Science Friday - How does the gut-brain connection work?
Episode Date: July 8, 2026Gut feelings, trusting your gut, butterflies: We have lots of expressions about how our brains and our bowels are intertwined. But how well do we understand the science of this on the biomolecular lev...el? And which of those organs is actually in the driver's seat? Flora churned through the details with gastroneurologists Emeran Mayer and Trischa Pasricha on stage at the 2026 Aspen Ideas Festival in Colorado. Guests: Dr. Emeran Mayer is distinguished research professor at the David Geffen School of Medicine at UCLA, and executive director of the G. Oppenheimer Center for Neurobiology of Stress and Resilience. Dr. Trisha Pasricha is a neurogastroenterologist and physician-scientist at Beth Israel Deaconess Medical Center as well as an assistant professor of medicine at Harvard Medical School. Other episodes you may enjoy: How to poop better, according to a gastroenterologist The Gurgling, Growling History Of The Gut A transcript for this episode is available at sciencefriday.com. Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374 Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.
Transcript
Discussion (0)
Hey, it's Flora Lichten, and you are listening to Science Friday.
We are coming to you today from Aspen Ideas Health with two leaders of a field that, in my opinion,
is among the most exciting frontiers in medicine and biology.
We are talking about the gut-brain connection.
And look, we have a lot of language about trusting our gut, gut feelings, gut checks, spilling your guts, getting butterflies.
and they describe feelings that are familiar to us.
I mean, let me just do a poll.
Who here has gone with your gut in real life?
Like the 10% of people who didn't raise their hand, I want to talk to you.
But how well do we understand this connection on the biomolecular level?
The connection between our brains and our bowels.
Which of those organs is actually in the driver's seat?
what does it mean for how we understand diseases like Parkinson's or depression? Those are just
some of the questions that we're going to churn through with my guests. Let me introduce them.
Dr. Emron Mayer is director of UCLA's Center for Neurobiology of Stress. He's spent four decades
studying this. Is it fair to call you a gutbrain OG? I'm going to take that as a yes.
And Dr. Trisha Peserica is a neuro-gastroenterologist at Harvard Medical School, and she's also a poop influencer, which I hope we can get to later.
Thank you both for being here.
Our pleasure.
What is the gut?
What is the gut?
What's the gut?
Well, the gut is sort of a simplistic term for the digestive system.
You know, I think the way it's being used to include all the parts of the digestive system,
from the esophagus all the way down to the end of your large intestine.
In more scientific or gastroenterological terminology,
it would be primarily the small intestine and the small and large intestine.
Not my stomach.
That depends.
I think in the whole fascination now with gut health,
I think people include the stomach as well.
This is a controversy.
It's still so spicy.
We're going to have such a hot debate,
but I think the gut,
the gut does mean the gastrointestinal tract, and we shorten that to the gut.
So I think, like, in just common parlance, I'm with you.
I think, like, when we as doctors are like the gut, we are really thinking about the
bowels.
But I do think, for being a little more technical, I think what people think about, it's everything
from the esophagus all the way to the exit hatch.
Does it seem weird that we don't have an agreed upon definition?
Totally.
It's a big problem for us.
Is it?
In your gastroenterologist is a big problem?
I think gastroenterology, the specialty, has sort of been taken by surprise how all of a sudden
their organ of interest is sort of slowly popular.
Yeah, we're the cool ones now.
Take that neurology.
Why do you think social media has glommed on to the gut?
Yeah.
I mean, Dr. Mayor is totally right.
Ten years ago, when I was in med school, no card-carrying gastroenterologist would
use gut health.
They wouldn't talk about hashtag gut health.
And now it's everywhere.
Now, you know, I think we're actually realizing we have to use that word.
The American Gastroenterological Association, which are both members of, we're forming
an advisory group to talk about how we need to own this space.
Why haven't we owned this space before?
Like, gosh, darn it.
Well, we're going to try to figure out.
And part of that is defining what that is, right?
Because most of GI, we think about curing disease.
but maybe what gut health really is is the absence of disease and and preventing said disease.
And that's obviously not been the focus for a lot of that 15-minute visit that you get
when you already have a problem with your doctor.
