this book.
Yeah.
It's impossible not to compare the two.
I know that's like, you know, asking you to compare your children,
although when I do that with my mom, you know, she'll say,
oh, it's like comparing my left hand to my right hand.
I said, mom, you're left-handed.
I mean, it's pretty obvious with one you like better.
But when you think about these, the role that I thought of as a physicist was how important, like you just said, you call it wargaming, we would call it simulation.
How do you back that up with the report?
How do you get this gripping, you know, just violent, mind-melting detail without compromise?
I mean, you don't have security clearance.
I mean, right?
How do you do that on a practical level?
How do they give you the access that you have?
And how much of it has to be kind of, you know, conjecture on your part, shall we say?
Yeah.
That's a really interesting long conversation. But the short version of it is, and first
all, you're absolutely correct, that I don't have a security clearance. And also really important
to know is I do not receive classified information. People often, I'll be on other podcasts.
How do you get all this classified information? I don't get that because my sources would be violating
their security clearances if they gave me that information. And so what's interesting is I'm taken
up to the edge of what can legally be known. And that has to do with the fact that
that many of these operations that are highly classified,
there are parts of them that become unclassified or are declassified,
and the public doesn't really ever know about them.
Yeah.
And a lot of times that's me learning keywords that I might use
to request something from the National Archives.
And so I'm always sourcing my stories.
They're kind of like a big puzzle,
and there's different pieces of the puzzle,
firsthand sources, always in quotes.
You know, you can go to the notes and see, oh, she found this out in the National Archives.
That's where this from.
Or other journalists work.
I stand on the shoulders of many, many incredible reporters who come before.
Before this gets any darker, it's worth saying what Annie thinks the point of her book actually is.
The really challenging part for me with your writing is that you're so damn good at it.
It's terrifying.
I told my wife I was talking about she's like, how does Annie sleep?
Like, when you talk about these things, I mean, you know, spoiler alert, nuclear war goes through 24,000 years of human history, you know, from 88 minutes ago to 24,000 years in the future.
Biological war takes place on a much sharper time scale.
Plus, it's very vivid.
You know, we haven't been through, you know, none of us really live through, you know,
Hiroshima and things like that.
We can talk about it abstractly.
But we all live through COVID.
And we all saw what happened.
And there's many parallels in here.
You do a very careful job distinguishing between what would be used as a weapon
versus what would be used for rational, you know, sort of production.
And the thing that, you know, most struck me when I had Catalan Carrico,
winner of the Nobel Prize in physiology for the COVID vaccine. We'll talk about her in just a bit.
But, you know, I said, is gain a function? Is that really so bad? I mean, I kind of, when I had
COVID, I had COVID once. I had a vaccine. I didn't have all the boosters. And I just couldn't take it
after a while. And, you know, so I did have the vaccine. I had a booster. And that was it.
But when I had COVID after getting the vaccine, after having the booster, I lost my sense of
taste and smell for a while. And so I lost, I lost weight. I like to say, I drop five pounds from
my chin to my stuff. Now, I dropped five pounds. I lost weight. And I thought, well, you know,
what if there was, God forbid, because there's millions of people died, the vaccine definitely
saved millions of people, right? And my friend, Dr. J. Baracharya, who's now the director of the
NIH, who's been in this chair, so to speak, he was a very big proponent of the vaccine. So let's not
get too politicized unnecessarily. But are there beneficial reasons that the average person might
say, you know, maybe we shouldn't stop gain of function, which is, you know, plays a role in this
book, which we'll talk about. Is gain a function always a bad thing?
Gain a function for people who are listening or watching who aren't professors and didn't
almost win the Nobel Prize. Gain a function is like it's very much like it sounds, gaining
functions. So it's a form of genetic modification of genetic engineering where you're looking at a
pathogen. And of course, for reviewers, listeners, a pathogen can either be a virus or a bacteria.
In the scenario, I go with bacteria for reasons we get into,
but you are genetically modifying that so that it gains new function.
And the three most important functions to be gained
when you're thinking about modification in this world of,
is it really dangerous or is it really positive?
Do the risks outweigh the rewards in this debate?
Would be virulence, right?
like you can make something more lethal, transmissibility,
you can make it more contagious,
and can you make it defy a medical countermeasure?
So can you make it sort of override an existing immunity
that you might have from a vaccine?
Can it override an antibiotic you might take
in the case of a bacteria?
So the proponents of gain a function will say,
absolutely, the reason we do those experiments
is we need to be prepared in the event of a pandemic,
an epidemic or a pandemic.
We have to be able to get at it fast.
And the only way to do that is to understand
what a bad guy could maybe do.
So it's this very catch-22 situation,
what comes first, the chicken or the egg.
Now, the people who are against,
like sort of very anti-gain of function,
including Colonel Earhart, who called it evil,
including Andy Weber, who was, you know,
has decades in the office of the Secretary of Defense.
He served under the Obama administration,
back to the Reagan administration.
He's really a veteran in understanding this.
He told me that he believes that gain of function
is a euphemism for biological weapons engineering.
And biological weapons engineering is illegal.
To understand why an accident is the scenario,
you need to know how many of these labs there are now.
where they are. To me, that does sound, yes, of course, we have to talk about, you know, the lab leak and the kind of, the way that it happens in this book, you know, is sort of unexpected. I mean, nuclear war, you know, when I saw the title for that book years ago and I fell in love with it, you know, I thought, oh, Russia is launching it more, you know, and it was right after the invasion of Ukraine and everything was just like, everything you do is like very topical, very timely. I was like, okay, so it's coming from North Korea and that, you know, obviously, spoiler alert, but four, four year old, three year old, right? Yeah, so we could spoil it, right? And, and,
In that context, that was a little bit of surprise, and then everything goes haywire, right?
And that was an intentional act of war on behalf of North Korea.
We're not really sure why, but, you know, it does happen, right?
Here, it's not, it's sort of the munitions of a war that are being created.
So we should set the stage.
The premise of this book is different.
It's not an active attack.
It's a sort of a passive attack.
The results are equally as catastrophic, some ways more horrifying, as we'll talk about.
But let's set the stage for the listener, viewer,
Who hasn't read it because it comes out today.
So go out and get it.
I recommend the audiobook because Annie reads all of her books,
and I just, you have a great voice.
I mean, there's no denying it.
It's very mellifluous is the way I describe it.
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So let's set the stage.
Let's go back to where it is.
It takes place.
I have a handy globe here.
So it takes place in Siberia.
So let's start there.
The inciting incident, yes.
And the inciting incident.
So it's in Siberia.
Let's take us there.
Yes.
Before I do that,
let me just set the stage with this concept,
which is that in looking at doctrine
of how by,
biological war is looked at both at the Defense Department and at FEMA, okay, and also at the U.S.
Department of Health and Human Services, which would be in charge of like the nation's public health
were something to happen in the United States. In all of that doctrine, planning doctrine,
listed in the BW category is an biological, a catastrophic, biological, biological,
incident or attack.
And that is, when you are a reporter and you suddenly, ding, ding, ding, that is a
moth mic drop moment because you realize, oh, this is not just biological warfare in the old
school sense of like, you know, let's drop some biological bombs on them. An incident means
an accident. It means a lab leak. It means a lab escape. Regardless of how it happens.
Regardless of that. And that is profoundly dangerous. I mean, throwing out a number here, BSL4 Labs, biosafety level four, the, you know, the spacesuits and that everybody sees in the movies. There were two in the United States before 9-11. There are now 17, 15 or 17, two of them are being constructed. BSL-3 labs, which you can work with plague, haunt a virus. I mean, these are serious pathogens. There are 3,500 around.
the world. There's some here in San Diego. And they are, many of them in 110 countries are in places
that are actually current war zones. And so now consider the idea of an incident as a lab leak or
a lab accident. And then you might realize why I began the scenario that way, because you cannot,
there can be no arguing of like, that could never happen because accidents happen. And so
there is a lab accident in Siberia at a very famous BSL4 lab called Vector.
And there was a accident at Vector in 2019 where a building caught on fire.
And I always want readers to know I do those little references to that.
So you can realize you are reading science fact, not science.
Yes.
I want to go back to what you just said, about any modality in which it escapes,
You kind of divide things, biological warfare, before escape, before accident, before intentional leak.
I want to start with that because, to me, as a scientist, and having interviewed benchtop scientists, biologist, Nobel Prize winners, like I said, like Catalin Caracro, perfect example.
She was working on, you know, recombinant DNA, which also plays a role in the book, which was a step, you know, first discovered and won the Nobel Prize 1971, I think you'd talk about in this book.
They're doing things for the sheer scientific thrill, the challenge, the desired curiosity that all great scientists have.
And then maybe later we'll have some application, although in her case, she had a torturous career.
She was threatened with deportation by her postdoc advisor.
She's a stoic.
She actually ended up forgiving him, and he tried to have her remove from the country.
With a young child, she had all of her lab equipment thrown out of the bench at UPenn, lesser of the IVs compared to Brown and Princeton.
And it was, you know, thrown out unceremoniously.
she was kicked out, and then, okay, when she wins a Nobel Prize, then they try to retroactively
reinstate her as faculty, to which she said, quite rightfully F you, and basically,
what a story.
She's an amazing person.
I'd love to introduce you guys next time she visits here quite frequently.
But she explained in such getting chickens eggs from her father in Hungary to do, you know,
simple tests on how different bacteria and salmonella and think that as a child.
And then that carried through to her and sustained her as an adult.
And then you have the people on the other side of them.
the lab bench, what we call translationalists, that take it from a laboratory, from a university,
from a research setting, and then they want to make money, or they want to make weapons with it.
What would you do in that situation?
How do you advise a young scientist, many of whom are listening, Nobel laureates, listen to this podcast?
How do you advise them?
Because, like, at a certain level, where does it stop with?
A lot of the nuclear scientists that you talk to deeply regretted their involvement,
as you talk about in your book in Area 51 and in a paper clip as well, right?
you did the firsthand research.
A lot of them, including our late great mutual friend, Herb York, regretted it to some extent.
How do you stop them or is it ethical to stop them?
How do you handle that?
Do you kind of kill baby Hitler?
What level do you intervene or do not?