And I think, you know, I spend a lot of time for better or for worse on gut health TikTok,
on hashtag gut talk.
And I spend a lot of time in social media kind of talking about gut health.
And so I think about this a lot.
But my suspicion for why this has really blossomed is twofold.
One is a good thing.
I think Gen Z is so much less ashamed of their bodies than we were as millennials and everyone
older than us.
And they are destigmatizing mental health.
They're destigmatizing gut health.
And I love that.
So I think that it's like wonderful that they are bringing this and leading the charge there.
You guys think fiber maxing is cool.
Wait to you about poop maxing.
That's true.
So this is great. But I think there's a darker side to this, which we know so well. But, you know,
one of the most common diseases in GI, I'll give you this example, is irritable bowel syndrome.
15% or thereabouts of Americans have IBS. This is one of the most misunderstood diseases in all of medicine,
not just misunderstood by patients, but misunderstood by doctors. And yet it is so incredibly, like we all know somebody with us.
if maybe we've had it. Maybe we got COVID and we never pooped correctly the same. Like, this happens
to all of us at some point. And I think when there's such a big void about that information, not that
the science doesn't exist, it exists. I think we just haven't communicated it well. But when that void
exists, I think then the influencers online, you enter this wonderful space as a patient where you go
online. First of all, you can't get an appointment with your gastroenterologist for like the next six
months. This is a big problem. Now you're scrolling and you see some really attractive
influencers saying, hey, do you have bloating? Do you have brain fog? Does your doctor not take
you seriously? It's leaky gut. And or, you know, fill in the blank and they'll tell you all
about their journey and all about the supplements that worked for them. And there's a million
videos like this. And for the first time, you're somebody who's been suffering and you feel heard. You
feel seen, you feel like you're connected to a person. And that is, I think, almost like 80% of
of the gut health space right now. It's coming from people who are not physicians or the
scientists, but it's coming from people who are helping connect with somebody who has been a
little bit dismissed by, or greatly dismissed by the healthcare system. And I think that is the
darker side of why this has become so popular. Yeah, and I mean, being a gastroenterologist myself,
and so I've, I went through the first, I would say, 25 years of my career battling the dog
in gastroenterology, it's the gut.
Many comments when I gave a talk,
people get up and say,
Dr. I don't forget, it's the gut,
you know, when I talk about the brain-gut connection.
What do you mean they were saying it's the gut?
They were like, the brain is not involved?
The brain is not involved.
And I'm just based on that experience,
this negative experience,
and what's happening now,
that this has sort of been taking,
the discussion has been taking away from gastrologists
to functional medicine
and to influencers,
and the topic is widened to stuff that and entities that as a gastroenterologist, you're not trained in.
You're not trained what brain fog is or, you know, all these symptoms that are now blamed on the gut, in some ways,
gut dysfunction, but I'm not too optimistic that this new awareness will come in gastroenterologists and patients.
There's a tremendous growth of functional medicine, for example, because even though they don't have all the science,
they have managed to incorporate this holistic concept that includes the brain and the rest of the body in their conceptualization of gut health.
I mean, they may be wrong, but what I've seen so far, you know, the interest is definitely shifted away from gastrogy,
which is a specialty trained in identifying diseases of the gut, not the brain, and has developed together,
with the pharmaceutical industry and with endoscopic procedures,
very effective way of dealing with the gut,
but not with these brain gut problems.
Okay, Trisha, we've heard, I've heard you say that our gut is a brain.
I think of my gut as, like, plumbing.
Yeah.
Help me reframe.
Please reframe.
We all grow up thinking about our gut as plumbing.
That's very common.
That's not how I grew up.
I'm the daughter of a gastroenterologist.
I'm the daughter of a neuro-gastroenterologist.
like Dr. Meyer.
And we have known for centuries that your gut is a brain.
It contains 500 million nerve cells.
That is more nerve cells that are in your spinal cord.
And that brain, for some animals, it's the only brain they got.
We call it the enteric nervous system.
We humans have evolved to have a second brain in our head.
Some people call the one in our guts the second brain.
That's not what I call it.
And they are evolutionarily very closely intertwined.
And one of the ways that they communicate is the vagus nerve, and I know we'll talk a lot about that.
But remember that your gut does a lot more than just transport and magically transform food into waste.
It is constantly producing neurotransmitters, the same neurotransmitters that the brain in your head produces, like dopamine, which is what I study in my lab, serotonin.
And it sends these signals up through the vagusmitters.
nerve to the brain, and it's in the background, but it is constantly influencing our mood, our hormones,
and probably most diseases in all of our body, our heart, our lungs, our brain, you can trace
the origin to some extent to the gut. Emmer, would you call it an axis, a gut brain axis? I've
heard that used. Yeah, no, I've been trying the last few years to change people's use of these terms.
It's really much more common. It's not an axis. It's not a axis. It's not a
a linear system that we can understand with our reductionistic scientific approaches.
If you look at it with systems biology, which basically postulates that everything is interconnected,
it's a brain gut microbiome system. And these elements interact in bi-directional fashion,
not just amongst each other, but they also are the main
system in the body that regulates our homeostasis. So the basic balance within our
bodies is dependent on the system. And that goes back in evolution, as Tricia mentions,
of the first marine animals, pleasure, they had an interic nervous system lookal-like structure
surrounding basically just a tube that was moving and digesting everything together. With the
development of a head in evolution, all the functions that were important for the overall body
and survival, we're moved to the brain, using the same neurotransmitters and the same cells,
which just, you know, shifted up there, was the interic nervous system, its main function became
to run the intestinal function of secretion, motility, permeability, you know, anything that has to do
with the GI tract is run by the entire nervous system fairly autonomically.
It's independent.
Yeah.
Only if we get into a situation.
that threatens the whole organism, which triggers the fight and flight response,
then the brain basically gets involved in regulating the gut as well,
but not in the normal homoestatic situation of balance.
And there's an uncomfortable truth there too, which is that, you know,
we can survive despite being brain dead, right?
Why?
How?
Well, it's because we have a functioning interic nervous system.
As long as that is functioning and you still have some brainstem input with a breathing tube,
you will survive because your interic nervous.
system is still nourishing and feeding all of the other cells in your body. That's how important
it is. When we talk about the gut and the brain talking to each other, how are they talking?
What is the mode of communication? Tricia? Yeah, there's two main ways. Most of how we've thought
about the gut-brain connection, I think, has been in terms of how the brain communicates with the gut.
We live that experience every day, right? You know, when you're going on a date, you
get butterflies in your stomach, like Flora mentioned. Or if you're nervous, like suddenly you have to
use the bathroom and it's your turn at karaoke and there's no bathroom in sight. Why? And then when you
sing your song, suddenly you don't have to go anymore. And some of the ways those types of
communications happen. Some of it is hormone signaling. Some of that can happen through the
bloodstream from the brain down to the gut. A lot of it happens through the vagus nerve. The
vagus nerve is this long cranial nerve. It extends down from the brain to almost every internal
organ, but it has a very close relationship with the gut. Now, the gut, to communicate back up to the
brain, it can't quite use the bloodstream the same way because the brain has enacted this
really rugged barrier called the blood brain barrier. And so it doesn't let a lot of things
cross through, although some does. Most of how the gut communicates with the brain is through
the vagus nerve. And the cool thing that we've learned is just how much of that communication
in the vagus nerve is not top down.
Most of it, 80% of it is from the gut upward.
So the gut is doing, talking all the time.
We don't perceive consciously most of that communication.
Our conscious brains perceive what comes to us from our five senses, our eyesight,
what we hear, what we feel, what we smell.
But there's this whole realm called interoception,
which is all the information from inside your body
that is reaching your brain at the same.
time every second, your brain has to grapple with that while also dealing with that outside
information. That internal set of signals is called it interoception, and your gut, all of it,
that communication for the most part is happening without you consciously realizing it.
And I think that's why it's been neglected for so long, but it's been happening under the
radar nonetheless.
Yeah, just a comment to this, any motion that we have, negative, positive, will have.
So just like we see it in the facial expression,
the muscles within your face express that emotion if you want or not.