Is it not right to intervene?
I mean, I'm not a scientist, so I can't answer that question, but I can certainly and always do in all of my books,
raise that issue for scientists to think about for themselves.
And I am just simply relaying stories of, you know, historical stories of scientists on the record
struggling with this, you know, complex question usually later in their life after they have done
something often that they regret.
And or maybe regret is too strong of a word.
Maybe it's sort of wish they had thought through a little bit more.
And the best example, or certainly in this book, is you mentioned Paul Berg, who really
has that origin story of recombinant DNA.
Again, it is just like it sounds.
Like you recombine DNA.
And this was done in 1971 in a lab in Stanford University.
And I quote Berg giving interviews later, he won the Nobel Prize,
talking about how we weren't even thinking of nefarious use of this.
And then later he says, or one of his colleagues says, we should have.
because that time, that moment in time in history is so important to the question you're raising
from a sort of real locus of the shift about biological weapons.
So many people don't realize that once upon a time, biological weapons were legal.
They were legal in the United States, meaning they weren't illegal.
And the United States was building a massive arsenal of biological weapons.
This is on the record known work, primarily at Fort Dietrich in Maryland, but also at several other places around the country.
And starting in 1969, President Nixon just sort of mysteriously, there's air quotes around that, decided to give up the biological weapons arsenal.
You know, he talked about them being repugnant to the conscience of mankind.
And the treaty as a result, the Biological Weapons Convention Treaty, which is also known as the BWC,
That was signed by all these nations starting in 1972, including Russia.
And the reason why I choose Siberia, Russia, as the lab leak, the Vector Lab, is because there's historical precedent of Russia absolutely kind of crossing its fingers behind its back.
As they signed this treaty, they began, by their own admittance of their scientists that defected to the United States, they began a colossal biological weapons program.
And so when everyone else, like the United States, was destroying its arsenals, the Soviets were not only not destroying theirs, but they were building new weapons using recombinant DNA technology that they, in essence, stole from birth.
What do you think is their motivation?
I mean, they have more nuclear weapons than they did for a long time.
The missile gap was closed in the 60s.
What would be their motive?
I mean, play armchair psychologist for a moment.
What is their rationale?
I could see a rogue state, one of the United States.
to do it because it's a poor, you know, crazy warlords version of a nuke. But why would they do it?
Well, I don't have to play armchair speculative, because it's on the record. Because a number of
the Soviet biological weapons engineers defected to the United States in the 1990s. And they came
here and they told us what they were doing. And they told us why they were doing it. And the reason was
twofold. One, they were told by their powers that be, their military minders, that of course
the United States was cheating on the treaty. Of course they were making biological weapons.
That was the one, which, you know, historically is not true. As far as I know, that is not true.
As far as I know, we really did spend 214 weeks destroying our arsenal. They were told that.
And then the second point is that they were told, listen, America, the West hates the Soviet Union so much.
They will do anything to annihilate us.
And so we have to do anything to annihilate them.
You know, lie, cheat, steal, kill, et cetera, et cetera.
And those two really disquieting concepts underpin the whole narrative.
You know, this idea of paranoia, this idea of you cannot trust anyone.
So if there's any sort of ballast to that that I think the book offers, it's to try and really have people reconsider how dangerous mistrust and paranoia are, both in an individual and in a nation.
My name is Peter Parker, but I'm also Spider-Man.
This Thursday, we're faced with a threat.
That could be anyone.
The world may have forgotten Peter Parker.
I'm just a neighbor, friendly neighbor.
But he hasn't forgotten them.
Sometimes Spider-Man has to do the hard thing.
That's my responsibility.
Talk to Banner?
I didn't know you could get that big.
Spider-Man, brand-new day in theaters Thursday.
Do you feel somewhat paradoxically more hopeful now that no nukes have been exchanged in this current conflict in the Ukraine?
Or do you feel even that we're still on this razor's edge?
Well, certainly it's like a profoundly great thing that no one has been crazy enough to use a nuclear weapon.
And Russia often threatens tactical nuclear weapons, which they have in their arsenal.
We do not, right?
And we do not for a reason because they would be too easy to use.
But, you know, I make it really clear in nuclear war that from my experience and my understanding and everything I've learned about it is that everybody in the business of preventing nuclear war knows that if nuclear war begins,
It only ends in one way, which is total annihilation.
And so I would say you can't use nuclear weapons.
So is it a good thing?
Of course it is.
And is it make you wince every time, you know, Putin or Lavrov or somebody suggests that they might be used?
I mean, I just, you know, hold my breath.
Bio is very different.
It's, and again, that idea of an accident, an incident, a lab leak.
So not far from this campus is Illuminon Genomics, great many Nobel laureates, including, you know, hopefully future guests, Francis Arnold from Caltech, hopefully she'll be, she's a board member. And there's sort of the industrial version or the professional version of 23 and me, which recently went through bankruptcy, then emerged. And there was a great, you know, concern that, you know, people's DNA would be used against them to tailor, you know, handcrafted bio weapons. Is that scenario doesn't take place here per se. But, but that came to me sort of, you know,
you know, that you could basically have a much better weapon.
If you could tailor it, you know, Putin happened to spit in a cup someday and, you know, Zelensky wants to get him out, they could just take him out by having some pathogen that could get to.
Are there more less, you know, catastrophically, you know, world-ending scenarios where bioweapons could be more humane, you know, that they could be targeted to just specific incidents and that could be viewed as a proper tactic of war?
Or are they always, and for all time, to be never used in any scenario?
I think of that more in the category of targeted assassination, which is something I wrote about in another book about the CIA's paramilitary called Surprise Kill Vanek.
And people have been targeting and killing one another with poisons, with toxins, since time immemorials.
And there's actually an interesting anecdote from one of the Soviet defector scientists where he talks about, and this is back in like, let's say the late,
probably the early 80s where he talks about someone from the Politburo coming into his office.
The person I'm referring to, his name is Ken Aliback. And he kind of famously wrote a book called
Biohazard. I think he published right around the millennium. And he tells the story in that book,
and I'm repeating it, paraphrasing it, which is that Politburo guy comes in and says, like,
hey, if we wanted to, like, let's just say hypothetically, there was somebody I wanted to get rid of.
And if we were to put Ebola, let's say, on his steering wheel, would he get it and die?
You know, I mean, it was literally that specific.
And I'm pretty sure the pathogen was Ebola.
And then you can read the book and see, you know, Alibac's reaction.
And it's like, yes, it would kill him, but it would probably kill, you know, a bunch of other people.
And so, though I think what you're speaking to is very interesting in terms of science and computational science and where we are today and realizing you can do it.
The answer is yes.
Any question you ask me, yes.
Can we target, fill in the blank, yes, yes, yes.
All of this can be done.
This is a major concern of everybody working in the business
of preventing biological warfare.
And even scarier, whatever it is that they're working on,
can also escape from the lab.
Yeah.
And so would you advise somebody not to get these kinds of inoptic,
synoptic genetic testing?
I mean, just for the off chance that they may become, you know, the next Kardashian,
and then they do an interview on a podcast, and their saliva gets used to go to, you know,
some malevolent DNA processing.
Anyway, would you advise people just like your own kind of digital hygiene, now genetic hygiene?
Should we be more cognizant of that?
I am always going to fall into the category of me not advise.
I'm not going to advise anyone of anything, except for maybe by kids.
Actually, it's good.
Now that they're over the age of 18, it's more like.
Here's what I would suggest or here's what I would do.
One of my favorite sayings is just don't make me do it, you know?
And that literally, like so that's why I'm all about information.
I just think information is beautiful.
Information is illuminating.
And information is so satisfying because you have, you get to make personal decisions for yourself
for somebody who asks for your opinion that you care about based on the information you have.
And you can also say, like, this is just the information.
I have. If you had written this book, you know, in 2019 or something like that, you know, before COVID, would it have been different? Would you have, you know, maybe gotten some things wrong or, you know, in your projections or maybe this scenario, would it be different? I don't think I could have written this book in 2019 because I think I would have gotten some pushback from myself and others maybe of like, this hasn't happened since 1918, since the Spanish flu or the influenza pandemic. Let me say this. It's like,
when you read the book, as you have, and I think people that have read the book say to me,
wow, it really made me think about COVID differently.
So in other words, they didn't say, wow, that's really interesting your opinion of COVID.
Because you don't know my opinion of everything from the Lab League or the origin story or what I think about vaccines.
None of that's in there doesn't need to be, don't need my opinion.
What I do is give you the fact.
And I give you quotes from people that are in the know.
And you get to think what, what did that really?
What does that mean?
What happened?
But maybe even more importantly, could it happen again?
Could it happen again?
And I keep thinking about that.
And as I'm reading the book and I'm seeing the reaction.
And I'm just like, it was sort of, there was an element of PTSD.
At some level I have to be on it.
But that's just an indication of vivid you are as a writer.
And just, again, I wish you weren't so damn good because it really did give me some sleep as nice.
And it'll give you, it's the best type of thing.
I joked on Twitter recently, you know, like, I have to write a book, bedtime war,
because I need some kind of antidote to how just extraordinary you are at telling facts and speculation.
But you're very careful in both books.
You say, this is not the scenario.
This is not guaranteed.
This is avoidable.
But I thought back to January 15th of 2020.
I was at a Shabbat dinner with a bunch of, you know, my friends.
And I was talking.
And one of my friends is, you know, he said,
He's a businessman. He travels around the world. And I said, you know, have you ever been to China? Because I just got invited to view this astronomical telescope in China to maybe be one of their external advisors. And he's like, where? And I was like, oh, it's actually in Tibet. No, I'm sorry. I said it's China, but I meant to bet. And it's at 50,000, you know, it's at 15,000 feet in Tibet. And this is a big honor for me. And I never into China. You know, I've been to other parts of the planet, like you said. But he's like, well, when do they want you to go? And I said, March, April of 2020. He said, I think you better hold.
off a little bit because, you know, have you heard of COVID? I'm like, no. You know, like,
it's coronavirus. And I'm like, I've heard a coronavirus. Who cares? The common colds of coronavirus.
And he said, well, just hold off, you know, do me a favor. I've been to China. It'll still be there.
It's been there, you know, 5,900 years. It'll be there a little bit longer. How did he know?
Like, that kept coming back to me throughout the year. Like, we spent trillions of dollars,
all the three-letter agencies there. I mean, you interview, like you said, their references.
This book has more references than my PhD thesis. I mean, it's so,
thoroughly researched.
That's a very serious compliment.
It's true.
I mean, everything you define like I forgot to do, gain a function.
What does it mean?
Here's the actual first reference to it.
I mean, I read, and I wish that you, I would listen to the index read by you, but unfortunately,
you wisely decided to skip it.
But at a certain point, I kept thinking, you know, if, and they still don't know it in
2026 when this book takes place, right?
They don't know with their trillions of dollars, their satellites that can see a plume of,
you know, a puff of a cigarette over a yuck,
or whatever, they don't know what my friend knew.
Like, two months before it really hit here,
it was shut down in March, March 13th, 2020,
he gave me two months notice.
And I actually did start preparing.
I sold some stocks.
I actually had a huge supply of masks, right?
Not in like full chemical suits.
But we ended up, you know, having this good discussion.
And then I felt like with trillions of dollars
in the three-letter agency sprinkled on it,
they knew nothing.
They didn't help us at all.
In fact, there was a lot of disinformation.
You talk about fulmite.
imagine like the ludicrous idea that you're going to wipe down a package from Amazon
that's going to prevent you from getting COVID.
It was insane, yet we did it.
How come with all this apparatus, we knew nothing more than my yenta friends at a Shabbat dinner?
I mean, for starters, COVID showed us two very specific and frightening things.
One, which is precisely what you just say, which is that all of the billions of dollars on biodefense,
we were completely unprepared.
and two, as a result of the misinformation
and just use any synonym for that word.
Six foot distance, sit down in a restaurant, but don't stand up.
The fracturing of public opinion just became intense,
and it has only gotten worse enough.
Another thing I would hope about people reading the book
is they would go, whoa, why am I wasting my time?
I mean, obviously some people's careers were ruined and that's a day,
but just your average Joe or Jane is like,
you know, I have this big opinion about, okay, enough of that, why don't you just like really start to learn about actually what we're up against?
Yes.
Because that's really valuable for yourself and for your family.
To your point about, like, the January 20th date and what did we know?
You know, I learned how uncertain biology is.
And this is, I interviewed, like, I use the plague pathogen, spoiler alert, you know, pneumonic plague.
I mean, it is a killer.
COVID had a 1% death rate.
1%. This is 20.
1 out of 100 people died.
Pneumonic plague, pneumonia as in the lungs, not bubonic plague, which is in the lymph
system.
Pneumonic plague, you get it and you don't get antibiotics into your body inside of 24 hours.
You're dead with 100% case fatality rate certainty.
Okay.
That is shocking.
One of the people I interviewed at length in this is a former USAMRid bacteriologist, Dr.
Henry Hine, brilliant person, spent his entire life working with Yersinia Pestas.
And, you know, he explained to me that anyone who tells you they understand the human
immune system, how a lot of this works, is lying to you.
And so I loved the, here you have this brilliant person who knows so much about something,
and he's the first person to admit that he can't possibly know everything.
And we got so much wrong information right out of the gate.
May I give you one specific example, which is, okay, so I reprint in the book a tweet sent out by the WHO, the World Health Organization, sort of the world's sort of, you know, people look to it as like they must know. They know what's going on. They don't use the word they must know what's going on, although now they might. Because at the end of March, Trump had already closed the borders.
end of March, they tweeted out, COVID is not airborne,
and they put not in big letters.
This was retweeted by the CDC.
This was also the CDC's position.
COVID was airborne.
How on earth could they have made that mistake months into the pandemic,
and why, more importantly,
why have they never admitted that?
and said, we are deeply sorry, here's why.
That's what I wanna know,
because I want them to say,
we can't know everything, we don't know everything,
we didn't know it was airborne.
We had a lot of scientists who didn't want it to be airborne.
That's right.
We had a lot of scientists who wanted it
to be fomite transmissible.
And for those who don't know what a fomite is,
that means if the bacteria is on a surface,
I can get it by touching it.
As it turns out, that one in 10,000 cases of COVID
comes from FOMites.
Yeah, it was a performative theater
that made you feel good about it.
But a lot of human psychology depends
on the theatrics being there for a reason.
Why do you turn off your phone on an airplane?
Is it, I'm a pilot?
It does nothing.
It does absolutely nothing.
But it's a form of control.
If we get you to do that,
we can get you to do another thing.
Why did W.H.O,
because they certainly haven't answered my question,
despite repeated requests.
Why didn't they say,
listen, we don't know if it's airborne?
We want to think it's not.
Why didn't they say that?
Remember, there were things like protesting,
you know, it was also the George Floyd, you know, situation two months after COVID really broke here. And they said things like, you know, it's protesting Black Lives Matter. These are public health issues that supersede. Remember in L.A., there was huge riots. And the local health coordination said that those were sanctioned. They didn't say that you should not gather for those. They later would say things like, yeah, you can't have more than five people at your July 4th barbecue. But in the beginning times, I think that ignorance, but also perhaps motivation,
thrives in low information environments,
that they really wanted to have, you know,
some sense that somebody was in control.
Everyone wanted to feel it.
But I think the mark of a good scientist is to say you don't know.
And I think there were a lot of good scientists.
Uncertainty, uncertainty.
My friend Jay Baudicharya, director, Dr. Jay Baudet,
no, double PhD.
The Ph.D., Stanford University, now the director of the NIH.
He did just a simple study.
Like, you know, we should, you know,
if there is a vaccine, we can't get herd immunity.
Like, you know, it's just going to,
I'm sorry, herd immunity is the only approach
for early stage mitigation and trying to avoid it by quarantining
is actually doing counter is counterproductive.
He was investigated by Stanford.
He had funding taken away.
Fauci and Collins made a public declaration
that he needed to be taken down publicly.
There's a FOIA request for that information was revealed.
He was called a fringe epidemiologist by Collins.
Which is horrible.
But he was asking, he was saying, look, this thing,
and when the vaccines came out,
I interviewed a very famous person.
I'm not going to say who it is
because I've lost a lot of respect for this person.
This person was a very, very stringent, you know, strong opponent of Donald Trump.
Hates Donald Trump is very active.
One of the leading scientists online hates Donald Trump.
And he, when the warp speed was successful, he was one of the many people, along with
former Vice President Kamala Harris, I wouldn't take a vaccine and I don't think he should
take a vaccine, which meant because he would later say everyone needs vaccines, boosters, everything
else, and she would say the same thing, too, that they're partially responsible for some
people dying. They thought they were doing so much good opposing Donald Trump. Now, on the other
side, my friends, you know, are right-wingers will say, oh, the COVID vaccine, you know, you're just
control. Like, there'll be people in this interview. I predict. So how many boosters did this guy,
looks like he had boosters? Or, you know, did she, how many did she get? You didn't say whatever
you want. You've all had vaccines out there. There's not a single one of you listening.
It hasn't had a vaccine. So you're in the club, too, buddy. Even if RFK has had vaccines,
right? So, but the point is, it was developed by Trump. So, wait, so you're, now you're this
pro-Trump or anything. You think,
you're MAGA and everything, but you also are now rejecting the, one of the greatest, you know,
contributions to science. Like I said, Catalan Carica, greatest contributions in record time, right?
So both sides are to blame. The scientists on both sides, there are, there are politicians on both
sides. I think it was awful, and I don't think anything's changed. I think things have gotten worse.
I believe they have gotten worse, but I think that the uncertainty component of it can, can and should
really be leaned into, and you almost have to put on earmuffs against, like, your political
opponents if you are in a position of leadership and work with a gifted team from both sides of
the aisle to decide how to convey uncertainty with a certain degree of authority. It sounds like an
oxymoron, but it's not. If you say, you would do this with your kids, I was like, guys,
I don't know. And then they're like, at least mom's like got some authority about what she doesn't
know. Right. Because that is the truth. And, you know, information is king. Just to learn that
COVID was a novel virus. What does that mean? Just like it sounds, new.
Okay, mother nature mutates. And so, yes, a novel virus can come out of mother nature.
A novel virus can also come out of a laugh. And then you begin to realize, well, if something is new, not only is there no immunity against it, not only is there no existing medical countermeasure, but it's going to take some serious, you know, get your hands dirty work.
to figure out a medical countermeasure.
That kind of basic science, as far as I recall,
was not even really conveyed ever.
It took me writing and researching this book
to understand what we didn't know,
what people were never explained.
The next part is the detail
I couldn't stop thinking about.
It literally gave me nightmares.
It wasn't invented.
It comes from what the Soviets were actually working on.
The thing that was so fascinating
and that you did,
and again, it's a spoiler, but that's okay,
is that the virus by itself, you know, has lethality and has transmissibility.
But it didn't have the social engineering aspect of it until you brought it to mind.
Your novelty in the Jacobson, you know, variant of this year, St.ia pestis, was to add in a social enhancement called euphoria.
What made you come up with that?
And what is the key enabling vector that that element provides?
I found a fascinating.
So a terrifying, as usual.
Even more terrifying.
That's not from my imagination.
That's from history.
So here, okay, so for listeners and viewers,
in the scenario, you learn very quickly that, you know,
whereas pneumonic plague,
Mother Nature's pneumonic plague infects you,
and you're just like your lungs are shedding necrotic debris.
I mean, you are dying, you know,
you're coughing up blood.
Your head feels like there's an axe in it.
And so you are like,
on the floor or in bed.
And instead, in the scenario, people are experiencing euphoria.
And so instead of being home under the covers, not infecting people, you're out disco dancing.
In a rave.
In a very crowded place.
And you're essentially in the middle of a super spreader event.
Now, that is not from my imagination.
That is from Dr. Henry Hine sharing with me that when he was at Usamaret, that is the U.S. Army's medical research place for Dietrich, which is where biological weapons were, you know, worked on when they were still illegal and now countermeasures are worked on.
And Hine, one of the world's leading experts in Plague, told me that they learned that the Soviet bio-weapons engineers were doing precisely that.