The same thing happens at the gut level.
The gut changes with every emotion.
And there's emotion-specific motility patterns and secretion patterns in the gut.
And it goes all the way down to the microbes.
So the microbes know when you are angry or when you're stressed
because the sympathetic nervous system, part of this signaling pathway,
secretes molecules that acts on receptors on microbes,
changes the gene expression of these microbes in their behavior.
So there's a lot of studies on the effect on virulence of microorganisms and of pathogens.
So when you're angry or stressed,
you're more likely to get a more severe gastroenteric infection
or more long-lasting symptoms,
as if you're relaxed and, you know, your microbes don't get this warning signal
from the top down.
So there are many fascinating dimensions to this story
that most people don't think about
when they talk about gut health.
But as you said in the beginning,
this is really the potential for us to really reconceive
the whole organization of our bodies and our brain.
That's very exciting.
And I want to talk about some specific examples.
Tricia, I know you work on
Parkinson's, we know that's a disease where you have misfolded proteins in your brain.
What's the connection to the gut?
Yeah.
You know, we have had hints that there may be more to Parkinson's than just the brain for a long time.
If you go back to James Parkinson's early writing and his first case description of these
patients, he did notice that they tended to have just incredibly severe constipation.
I wasn't sure why.
And when I started my GI Fellowship, by chance, I started seeing a lot of patients with Parkinson's disease, people with Parkinson's disease.
And they would just tell me, I have had constipation.
It started 10 years, 20 years before these motor symptoms.
And when you go look in the literature, it turns out that's been well described.
We showed this.
We replicated in my lab.
But people tend to get nausea.
Sometimes we call it gastroporesis when it causes a delay of movement of the stomach.
constipation, and all kinds of GI symptoms years, if not decades, before the motor symptoms
that we often think about as being Parkinson's related, like the tremors. And we think that for
at least a subset of patients now, we know this, that the disease itself begins in the gut. And,
as you mentioned, Flora, Parkinson's is characterized by misfolded alpha synuclein protein. It's this protein
when it misfolds, it causes the death of the dopamine neurons in a certain part of the brain.
Well, they've done these studies that started in mice and now we have human data that
found that in some people, there's some trigger that happens.
It's probably a different trigger for lots of people.
There have been a lot of research and interest in pesticides, for example, paraquot.
We've talked a lot about that in our field.
Ultra-processed foods is potentially implicated.
Maybe it's an infection.
There's lots of different things that enter our body through the gut and potentially trigger that
misfolding or even other changes that we haven't yet quite understood that are related to it.
But that misfolded protein starts to misfold in the stomach, for example, and then it propagates
like a preon, which is a kind of disease that basically induces the next cell to start misfolding.
And then that one causes the next one, next one, and it goes up the vagus nerve to the brain.
And it turns out in humans back in the 70s and beforehand, we were doing this procedure
called a vagotomy pretty often where we would cut the vagus nerve for certain conditions like
really bad ulcers or severe reflux well if you look at the natural history of what happened
to people during that time period and obviously we don't do this that often anymore it's not it's not
necessarily like no one and we shouldn't all be getting vagotomies but um if you look at that natural
history people who had that procedure their risk of Parkinson's disease got slashed by almost half
and it tells us that that link is probably real
and we're looking into some of this in my lab today
to try to figure out what are the triggers
why does it happen in some people
obviously and probably not all though
there are some people where I think it does start in the brain
what makes these two things different
does understanding this role of the gut
lead to other new opportunities
for earlier interventions or diagnostics
what is the meaning
for patients. Yeah, I mean, I think that is the hope of our whole field, is that if you think about it,
in a way, it feels scary to hear that Parkinson's is starting in my gut, and maybe this is happening
well before I would even know that it's there. But the other way of looking at that is to say,
well, what an enormous opportunity we have. This means that maybe there are years of time, maybe even
longer, where there's a window before the disease reaches our brain. And that's, you know,
exactly what a lot of us in the field are trying to figure out is can we identify a biomarker
in the gut that will herald what may happen years down if we don't intervene. And of course,
what we need to do is also come up with a way to intervene. And there's a lot of work being
done on both of those friends right now. So it's actually, I mean, we're incredibly biased in that,
but it's a really exciting area of research, I think, in all of medicine right now.