So that is his reference, and it's noted in the book, which is just, and he said, we realize that was some pretty evil stuff.
Yes.
And that's why I chose that, because you literally can't, that's straight up, dark-hearted evil.
Yeah, it's mal-evolution. You're going against evolution, which would make it very, if something's very transmissible and very lethal, it doesn't spread, right?
Yeah.
The only way to death is to override it, which makes it like anti-Darwinian.
I mean, this is the most evil.
And the people that are working on it are medical,
our physicians, the Hippocratic Oath, you're talking about this.
And I just feel like knowing other scientists and knowing,
you know, people have this oftentimes.
And I think even you to push back with a little love and respect,
this kind of image of some scientists maybe as being just, you know,
just above everything, just so curious.
They don't have, I always say, look, scientists are like children.
They're curious.
They're imaginative.
They're creative.
But they also don't like playing with others.
They don't want to share their ball.
They're jealous.
They're petty.
They're spiteful.
They'll do anything.
And so there's both sides.
So I wouldn't say that I'd put it past anybody.
But in the realm of, you know, the pie weapon.
And the thing that makes you're writing terrifying in these two books.
And I should say, not all your books are terrifying.
These two are particularly gripping because they're a cut from cutting edge, you know,
scientific back research and first person accounts and, you know, archival research.
You're just like, you know, such a pro at what you do.
What makes both these two books in general terrifying to me is that there's only one thing I always joke with my kids.
There's only one thing that's literally free, right? Water costs money. But the only thing that's really free besides love, okay. All my kids love that. I give them love for free is air, right?
The only thing, we don't pay our air bill, right? I mean, you live in L.A., which is a lot smogier than San Diego. I used to live there. It's gotten better. But then the fires came, which make a roll of his book.
Yeah, sorry. And you talk about the fires in this book. And just, again, another public policy that's a,
scientific that could have been avoided, that's public policy disaster. But you're not political.
I want to make that very clear. But error, air is something we get for free. And it's both the
mechanism and the medium by which this disease is transmitted and the most of the fallout and the
death and destruction come from new. What is it about error? I mean, there's, you know, famous
from breath to air or when breath becomes air about, you know, someone who's dying
around lung disease, right? What is it about air? Why is it this vehicle, it's life-giving,
but it's also the thing that connects us.
And what's your take on it?
How do you react to that?
I love the way you framed that,
and it makes it sort of very sorrowful to think about that.
But in the realm of biological war,
air really means airborne.
And airborne is terrifying.
Because unlike Ebola, let's say,
which has a case fatality rate of between 60 or 90%,
depending on the variant, you know,
and you bleed out your eyes and you know, you bleed to death.
If you had Ebola and you were over on the other corner of that room,
I would not catch Ebola.
I would have to physically hold you.
That's why loved ones.
That's why first responders, doctors and nurses,
get a bowl and die of it.
It is contact.
Airborne is totally different.
If either of us had an airborne pathogen in our lungs that was a killer,
you know, it would linger after we were gone.
The CDC keep,
keeps a list called Tier 1 Select Agents.
And it's kind of shared with the Defense Department with FEMA.
And this is what they're most afraid of.
These are the pathogens that to their eye are most likely to be used.
This was kind of developed in the sort of post-9-11 world
to be used in a biological weapons attack,
which was to originate from terrorist organization.
And the Tier 1 select agents always, almost always,
involve something that is airborne.
I think one of the things
that I keep thinking about,
and obviously it's impossible
when you write books
to not think about
what you, you, Annie Jacobs,
and not me or one,
what's your next book is going to be?
And I kept thinking about this air,
you know, again.
And I thought, well,
what's another thing that's in the air,
either in the zeitgeist,
you know, the German air,
in the air, in the spirit,
a spirit air respiration, right?
So that's what that means.
But there's two things
that I think about
with regard to air.
One is,
physically in the air, and that's climate change. And the other one is AI. And I think, you know,
of those two, I guess which would be a next topic for an Annie Jacobson book, because they're both
airborne, they're both, you know, kind of in this, in this realm, non-physical realm, at least
that you can't see, which one would sort of terrifies you more as an existential threat? Which one could
plausibly be a next scenario? Global warming, global climate change, catastrophic, you know, engineered,
maybe malevolently or AI,
which could obviously be
the first non-human scenario
which ends human life.
Which of those two could,
maybe if you're working on one,
you don't have to give it away.
Again, I like the way you framed that
because it really speaks to the world
we are in now
and moving into the future, you know?
But many of the subject matter experts
I work with
work in these cross disciplines
because they're looking at
counter proliferation
of these threats. And so I have been given a number of ideas, whereas you pose that as a question.
It's been posed me more of like a suggestion, like here's what I think you should do. And so that's
interesting. But it's also encouraging because, you know, I write this two books now with these
just like horrific dystopian endings. And yet I'm a very optimistic person. And I do sleep at night.
And that is because the point of the books is not panic.
The point is pressure.
Yes.
The point is to sort of within your own self, your own family, within your community,
to kind of demand more than what we have.
We can get into the real spoiler alert, which is Act 3 of the book,
which is really what happens, which is really what the Defense Department,
which is what all of the planners are afraid of happening in a case like this,
which is anarchy and insurrection.
I don't want to do that, but I'm going to do that.
But first, I want to touch upon what you just said,
because it's really a beautiful passage.
So parallel structure between the two books is,
you talk about nuclear winter,
which Carl Sagan popularized and many other very highly qualified scientists
have written about it, including folks here and elsewhere,
but also the controversy around it that's not universally accepted.
You talk about that at the end of nuclear war.
But in this book, there's a parallel biological twilight.
So there's nuclear winter and biological twilight.
You talk about Act 4 now, I guess this is long after.
That's called the day new mom.
The day new mom, that's right.
You literature major.
No, you weren't a literature.
Okay, you say this beautifully.
Humans are a paradox, brilliantly endowed with the capacity to imagine and create,
often also incapable of restraint.
If biological war scenario like this one comes true,
it will mean that the same mind that mapped the cosmos,
which really struck me,
that landed machines on planets
in the moon, and charted galaxies, again, every single dot there almost that doesn't have a
six-pointed star is a galaxy in the distance. That's from the James Webb Space Telescope.
And charted galaxies, billions of years away, could not safeguard its own biosphere. What do you make
of that? These, these, you know, chim primates that can do such incredible things as do this,
and do all the things that get destroyed at the end of nuclear war, which brings tears to my eyes
when I think about it, just the record of mankind,
maybe what's responsible for the erasure of mankind.
How do you balance this tension between, you know,
the beast and the angel that we all have within us?
So here's where the literature major in me comes, you know,
comes to bear because I think about this idea of evolution
when you're talking about the chimps
and that, you know, we've spoke of Kubrick's 2001 before,
and that idea that we have evolved into this incredible, you know,
species that can do all of those scientific maneuvers that you just mentioned and a zillion
more and how what a remarkable time to be alive and then i think of the spoiler alert the
the third act which i learned that the government has a plan in place okay so hold the thought the word
evolution this is the literary major reference you know then you find out if you're annie jacobson
and your research, wait a minute.
The government has a plan in place.
If this all happens,
then anarchy and insurrection takes over for itself.
They have a plan in place for itself.
And it's not all of government.
It's a tiny group of people.
And the plan is called devolution.
So it's like putting a D in front of evolution.
And it's exactly like it sounds.
I mean, it actually derives from like a British term.
of like a secondary group of people that, dot, dot, dot, dot.
But it really is the devolving of evolution.
It's going in the other direction.
And so that is our fatal flaw,
hopefully not fatal flaw,
but that is certainly something that must be looked at
in the world in which we exist
where technology is outpacing law and justice and democracy and all of it.
It must be looked at in a new, through a new lens.
That's fascinating because just hearing you say that,
And I'm remembering in the book that that's what it was called.
But, and also thinking about nuclear war,
where you talk about the study that you read about apes and how they do battles
and what's the origin of warfare in general.
But also it seemed to me like a normal Darwin studied, you know,
finches and they don't go back, you know, they don't like lose, you know,
their, you don't lose your thumb, right?
Well, we did lose our tail.
You don't grow it, hopefully.
That's right.
Yeah, unless you're salamander or something.
But we must be.
yeah, this only species so capable of doing such great things as creating, you know, life and meaning and culture and music and arts.
And again, all the things that get destroyed and nuclear work.
But maybe come back at the very end, tens of thousands of millennia later.
Literature major in me, by the other, I really think your fatal flaws is hubris.
How so?
Because it always is.
It always is.
Look at anybody without mentioning any names that you admire, that suddenly you don't, you no longer admire them, right?
And again, I really believe that the personal is the political.
Like, if you look in your own personal life, you can pretty much figure out anything in politics, how it works, which is why I don't write about politics, and why I don't write about my personal life.
But you can see, like, you see somebody that you really admired and you're like, God, their downfall or their shift.
And it's like, if you really look at it objectively without having to publicly announce that, you can pretty much track it as hubris.
That came across vividly in this book when I thought of Fritz Haber.
who was a German, of course.
German Jew, very nationalistic, very patriotic.
He invented nitrogen fixation that you and I benefited from a couple hours ago and we got coffee and a croissant, right?
Fertilizer.
We wouldn't exist.
We couldn't support 8 billion people without his invention.
And yet, what else did he do?
He not only invented chemical weapons.
He witnessed them personally at his own desire as part of the German science corps.
He would go to the trenches and World War and World War and he would witness the horrific, I mean, biological war.
Yeah, it'll happen over a couple.
is awful, right? I mean, but people in the book live a couple days, some of them, right? Not a great
way to live or to die rather, but these people, horrific chemical burns and their faces ripped off,
like kind of a hybrid between nuclear and biological war. Maybe that's your next book,
Chemical War. In this case, he lived to see so much tragedy from what he saved, you know,
millions and he killed, or he killed millions and he saved billions. So how do he reconcile that?
And again, the scientist is this, you know, all charitable, all, you know, giving, knowing, and
curious, it's just not true. I mean, we have
our pettiness, we have our desire.
I mean, like I said, he won the Nobel Prize
after World War I. I mean, they knew what
he did. And they still said, and then his
own family was murdered by Zyclan gas
produced in the very same chemical
processes and factories that he helped
build for Germany. So.
The hubris in that, I must add,
is that the man
he was trying to please was Adolf Hitler.
Yes, exactly. Who murdered his family?
His family. And he was exiled
to where was it, Austria? And his
He died a miserable death.
His wife committed suicide, one of his kids committed suicide.
No.
What a fascinating cautionary tale.
Yeah.
And to think about this goal, like Prometheus, you know, desiring the technology, wanting
to, I call it like the Tower of Babel, you know, like we want to be.
And maybe AI is that thing.
Maybe AI is, you know, some to say humanity's last invention.
I have my doubts.
We'll talk about that over lunch maybe later.
Well, just to jump in there, I mean, and this comment I'm going to make has been rapidly
increasing in the past three months,
like not six months, not three months,
that presidential advisors on bio
who also have kind of, you know, look at AI,
look at LLMs, are increasingly,
rapidly, increasingly, getting concerned
that bio is actually the threat in AI.
Claude, which is made by Anthropic,
they have a new product.
It just came out.
It's called Claude Science.
This is great, Nyeong.
going to be able to discover the mysteries of the universe and find out exactly what's going on with
those aliens over there. It has genomics. It has its database. Has NAAH. It has all these papers, PubMed,
blah, blah, blah, blah. Nothing. Not one topic had anything to do with anything other than bio or
biochemistry or genomics. All these things are centered around bio. Bio is not the only science.
I hate to break it to my biology colleagues and my friend Gentry Patrick, past guest,
my cousin. There's other things besides bio, but this is all the AI is really, when they, if you ask,
Dario Modi or Sam Altman, you know, what does the scientists need?
Oh, they need it like a genomic protein fold.
No, they don't.
We need stuff for physics.
Physics is the core of all science in many ways.
And I think just as you said this, yeah, it's no surprise because these tools are somehow,
they're, first of all, they're neural networks, right?
They're optimized.
They're modeled on the brain.
I got a brain over here somewhere.
And they're modeled on human, they're modeled on biological systems.
So, yeah, they're very good.
Like, you've heard about quantum computing.
Quantum computers have one killer application.
And that's predicting how quantum computers will work.
You know, they're very good at understanding quantum systems.
Neural networks are really good at understanding brains.
The people that get jobs nowadays that are writing the best books about AI,
they're not computer scientists.
They're cognitive scientist.
Princeton, a professor I just talked to, Tom Griffiths.
Amazing.
He's a cognitive science professor and a computer science.
Yeah, you're absolutely right.
They should be worrying about it because these tools are now like a 12-year-old, you know,
or whatever.
It's a 50-year-old in some place on the map here.
can have the cutting-edge noble quality research delivering and maybe optimizing things for,
and that's maybe where the greater threat could come, both on the, you know, personalization of,
you know, the kind of vector that's so precise that can target individuals or that is so indiscriminate
that can kill nations. It's a really gripping, you know, thought to think about. I want to get to
some of the research that you do because there's some, there's just so many, like Easter, for nerds like me,
I mean, for my audience as well, you talk also about like philidomide in a book.
and how, you know, who's designed the anti-naugia medicine?
I remember, like, my mom was, like, debating whether she should take it.
She told me she didn't take it.
You know, in the late 60s with my older brother, she didn't take it, so he's hard.
But it was to solve something really important for mothers.
You know, I don't understand how it feels to be.
Have morning sickness.
You know, I've never not wanted to eat in the morning.
But my wife went through it.
But talk about that.
These things that, like, they do evolve.
They do pathologize from some, you know, maybe they're actually really good.
It was very good.
antinadamash the medicine.
Fortunately, it caused horrible birth defects.
And it's related to something called mirror life
that is really terrified.
If you're not terrified already,
you'll get there in a few minutes
when we talk about mirror.
Talk about thalidomide
and how that came from these Nazi scientists,
basically, and then percolated through,
and then the Russians really kind of abandoned it,
didn't use it.
Talk about what role that played
or what that is emblematic of in this book
and science in general.
I think it's emblematic of,
you know, you called it,
what did you call it?
You had a term earlier,
which was mal-science.
It's like malevolent.
Having written the book on Operation Paperclip,
the Nazi doctors, in addition to just being horribly evil,
and their goal was to really push science
and in the field of biology,
what they were doing is trying to find medical cures for things.
For their own pilots, and for example,
the thalidomide link has to do with the fact
that a lot of the chemists that were developing,
chemical weapons and biological weapons. They wanted to know, they were trying to find antidotes,
right? And they were, what I learned from going to the Bundes Archives in Germany and the
National Archives and the real tragedy is that we, the Americans, knew a lot of this and
declassified these papers, which I was able to get declassified. The Nazi scientists were experimenting
in the concentration camps on the Jewish prisoners because they considered them no different
than guinea pigs or rabbits.
And they would, you can't really find the antidote properly
without testing on a human.
You just have to spend so much time testing on an actual guinea pig.
Then you move to primates.
And you're doing human testing once all these trials.
You can't just like kind of cowboy your research.
And that's what I found so horrified.
And that's the sort of thalidomide component of it
is that the German, you know,
pharmaceutical company had hired a bunch of Nazi scientists who had skipped through a lot of the
trials because they were experimented as humans.
Right. There's a passage in the acknowledgments of Annie's book that isn't in the story
itself. I asked her to let me read it out loud, and she graciously agreed.
This is so horrible to think about, but again, I cannot not mention it. I mean, it's fair game.
It's in your book. And I just, you know, I don't want to look at it, but it's like a car accident.
You must confront it. Because if we don't confront it, like you said, we can still do something
about nuclear war, about biological war, about bedtime war, whatever. We can still, we have
the agency. And I think people surrender their agency to influencers. We'll talk about the pernicious
elements of social media later, perhaps. But I want to read this passage about so-called mirror
life, which is in the acknowledgments. Beyond the surveillance-driven biotechnical
future lies in even greater horror. I mean, that's saying something for a book that's about
one of the most horrific, you know, hopefully fictional for all time, but very hard science-fact
driven scenarios that you could ever imagine.
Beyond that lies an even greater horror.
I learned that there exists a hypothetical concept
within syndetic biology called mirror life.
Hmm, that sounds fun.
You know, not a mirror.
I'll look at myself.
No, no, that could extinguish the entire human race.
This is an area of science we should forbid,
says Stanford University professor
and White House Science Advisor, David Relman.
Mirror life means engineering an organism
with a reversed form of biology.
A mirror molecule.
This is called the chimeric,
chirol biology, DNA has right-handedness, and this would be making an identical copy, but with left-handed DNA.
A synthetic organism that, if created, the human immune system will almost certainly not recognize and could not be controlled, contained, or stopped.
People at the highest level say, holy bleep, this sounds really hard, but we can't allow this to happen, and Roman tells us, and yet, when it comes to making sure no one ever creates mirror life, he says the responsibility gets deflected back to the scientists.
As of now, there are very few legal constraints.
We have a sort of form of mirror life, at least mirror chemistry.
So these are called isomers.
These are different forms of chemicals that, as I said, have a different hand in it.
So actually, one of them is you've probably had in your eye, I've eaten a lot of it.
It's basically synthetic sugar, which has, instead of right-handed structure for sugar, sugars will also be right-handed or left-hand.
They make left-hand, and the body doesn't digest it, so it excretes it.
That's saccharine?
It's an interesting.
The blue packets.
Yes, the blue packets, exactly.
So that is basically left-handed sugar.
So you can't digest it.
So your body excretes it.
It's not deadly, but left-handed or mirror life.
So you take a DNA molecule, put in a mirror, it becomes mirror life.
And this is almost certainly happening.
So how do we sleep?
I mean, do you accept the fact that somewhere someone is working on this,
perhaps aided with the aid of AI?
Is it in the lab now?
I think it's almost certainly, yeah.
That is from an interview with David Relman,
who is like one of the most respected science advisors to the president,
to many presidents.
And he did that interview with me on the record.
I chose not to put it in the narrative
because it's just too horrific.
But the point was I wrote Biological War A scenario,
not biological war the only scenario
or biological war the worst scenario.
And so if you read this and you're freaked out
and then you find out, wait a minute,
there's even worse scenarios.
And that was Rehman's point in telling me.
And there have been articles in the newspapers
about mirror life.
And the scientists that wrote those papers debated
even making it public.
But they decided they certainly needed
to make it public for your exact point.
The bad guys are certainly doing that,
some bad guy.
Whether it's, you know,
and there's an incredibly low bar
for entry with bio.
Unlike nuclear weapons,
which require fissile material.
You have to have, you know,
weapons grade uranium or plutonium,
and we hear all about that
with what's happening in Iran.
We know how difficult that is.
And so nuclear weapons
are controlled.
by a nation's command and control.
It's safeguards.
It's systems.
And nothing like that exists in bio.
And, you know, essentially a kid in a basement could potentially, with the help of a computational
system, an AI system like Claude, like OpenAI, could essentially make this kind of
bio weapon.
And that's the fundamental danger.
And I think Rehleman's point is very important is that what he was saying to me is he's
going to the White House and, you know, elsewhere and kind of raising the alarm and being told,
yeah, that's really alarming. So what are you guys doing about it? And hey, that's better than
not raising the alarm, but that alarm needs to be ratcheted up in terms of what is being done
about that. And obviously, I don't have the answer. I'm a journalist. But I would hope that
bringing that to the conversation is moving things in the evolutionary direction as opposed to the
evolutionary.
One thing that just struck me as you said that is that, so Iran's trying to get to where the U.S. was in 19, you know, actually today is the July 16th is the Trinity Test.
So happy Trinity Day to you, Annie.
I was re-listening to nuclear war the other day and I realized, oh, she's going to be here on Trinity Day.
How wonderful.
So that's July 16th, 1945.
So at that time, what Iran's trying to do now is get back 80, whatever years, 81 years, back to that time scale.
So good luck, you know, but actually, as you talk about in this book, is not a fission bomb.
It's not like fat boy, right?
It's the thermonuclear bombs, the atom bombs, hydrogen bombs, that caused the end of the world in nuclear war, the end of civilization, at least as we know it.