I hope you're enjoying this conversation from Aspen Ideas. We have to take a break. But when we come back,
Do probiotics actually work?
We will get into it.
I want to talk a little bit about GLP1 drugs
because they feel like an interesting case study
in this gut brain system world.
You know, we know, as I'm talking about,
Zembek or Wagovi, we know that they slow digestion,
but they also seem to have effects on the brain.
And we've seen, you know, evidence of this in early trials
for GLP and addiction, for example.
what are they telling us about the gut brain system?
Yeah, this is a particularly fascinating story.
GLP, like peptide, is a hormone that's stored in cells that are in the gut,
that are in the gut.
There's about 40 different types of cells like this in the gut,
the endocrine cell system.
Biggest hormonal system in our body is actually in our gut.
Now, you may have heard about the latest version of the GLP-1 drugs,
which has now three of these peptides combined,
and it's even more effective,
and all three peptides come from the gut.
So basically what industry has done
or has found out that,
so you take these signaling molecules that are in a gut
that have for hundreds of thousands of a million years
worked perfectly well to signal satiety,
generate all these signals to our brain
that you notice what goes on in the body.
But I think somehow,
our lifestyle
the changes in the last 100 years
have overwhelmed the system. It's not longer working.
So what industry
and science has done
so you take these same messengers
that nature is developed and give
them a much, much higher doses
and they seem to be working
and we don't know what the long-term
consequences of
that
attack is because
right now it seems to be the only solution
to the obesity epidemic.
and with all its associated comorbidities,
the whole list of these chronic diseases
that have appeared, they seem to be all interconnected,
to call it the chronic non-contacious disease epidemic
that affects everything from colon cancer to Parkinson's,
to Alzheimer's, to, and so somehow with this system being compromised,
and now we have a potential pharmaceutical solution
to fix it at least as long as you take these medications.
I think this will dominate the discussion and the clinical practice for some time.
Do you think that's a good thing?
Okay, so if I put on my scientific head and clinical head, I would say, yeah,
that's a great thing.
You can help so many people save a phenomenal amount of money
because a lot of the interventions that medicine has come up with
from bypass surgeries to expensive drugs,
all these costs will obviously go down.
But on the other hand, when you think about it,
is it a good thing?
So now we're really, humans at a certain age
are really dependent on the statins
and on anti-hypertensive medication.
So now we add the GLP once.
Is this the way we want to deal with our world
that's gone out of balance?
Or do we actually wanna work more
on the root causes that are causing all of this.
So we can right now, you know,
we have pretty good tools now that we can prevent people dying from this.
As long as they stay on these drugs,
obviously a dream for the pharmaceutical industry, you know.
Tricia, what's your take on this?
Anything to add?
Yeah.
I'm in agreement on most fronts here.
I mean, I think what we've found so fascinating in GI,
is, you know, a lot of people are hesitant about JLP1s because they're worried about the GI
side effects and JLP1s is something that we study in my lab too. And we're finding more and
more that there are these effects that JLP1s have that seemingly don't have much to do with weight
loss, you know, and I think that those other effects, for example, in my lab, we found that
taking a GLP1 medication, it's associated with a decreased risk of getting ulcers of having
damage to the mucosal lining of your stomach. It doesn't have anything to do really with weight
loss. And these big studies have come out about how GLP1 medications are associated with a decreased
risk of 13 different cancers, not related to weight loss per se. And it's exciting, and I keep saying
that word associated with. And these studies are very exciting. We don't know the mechanism quite
yet, and we haven't nailed some of that down. So I'm incredibly optimistic about them. I'm a
realist that we'd like to help people in ways that don't involve medication. I am so on board with
this medication because it will help so many people, though. And I think, though, that my pause is just
and we're working on this is we need to understand in a lot more detail than we have right now
what it's doing exactly and molecularly and why some of these benefits happen. I think GLP1 is just like a lot of,
for example, neurotransmitters in the history of medicine, dopamine's a great example, what we know they do in
the brain isn't hot what they do in the gut, and they act very differently.