The world will still exist probably, you know, still float around in space, but very, very, very, very,
much worse. But nowadays, the analog of the hydrogen bomb in biological war are these, you know,
are already here. They're already here. That's more. That is the, you know, recombinant DNA is
essentially the atomic weapon. That's right. Because it was very rudimentary in 1971.
And you think, and that is the point with the people I interviewed who are the former
handlers of the Soviet defector biological weapons makers who in the 80s and 90s were saying,
here's what we were working on.
Here's what our plague super weapon looked like.
And this is 40 years ago.
And so you have to say,
whoa, what is being done now?
And that's, I think,
Roman's point with mirror layer.
And that's obviously but one example.
Of course.
Now, in the case of nuclear technology,
we get a great deal of benefit
from nuclear technology,
whether it's in the medical realm,
whether it's in the power.
We have six nuclear reactors
surrounding us in San Diego.
You know,
don't you feel great?
You know, thankfully, as I said, as you're driving down from L.A., I said, you know, you're going to pass by the two nuclear reactors at Camp Pendleton.
But luckily, you didn't put them in nuclear wars to give me even greater nightmares.
You put it somewhere in Santa Barbara.
That was taken out first or second.
But in this case, we mean, benefits from it.
Are there any benefits from the types of technology that feature in this book?
Well, that is certainly the debate that we spoke of in the beginning, right?
Which is really, I don't think, you know, is gain of function good or bad?
It's like gain of function, and again, this is for people way above my pay rate, there needs to be guardrails on terms of what kind of manipulation of pathogens can be done, should be done, is being done.
And I think that all begins with a motion to really examine what it means that biological warfare is illegal, that biological weapons are illegal.
And yet the State Department is writing now in all of its annual reports about compliance with the BWC is saying, we know Russia and North Korea have biological weapons programs.
And we know that Iran and China have weapons or rather have biology programs of consumers.
which is kind of a euphemism, I think it's pretty much clear that the State Department believes those four nations are actively working on biological weapons. So if there wasn't so much stigma around what research is being done, if you didn't have this idea of people cheating and doing sort of offensive, work, offensive biological work, work on offensive weapons, as opposed to defensive work, because there's a little clause in the treaty which says you can do work for prophylactic purposes.
which allows for the medical countermeasure.
So there has to be some more transparency
about what that actually means
and more honesty about what it means.
And then you can begin with,
okay, so where do we go from there?
I thought of one thing as I was reading the book
that you could use the types of laboratories or research,
and that's from an unlikely nexus
between your previous books and this one,
which has to do with a question
first posed by Enrico Fermi,
which is essentially where are all the aliens, right?
The universe is big, the galaxy is big, the galaxy is old.
The materials that make life are abundant.
Water is the second, third, most common molecule in the universe.
You know, carbon's extremely prolific.
And a lot of that research was done here by my colleague,
great colleagues with Jeff and Margaret Burbage and Willie Fowler.
And Fred Hoyle coined the term the Big Bang
is an insult about cosmology at the time.
And Fermi asked this question to Herb York
was at the lunch with him in 1950.
And it was interesting.
So when Fermi asked that question of Herb York
and there were three other scientists at the table,
so they talked about flying sausage
in this New Yorker cartoon.
And basically Fermi says,
where is everybody?
And York says maybe they didn't last long enough.
Maybe they killed themselves.
I did not know that.
I thought of that.
I'm not going to ask obviously which of these solutions
that we're going to afford.
But before I do, I want to give you two gifts.
So one of the ways I think that we could benefit
from the apparatus, the tools,
the researchers, the talent, the brain power that we have in this book is countermeasures,
but not countermeasures against humanity.
Because if life in the universe can be of one of the two mirror isomers,
they either left-handed or right-handed like our life is based upon,
then it could be that life could come to the planet,
and they could be very different from us.
In fact, they could be mirror life.
They could be microbes, they could be bipedal, they could be sentient,
plasmaids, like apparently Alina Luna's been talking about interdimensional being.
Anyway, we'll talk about that over a cocktail someday.
But one way that material can get here is via what's called panspermia, which is something
that Fred Hoyle worked on, and actually Francis Crick worked on, this idea that life on Earth
could have originated elsewhere in the galaxy and then been brought here by meteorites.
So this is a meteorite.
It's one of many.
I love that idea, by the way.
So it is.
It is also one of those words that sounds dirty, but it's not a panspermia.
Yeah.
But here-
Sharf, I think, is doing the work today.
Yes, Caleb is, he's been a guest on the podcast.
So here I have a meteorite, which doesn't have any mirror life on it
because I've been, you know, playing with it for years and I haven't died yet.
This is a real meteorite.
This came from a star that detonated nuclear implosion,
a nuclear fusion device in space.
And its contents then spread throughout our galaxy.
And eventually coagulated into make you and I in the core of the Earth.
So it's very magnetic.
And it actually joins up with this monolone.
on the back of you know that I, you know, claimed to have lost the Nobel Prize as a matter of debate.
But this is the Keating Prize.
So this is to you, Annie Jacobson, July 16th, Trinity Day.
That is incredible.
And that's Arthur C. Clark on the front.
And I get the meteorite.
And you get the meteorite.
And you get a little bit more about the meteorite.
Yeah.
So actually, you will get a card that has information on it.
I give those away to anyone with a dot edu email address in the U.S.
That joins my mailing list.
This is going to be a special link just for Annie.
We're giving away six copies of her book, signed copies,
Biological War and Nuclear War,
and you go to Brian Keating.com slash Annie,
and you'll be entered to win one of these incredible gifts.
You'll get a meteorite.
You'll get a book, potentially,
and you'll also get, well, you won't get this.
But you're going to get this.
This is a piece of the moon, okay?
So this proves to you, Annie, the material.
So a meteor hit the moon, blasted off material,
and it landed in Northwest Africa 20 million years later,
and it was collected about eight years.
ago. And I bought it from a collector that I know. I've got a dealer.
This is a moon rock. That's a moon rock. That's a meteorite. And this one is rocky. So this is non-magnetic. This is a thousand times more expensive than that. So don't lose this one. This is a thousand times more expensive than this. These are, yeah, if I can send them out to hundreds of people a month, they're not that expensive. But they're very interesting. This was found in Argentina and in Argentina in 1560 or something. It was discovered by the natives that lived in Argentina. It fell about 8,000 years ago. And has the exact composition.
not only of the Earth's core,
so it's showing that we evolve
from this pre-Earth environment,
but the iron in your blood
has the same composition
as the iron in this meteorite.
And so you've got the specs,
I'll show you the radiograph
that we took of it,
the chemical composition and everything.
That's a variation on we're all start us.
That's right, exactly.
Wow, that's amazing.
Thank you so much.
You're welcome.
I thank you.
I have to say,
that is a profoundly unique gift.
I like incredibly cool.
And I actually have a rock collection.
Oh, you do?
I do.
Oh, I didn't know that.
Yeah. I knew you were.
One of them is from the sedan crater.
Oh, really?
Yeah.
Where I went with Al O'Donnell from my area of a Duon book.
That's amazing.
So this is going right.
Okay.
And we could do, yeah.
We're welcome.
I'm so glad that you're here.
It's really amazing.
So maybe off the two different scenarios, and maybe there's many more in that enormously
talented brain of yours, but what do you think of this great filter that civilization's
like York is proposing, we don't live long enough.
And so maybe there's no one out there to come to either rescue us or save us.
or maybe to be concerned about bringing mirror life to destroy us.
That's probably why I love watching science fiction films
and reading science fiction books so much,
which, by the way, I have found out over the years
that many more high-ranking Defense Department
and public health officials and federal emergency management officials
also love reading science fiction,
which is where so many of the discoveries have come from.
And scientists, you know, to find out that the scientists,
this early skunk work guys who, you know, were developing these radical technologies were
for science fiction.
Charles Towns told me that the reason that he invented the laser, like, was because as a kid,
he was obsessed, he would lie in bed, he told me, with a flashlight reading the Garren Death
ray by a Soviet science fiction writer.
I mean, this must have been in the 20s.
Yeah, that's incredible.
You know, and he could see the death ray, and he could see the laser.
And that was his.
Yeah, and he told me one other energy, I have to share it.
Yeah, yeah, please.
He said that he brought, he was at Princeton at the Princeton Institute for Advanced Study.
And he'd been thinking about this as before the laser.
And he took the idea to his two neighbor, to his two colleague neighbors there.
Like, you know, one was von Neumann and the other was Einstein, right?
I said, well, what did they say?
And he said, they had very different reactions.
Von Neumann said, it'll never work.
And Einstein said, that's a good idea.
Keep trying.
And I said, well, what does that mean?
Because you had to know from Charlestown what it meant.
And he said, and I'm paraphrasing, it means that sometimes when you have a really great idea, not everyone wants you to win.
It is true.
And I say, you know, for every great idea, there's an equal and opposite great idea.
And I think that's a mark of a good scientist.
Yeah, the scientists will, you know, they typically will think that we are right and our colleagues are wrong,
but that lacks the so-called psychologist called theory of mind.
Like, I am thinking about what you're thinking about, like kind of a meta type of cognition.
But that means that, like, if we all think that, then nobody's wrong or everybody's wrong.
So we can't have it both way.
They can't think that we're always right and our colleagues are always wrong.
So you have to be open to this idea that, yeah, you might be completely wrong.
But you need the Hebrew.
I like to say you need these two different attributes.
You need Hutzpah and you need humility.
You have to have a tinge of hubris
and you also have to have a tinge of humility.
And how do you keep those in charge?
Or maybe not chubris,
you just have to have some good, healthy ego.
Exactly.
Drive.
So one part in the book you talk about
and the acknowledgments are, you know,
there's just, there's so,
I love acknowledgments because, you know,
99% of readers won't read it,
but 99% of authors put so much effort into it.
Like, the book is not done until the book is done
and the copy editors and they can all sign off on it.
And then you're like 80%
done, right? But you talk about a scientist, I'm going to mangle his name, even though I'm
part Russian. Milton Leidenberg gave you Igor Domareng-Ant typed pages, and he spent
Domarenges, spent his career inside the bioproparat in the Soviet Union on plague genetics
and antibiotic resistance. So one question I had is, is this your senior as it coming from him?
You must have had things in those pages that couldn't make it into the book. Like...
In Domarajki... Yeah. I mean, you had it, but like you had his personal handwritten note.
What did you keep out? Were there things in there that were just too terrifying maybe to conceive of or include?
That's a great question. And I hate to say this, but I wish there were. But it was actually, you know, I think what's interesting is, and before we were on, we were recording, you and I were talking about that book that you recommended Galileo's daughter. We're talking about Galileo writing letters to his daughter, who was a nun. I can't wait to read that because I would, I have a feeling that.
that there's more, you know, of course,
you have to think of who you're writing to.
So, of course, there's, you know,
there's certain things that are not in there,
but it would be maybe a little more revealing.
Whereas Igor Dormorzky had,
they were typed, his hand typed notes, right?
So the journalist reporter in me is like, okay,
there's one degree of like this when you're writing out in your journal,
like, you know, we all know that.
And then, like, you type it up.
So there's kind of, you've had a little time to edit yourself.
And then also he shared them with Milton Leidenberg, who's now in his 90s.
Every time I would interview him or want to come to his house, he'd say, I'm writing another book.
I can't meet with you.
I mean, we would do a quick phone interview.
You know, this guy has written more books than you can imagine.
He really is a giant.
In the 1960s, he was the world's expert on pretty much on biological weapons, right?
And he's been working at it ever since.
Right.
He's got a book on the Soviet Weapons Program, which is like this stick.
So to that point, I think there was a lot.
of editing that Domeradsky had done at that point. And also, he was writing that from inside
Russia after the wall went down. So he had to have an idea that the KGB was going to read it.
So he didn't really reveal state secrets. But you do see intention. And he was the top
plague expert in the Soviet Union for decades. And so there is a lot to learn from them.
Wow. Yeah. And the dog that didn't bark as often as interesting as the one that don't.
Khrushchev said, and you quote, you know, the survivors will envy the dead in nuclear war.
It seems like, you know, most of nuclear war will actually, there'll be almost no survivors,
and the ones that do will die soon after, as you talk about.
Biological war, you know, is different.
It does seem like, well, do you think, what do you think Khrushchev would say?
I mean, he undoubtedly knew about their programs.
What do you think he would say?
Is also the same thing when we envy the survivors, unfortunately?
We went through COVID, you know, originally it was thought to kill, you know, millions, hundreds of millions of people.
Thank God didn't.
But what will be the aftermath of a scenario?
Khrushchev would have had a different take on this because the world was very different and most Russians couldn't really leave Russia and had no interest in coming to the West or at least the Russians didn't want them to.
And, you know, biological war in the Cold War was very much simpler than it is now.
The basic idea was create a vaccine that you will then use for your troops and your payroll.
That's what Dolmuradzky was working on, okay?
So create a vaccine.
We make a plague vaccine for us.
By the way, there is no plague vaccine in the United States.
There is allegedly in Russia.
Make the plague vaccine, vaccinate all of us, and then, you know, kill all of their troops with plague.
And then we'll go in and take everything.
We'll leave the infrastructure intact, true quote.
Okay.
So that was where we were in the Cold War.
That's where science was.
Now things are so different.
You can't have a situation without having essentially blowback.
And so I don't know what Khrushchev would have thought,
but I know that many people that read nuclear war said,
I would just want to die in the flash,
and I probably would, so that's the good news.
Bios very, very, very different, very different.
You know, I take readers from outbreak to anarchy in six days.
And then when you learn that anarchy and insurrection just will happen, and this is in wargaming, you know, so fast as everybody scrambles to try and get what they think are going to be the medical countermeasures to save the lives of themselves and their family.
That is really horrific.
And there is a quote from former Senate Majority Leader Tom Dashel.
And this is personal to him because he was the subject of antherax attack right after 9-11.
So some nut, we still don't know who it was.
You know, the FBI had never solved the case,
sent an envelope of weaponized anthrax
to Dashel's office, to another congressman,
and to media outlets.
What he said to me,
because he's been working on this issue
for all the decades since,
was biological war will be death.
He's talking about the different kinds of death that will happen.
But then he ended what he said,
and it's quoted exactly in the book,
with people doing inhuman things
to one another.
just to survive.
And I don't think any of us want to be around for that.
In the book, there's a terror that's unleashed,
which is, you know, 100% controllable
and 100% unavoidable, which is the social plague
that sweeps over, as you said, anarchy.
But also, you know, desire, there are people in the book
that are just desperate, you know, to get Instagram, you know,
and be seen and be famous and making AI-generated images
and misinformation and disinformation, that adds to the terror, right?
I mean, Iran shut down the Internet completely for the last two and a half, three months.
In both books, you know, the president can do things to, you know, but there's, you know,
how much people underground that will, you know, things will get out.
So since this hopefully will never happen, what would be some of the, if you were a president,
if you were, you know, in the upper ashterlons of power and you had the connections to make
anything happen. I mean, what would you do in such a situation? I mean, this has happened throughout
history. I mean, as you make the point, we've had nuclear war and we've had biological war.
We've had attacks in both count. We've had chemical war. But this is the first time the confluence of
them would arrive with social media war and information war. So what would you do?
President Jacobson.
Well, never mind what I would do. In the scenario, spoiler alert, the president shuts down the internet.
And the reason I did that is because I learned from the former deputy commander of cyber command,
how that would work.
Lieutenant General Charlie Moore
took me through, again,
what can be known.
There's certain classified components of that.
And I think people will be surprised
to learn that that can be done
and how easily it can be done.
And also that the Defense Department
has its own channels,
Sipternet being one of them,
to be able to communicate
with that shut down.
The general takes us through
what would remain and what wouldn't,
but that's really fascinating
that you can just pull the plug.
But I think also readers
will take away the point
that the influencers are not to blame.
They're just a product of where we are right now.
And also on balance, the internet, that real-time reporting,
is a real place to see as a potential savior
because real-time reporting is precisely what you need.
If there's another takeaway of the book,
it's that, oh, my God, if there is a lab leak,
if it can be shut down, the situation,
the outbreak can be shut down.
in the first 12 to 24 hours,
you can actually prevent
the dystopian ending.
But once it's 24 hours, once it's 48 hours,
96 hours, it's out of the back.
And so the internet, that real-time reporting,
is how that could get information out to the people.
And you see from, you'll see from my reporting
that also like the WHO,
which was very loath to kind of move off
their old analog way of like,
we will have the reports,
come in and then we will look at them. You know, it's so old school. They now have systems where they
are really leaning into epidemic intelligence using computational systems, delivering information
in real time. And that is like a real place to look in terms of a positive future.
Interesting. That's really good to know on one hand and also, again, as usual, terrifying.
Supposedly, the South Pole where I've been, as I showed you, my, this was ice.
about 10 years ago from the South Pole, Antarctic Station.
There were no cases of COVID there,
supposedly in the Space Station also.
There were six people in the Space Station.
They never got COVID.
They actually go through a lot of screening at the South Pole
to make sure you have no diseases
because they're no doctor there most of the time.
The doctor that you need is not going to be.
Their dentist is not going to be there
to pull your tooth out in the middle of July is much worse.
Very isolated community.
Actually, the NSF has studies on, you know,
when they do open up the station on things like how depression spreads
and how little social viruses and then actual viruses spread.
But why wouldn't we put, you know, like the president have another nuclear football or something?
I mean, it's very hard to imagine how these things would get there.
But, but, I mean, what are the kind of, you know, fallback measures, safety measures to predict, you know, at least some mode of leadership.
We'll talk a bit about who that should be, maybe.
But, yeah, why don't we have, you know, data centers on data centers in space and presidential footballs and different places?
Is it really just the single point failure mode that's probably likely to be the undoing if this should ever, God forbid, happen?
Maybe there are two different questions, because I suspect that we do have a lot of fallbacks and fallbacks and fallbacks.
But, you know, the speed at which the convergence happens of something going out of control happens so fast.
And what are you falling back to?
I mean, what good is the nuclear football if?
Yeah.
I mean, there is a threat.
And, you know, I have different generals tell me those threats that are being looked at in the Pentagon.
When you have an outbreak like this and when the United States in the event, the United States was moving toward.
insurrection, how all nuclear forces go on, you know, alert because that would be the time
that another nation would strike. But we know from COVID that any pathogens, you know, spreads
how people travel. It's not in 1950 Cold War where there's no Russians leaving from Russia.
Right. So there would be an own goal of the worst and greatest variety. I want to close with a couple
of maybe more on the human side of things.
When I think about the people that are most vulnerable,
it's kind of ultra-melancholic
because the ones that give them,
the first responders are the ones that die fast, right?
And they die first.
And the ones that are selfless.
And we saw a lot of that in COVID, by the way.
And we saw that 9-11 firefighters rushing
into buildings that people were fleeing out of.
What do you make of that?
I mean, they're these special people.
I mean, you've interviewed so many of them.
And do they know?
And you also make the point that, you know,
women are more disproportionately likely to probably be the victim of this attack.
So what do you make of that?
Is that a flaw in our engineering?
Women would be the victims because the women are going to always take care of your kids.
Right.
You know, I mean, I quote contemporary literature from the 14th century bobonic play, black death.
You know, because you get to see survivors' accounts of how people behave and how they changed and how people became.
incredibly solipsistic. They just needed to live alone. But I believe that that's after the women and the
mothers die because, you know, a mother's going to, your child is sick. I mean, unless you're a sociopath,
you know, you're just like, your reaction is this. Yeah. That's your job. And also,
the first responders have a similar vein to them. That is people who go into that. I mean,
I've interviewed countless people who, you know, call, you know,
send me. There is that idea in law enforcement and first responders that they're just like,
I'm doing my job. They don't think about their own, I mean, did they think about their safety
because they are trained to be, they're very conscious of safety, but they don't think about their
own demise in the way that maybe the rest of us a little more selfish to. And so that is a great
tragedy. And there have been monographs written by the, by the army about that.
And the bottom line is they're the first to good.
Yeah, it's almost like you'd have to engineer, again,
something to de-evolve all the maternal or the first responder instinct
that, you know, certainly many people much more brave than I have,
but to overcome that, right?