Estrogen, like all of these things behave very differently in different organs, in different types
of environment. And so it's a lot to unpack. We have to talk about the microbiome, because I feel like
that's a huge part of this, and we haven't really dug in there. Do we know what a healthy microbiome
looks like? We know more diversity is better. I feel like I've heard that before, but do we know
specifically what we're aiming for with a gut microbiome? I think this has sort of,
This definition has sort of developed a general consensus.
And the concepts have taken, have been taking from ecology.
So diversity and resilience are all the terms that we know from other ecological systems,
from nature that have been applied to healthy macabom is resilient to perturbations.
It has a high diversity, has a high richness.
So it's not just having 100 different types of bacteria, but each bacteria is just
five or ten members, but it's hundreds of thousands.
There have been some attempts that based on the function,
so the microbiome field has moved from asking who is there,
which microbes are there, shifting pretty rapidly
now to what are these microbes doing
and what is their capacity, their genetic capacity.
So in a few years, we won't have any microbiome tests
that just look at who is there,
but basically what they're doing.
see what they're doing. And one good thing that's general agreement on is if they produce
molecules so-called metabolites that they generate from breaking down complex carbohydrates or fiber,
it's a group of molecules called short-chain fatty acids. Some of you may have heard this word
butyrate, which have a lot of beneficial effects on not just the gut, but also on the brain. Every
system is our body. One of the most important ones is really this anti-inflammatory. So we have
built into our body a production site for aspirin. You know, that anytime we have an insult,
to the counterbalance, and that's why a healthy diet, a whole food diet is so beneficial because
it nurtures the healthy gut microbiome function, which are to a large degree, not
exclusively, but anti-inflammatory.
So I would say these definitions, getting it down to which microbes need to be there in a healthy microbiome,
there's also large-scale studies that have identified like a handful of microbial species and
strains that have been associated with the absence of diabetes and metabolic syndrome.
But I think going with the concepts of these anti-inflammatory effects and microbes that have the genes to produce these molecules, in my opinion, right now is for the best definition.
What would you add to that?
Yeah, I agree.
I mean, I think something that I find so frustrating right now in the world we live in is that I think that what we think about the microbiome is very tempered.
And we understand a lot about certain associations with diseases and maybe the upregulation of certain microbes.
But when you as a consumer as a patient hear about this, see it on social media, it feels very black and white.
It feels like, let's check your microbiome.
If you have too much of this bacteria, we're going to cut it out.
If you don't have enough of this bacteria, that's bad.
Let's give you a supplement and we'll fix it, right?
And the science is just not there yet.
And, you know, but we've started monopolizing on this and profiting off of it a little bit too early.
And the way I think about the microbiome, just in simplistic terms here, is it's like a garden, right?
And if you have this garden and you imagine what I want are a bunch of flowers and you start seeing weeds growing,
you might just pluck out all those weeds because we don't want them.
And let me sprinkle some beautiful rose seeds that I do want.
And it's not going to be that simple.
What if those roses aren't growing, not because there's,
the seeds weren't there, but because the soil pH was wrong, because you're not getting enough
sunlight, right? And I think sometimes when we think about hashtag gut health or just the gut in
general, you know, lately all we talk about is the microbiome, and we just really focus on that.
But remember, the microbiome, these trillions of organisms, they exist in this ecosystem that is
part of us. We have to think about how these microbes are interacting with our individual immune
systems, with our nerves. One species, for example, of some microbe can be.
behave very differently in me than it will in you because the milieu is very different. And we're
seeing all of this play out in studies. So I find it frustrating when patients come to me and they're like,
I have spent hundreds of dollars on this testing kit, the supplement, it's gotten me nowhere.
Look at the results of my microbiome. Tell me what I should do next. I wish I could. I mean,
what I can tell you and what I do tell my patients is like here are the principles about healthy
or healthful eating that these are the types of foods that support the microbiome.
But at this stage, we don't have targeted microbiome-directed individualized therapy just yet.