You'd have to engineer something.
It would have to be something counter to our wiring.
You know, that's one of the beautiful things about us.
Like we can map the cosmos, like you said,
but we can also love and give mouth-to-mouth resuscitation
and that means it might be a...
our last act, right?
What's also interesting is the Defense Department,
and I still call it the Defense Department,
until they change it in the Constitution.
What do you call it the Gulf of Mexico?
Not the Constitution, but until they change it in, you know,
by an act of Congress.
The Defense Department of War.
The Defense Department is in a different lane.
Although, pardon the interruption,
but it would be great for your book, yeah.
Department of Nuclear War, Department of Biological War,
Annie Jacobson's Department of, sorry, go ahead.
But DOD, you know, looks at its soldiers,
at all of its personnel in their own lane.
And, you know, various generals and colonels and soldiers took me through this,
how not only do they have medical countermeasures,
whether or not they're going to work for a novel pathogen is a different story,
but, you know, in their cambiocits.
And this has been studied intensely by Defense Department
because there's been this idea that soldiers may encounter biological war
on the battlefield. And so there is a different sort of plan for the soldiers. There's also the idea
or the fact that the Defense Department has issued 1.7 million gas masks, which to the airborne
point of this is necessary to not get infected. And so in my mind, when I write biological twilight,
and this is the one area that is in Annie Jacobson's imagination, the Danumont, which is the biological
twilight. I suggest that the world is not going to be a very holistic place because you're going
to have a lot of soldiers. The military is, you know, there are only 17% women in the military.
So you got a lot of men with a lot of gas masks and a lot of guns. And then you have a lot of
people who are sociopaths, very Machiavellian, who could, who would be willing to kill someone
from a distance, not knowing whether they're infected or not. I mean, this is the science fiction
The dark try on Stairriard on Stairz.
And so that's where you really have to say, oh, my God, what kind of a world?
Talk about de-evolution.
No, that's not a world that's suitable for most people.
You made me think about, you know, you mentioned people in the book like mutual contact maybe that we have.
Peter Thiel, I met a couple times, and he's reportedly looking for places to, you know, bug out to in different places.
And but it made me think of, you know, his company Palantir and these other, are there, you know, for profit.
We've only been talking about like nation state actors, but are there for-profit actors, you know, is Open AI have a bio lab somewhere?
You know, are these people to pound? I don't know. Are there, you know, possibly not rogue countries, but rogue industries or rogue, you know, capitalist or whatever you want to, the term you want to use, that, you know, are also a threat in a way that doesn't exist for nuclear. I mean, to have a thermo fusion device is a pretty challenging thing for a company to just pour around with them.
But on the biow war side, is that also a...
another kind of gruesome element that we haven't touched upon.
I mean, I don't know about, like, nefarious actors who are non-nation states.
I don't know.
I would hope that there's someone in the Department of Defense that's looking that or, you know,
examining that, the FBI, but, you know, that would be their job.
But what I do know is I had an interesting conversation with Sam Altman,
because I wanted to see if I could make chat GPT do something
that wasn't in the vein of creating a bioweapon,
which I knew would be, you know, I'd be shut down, right?
I wanted to see if I could make it tell me some classified information.
And that's a spoiler alert I'm not going to reveal,
because I think it's interesting for readers to come upon it.
But what I will say is that...
But it's a found... I want to say it's not a fictional element,
it's actually, the what you bring up in the scenario is actual places.
And I wasn't going to include it in the narrative,
except for an interesting thing happened, which is I had someone that I know mentioned it to Sam
Altman.
And I had a conversation with Sam, and they said Sam wants to know what you were able to make
chat GBT do.
And I explained it to him.
And he asked me a few questions of how I knew.
And, you know, I explained it to him.
And it has since been changed in chat GPT.
So you can no longer do this.
And I explained to readers what it is.
Did you have to have your book reviewed by government agencies?
I'm a journalist.
So I don't have any clearances and no obligations.
But I do have an obligation to safety in my own sort of motherness.
Yeah, of course, right.
But what was interesting is that the point I thought was interesting in there is that OpenAI was very quick to make the change, which is great.
But not everybody's a journalist and not everybody has access to Sam Altman.
And not everybody gets to say, hey, did you know it could do this?
And not everybody makes that change really quickly.
And that is obviously a place of concern.
and I believe that that's what the leaders of these different, you know, of the CEOs of these big companies now know.
Again, being advised by people like David Relman saying, hey, because I'm not the only one at a conversation with David Relman about what I could do.
Those are the people that are able to do it on a much more scientific pathway.
And now it's like open weight models and Chinese models that are, you know, getting to be on parity with American law.
There's no control.
So, right?
Who is to say that what you, and again, we're not going to reveal what it is, but because I think it's.
hard to, it's also a gripping, you know, just a thriller, the story in addition to being, you know,
so heavily sourced and fact-based. But, yeah, there's no constraints. So my final fall on that,
which I think is an interesting thought for, it's a conversation that people should be having,
because you framed the question as if maybe someone had something nefarious in mind, which I have
no reason to believe that is the case. But what I do know, and what you know, is that all business
CEOs want their business to do better than the other guy's business. And so when I read in open
source literature, whether it's the Wall Street Journal, the New York Times or wherever, about these
sort of battles of the tech bros, you know, and I have my own access to individuals and have
different conversations, I wonder where the line is between competition. In other words, I have
heard discussions about maybe this all needs to be shut down. What this all is, I could not define,
but I know it has something to do with bio. Like maybe we need to pull the bio lever. So is there a
lane in these large language models that has to do with bio that can be partitioned off? I don't
know, but they know. And that is really the question is, and who is willing to do that? And then are
you in a paradigm where I was talking about where if there's mistrust and paranoia,
certainly see that with, you know, the fight. When I look at the fight between Elon Musk and Sam
Altman, I don't see necessarily like two guys, you know, I may not see other people are saying,
I'm seeing more like, what is getting lost in the safety component of all of this because the anger
and the virulence and the vitriol is so great? What is, I mean, again, and I'm speculating
here, this is just an observer because that's human nature. And it is, it's, it's, you know,
Is safety being jeopardized at one wanting to beat the other?
I think it absolutely is.
I just talked to Nate Sares, who wrote a book out of If Anybody Builds It, Everybody Dies.
And Spoiler alert for their book, whatever, it's also a Euro.
There's a biopathogen introduced by super intelligent, uncontrolled, and unpredictable.
The worst part, I'm told by people like Roman Yadowski, he believes that AI, because it's fundamentally unpredictable, means we can never control it.
So to wrap up, you're from Hollywood.
There's a scene in the movie
A Few Good Men
where Jack Nicholson is
kind of on his high horse
saying, you know, he says basically
you know, did you put, you know, did you order
the code, again, spoiler alert.
This is 40-year-old, 36-year-old.
Everyone seen the movie. I love them. And the late Rob Reiner
and this. Tom Cruise says, you know, what were you doing
out there? And Nicholson says, you know,
guys like you, you don't know
what we do. We are on that
wall in the middle of the night, taking a watch
so you can sleep soundly in your bed.
But what you don't know is you
want me on that wall. You need me on that wall. Did you order the code red? You're got to
do we have people on the wall? You know, and in both of these books, in these two most recent
books, are you confident? Are there other people out there that are going to, you know, take the
watch and stand on the wall? Are we, you know, or is it up to us? And what can we do?
I interview mostly former dot, dot, dot, dot. So these are people who served, and then
they leave government, which makes them much easier for them to talk to me. It's a whole different
kettle of fish if you're a reporter trying to get the story that's happening right now because
of people's security clearances. And so the people that I talk to are always concerned
of what's happening now. And I, you know, one can't know if that's because you're not there
anymore and you're saying, but I did a great job and who's doing it now? And if there is
nothing, you know, if nothing is happening, it's, I think that's impossible for me to be the
judge of it. But I do know that much can be learned from the tales that we hear from those
who served saying, this is a danger point. This is a danger point. This needs to be looked into.
And that always must be fused with the current consideration that we go back to, that
technology is moving at lightning speed. It is moving faster than any congressional hearings
can be held on subject X, Y, or Z. And also that there's so much chaff in the zeitgeist,
in the air, whether it's UFOs or algae in the, you know, in Washington, D.C., in the pawn.
Is that really important? Is that really an existential threat? And that on balance, maybe
a lot of people don't want to think, they don't want to spend their 90 years on Earth thinking about
these existential thoughts and take the position of like, you know what, life rolls on. So that's the
Herve York of conundrum. I don't know. But it's interesting to think about you. You like thinking
about it. I like thinking about it. And I certainly like talking about it. Absolutely. It touches into
everything. And it really gives you this rare gift, which is to realize that you have right now a rare
gift, that we can act, that we can breathe, that we are safe, and that we can do things. We live in a
free country, we can have influence over our politicians and our government, and that there's hope.
I think the definition of depression is when you have no hope and you feel helpless and you,
nothing we can do.
No, that's not true.
This book is a hopeful book despite the, you know, the gut-wrenching, gripping moments.
But I just want to thank you for the work that you do, the writing that you do.
I mean, from Princeton University to Pulitzer, the shortlist to, I think you played ice hockey,
you have so many different talents.
You're just a rare, you know, polymath, multi-math, and such a treat to talk to someone who's absolutely at the peak of their craft and what you do to inspire.
As I said, it's a hopeful book.
It really is.
And I hope that you all get it.
I recommend the audiobook.
I think you get more royalties on the audiobook than the –
but in any case, get the book, any format that you get it in.
We're giving away four to six copies, nuclear war, biological war, signed by Annie with a meteorite.
I hope that you'll take advantage of it.
Annie Jacobson, thank you for coming all the way down and being such a, just a phenomenal
intellect to talk to today. Thank you for being a scholar and a gentle lady.
Wonderful conversation. Thank you so much. Thank you. If Annie's books terrify you as much
as they do, me, that's good. I mean, she's making a difference. I plan to have Annie on again,
and until then, I want you to watch this conversation with Neil Ferguson about existential doom.
It's linked on screen, and don't forget to subscribe and leave a comment.