Yeah, and there's obviously a lot of, I mean, I shouldn't call it abuse, but, you know,
commercial exploitation of that uncertainty is, it's an unfortunate phenomenon.
I mean, not for the companies who's a billion-dollar industry, the probiotics, and the prebiotics,
the post-biotics, and symbiotics industry comes up with always new expressions to justify a new,
you know, a supplement.
But if you look at the evidence that these interventions make actually a significant difference,
it's very weak.
So you would not get an FDA approval for any medication with the weak evidence that exists
for any of those biotics.
And that's kind of unfortunate because I think I'm optimistic.
I think we're in the second generation of probiotics right now.
the next generation will have amazing things.
It's already an active area of research,
where people manipulate the genes of certain microbes
to do specific things.
I'm sure there's quite a few people here in this room
that take probiotics.
Who takes probiotics?
It's a safe space.
We're not here to judge by any means.
But Emery at the same time,
and Tricia, I want to hear your thoughts on this too.
I mean, I have heard about doctors
sort of prescribing diet for, you know, mental illness and other diseases.
What do you think about that?
Well, that's a different story.
I mean, diet is for one of the most complex vehicles to deliver tens of thousands of molecules,
phytonutrients, and when you eat something, a fiber-rich meal, it's not just eating one fiber,
like inulin, you ingest thousands of these fiber, different fiber molecules.
They all do different things to your micro-rich meal.
So you can't really compare when people have created this term psychobiotics.
You know, you take this one organism and they think it's going to change your depression or your anxiety or ADHD.
I mean, it's ridiculous to think that way.
But diet, there are emerging studies that have shown certain evidence is best for, as usual, right now, the traditional Mediterranean diet.
diet, but also for certain situations like advanced Alzheimer's disease, a ketogenic diet,
or for refractory epilepsy and children, also ketogenic diet.
But that's the exception.
So in general, I think what this traditional Mediterranean diet concept is, it gives you
thousands of these molecules that you can put into a capsule and think that this one molecule
will actually be of great benefit to you.
So that's my view.
I don't know how you think of that.
Yeah, I totally agree.
I mean, I think a lot of, I mean, they think actually this is why these alternative medicine
and holistic providers do really well, is they give this holistic picture.
Like, they will advise you a lot more on lifestyle and diet.
When you're dealing with something that doesn't necessarily feel that connected, like depression
or anxiety, I mean, as Dr. Marr said, the Mediterranean diet has been pretty consistently,
reliably shown to be associated with reduced rates of depression, of mental health, disease,
and, of course, neurodegenerative disorders.
But that's not often part of the conversation, right, that you have when you go to see a
primary care doctor.
Like, it might happen briefly, but we don't dwell on it, I think, in the way that we should.
But I think the other thing I want to just kind of point out about that is, you know,
we don't, when we're talking about something like depression and anxiety, is that to use that as an
example. I think about that as being part of this gut brain connection. I don't think of it as being
purely in the head, just as I think of a lot of these is not being purely in the gut. And so I think
it's wrong to go completely in the other direction and say, let's just focus on diet when we're
thinking about depression. I think we all have to think about looking at that connection, which often
forms more of a connection, less of a connection, more of a vicious loop. How are we going to treat
the brain in our heads and the brain in our guts, right? Like, I, I start people on anti-depression medications
all the time for their GI symptoms, right? And vice versa. And at the same time, we need to also be
thinking about diet. But I think there's often, there's one side of maybe more traditional medicine or
these quick kind of visits where you say, all I've been told is to take a medicine, then maybe
you go to a more holistic fracture. And then all you get is sometimes supplements or lifestyle.
we have to find that medium that is still very rigorously science-based, and that exists,
but it just our model isn't always set up to have those longer conversations.
There's so much to talk about.
Obviously, we are out of time.
I am so grateful to my guests.
Dr. Trisha Peserija and Dr. Emmerin-Mayer, thank you so much for joining us today.
That is it for today's show.
This episode was produced by Kathleen Davis.
special thanks to Tanya Bauer, Libby Franklin, and Ryan Zinger from Aspen Ideas Health,
for having us and for making this go.
And thank you for listening.
I'm Flor Lixman.
