The Dr. Hyman Show - Don't Wait for Alzheimer's — A Neurologist's 30-Year Plan to Protect Your Brain
Episode Date: August 19, 2026By the time memory begins to slip, the changes affecting the brain may have been developing for decades. But the trajectory isn’t fixed, and many of the factors driving it are within our control. I...n this episode, I sit down with my longtime friend and mentor Dr. David Perlmutter, six-time New York Times bestselling author whose new book, Brain Defenders, rethinks what it really takes to protect the brain as we age. You’ll learn: Why protecting your brain should begin long before memory problems appear How your daily choices influence whether the brain’s immune cells shift into a protective or damaging state Which numbers to know now, including fasting insulin, blood sugar, and waist-to-hip ratio How food, exercise, sleep, gut health, and environmental toxins shape your brain’s future What emerging research reveals about slowing—and even improving—cognitive decline I’ve always appreciated how David’s work replaces fear with something far more useful: a clearer understanding of how the choices we make today can help protect our memory, independence, and quality of life for years to come. View Show Notes From This Episode Sign up for Dr. Hyman’s Brainshaping Academy to learn how to nourish the biological systems that support your mental, emotional, and cognitive health https://drhyman.com/products/brainshaping?utm_source=dr_hyman_show&utm_medium=newsletter&utm_campaign=may_27&utm_content=link Get Free Weekly Health Tips from Dr. Hyman https://drhyman.com/pages/picks?utm_campaign=shownotes&utm_medium=banner&utm_source=podcast Sign Up for Dr. Hyman’s Weekly Longevity Journal https://drhyman.com/pages/longevity?utm_campaign=shownotes&utm_medium=banner&utm_source=podcast Join the 10-Day Detox to Reset Your Health https://drhyman.com/pages/10-day-detox Join the Hyman Hive for Expert Support and Real Results https://drhyman.com/pages/hyman-hive This episode is brought to you by Paleovalley, Pique, Perfect Amino, BON CHARGE, Cozy Earth, and Fatty15. Shop nutrient-rich foods and supplements at paleovalley.com/hyman and save 15% off your first order. Elevate your daily wellness ritual at piquelife.com/hyman and enjoy 20% off plus free gifts. Help fill protein gaps at bodyhealth.com and use code HYMAN20 for 20% off. Explore red light products at boncharge.com/hyman and enjoy 15% off with code HYMAN. Upgrade your sleep setup with cozyearth.com and enjoy 20% off with code HYMAN. Head to fatty15.com/HYMAN today and use code HYMAN for 15% off your 90-day subscription Starter Kit.
Transcript
Discussion (0)
When we recognize that 40 to 50% of adults in America who live to be age 85 will have a diagnosis of Alzheimer's disease,
it's 65 years and older, risk is 1 in 9 or 11% of people age 65 or older have dementia.
It is almost a fully preventable situation that people shouldn't fear,
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life.com slash hymen. David, welcome back to the podcast. So good to see you again. And I know
you're coming in from British Columbia, which is exciting. And I think you're taking well-deserved
rest before the launch of your new book, Brain Defenders, which I'm very excited about, how to
harness the power of your immune cells to protect your brain for life. We're going to get it all
into that and go deep on this because it's really an important topic.
You know, David, I think, you know, we've known each other for, I don't know,
30 years now. And you were one of my mentors. You originally taught me so much about the brain
that I was recollecting about the original book that you had written. It helped me understand
Parkinson's mitochondria. And you were the first one to talk about this idea of the brain
on fire. And you had this really crappy slide.
All of our slides were crappy back in the day.
And it was at the conferences, and it really stuck with me, and that so much of what's wrong
in the brain, whether it's neurodegenerative diseases or mood disorders, the whole spectrum
of brain dysfunction is in some ways time to dysregulation of immune function and immunity
and inflammation of the brain.
And your new book goes really deep on this.
So maybe you can kind of start out by helping us understand.
a few things. Why are you focusing now on this whole framework of immunometabolism, the mitochondria,
and the immune system interacting in the brain as a root cause with so much of what we're seeing
that's wrong in today's brains? Well, Mark, this represents, I think for me, a significant
convergence of everything that we've been talking about for such a long time. And it's incredible
because it really unifies the mechanisms that we've talked about. You mentioned the brain
on fire. This embraces the idea that neuroinflammation is a central player in what makes a good
brain go bad. But beyond that, well, then where does the inflammation come from? And it comes from
exactly what you described, those microglial cells, these brain immune cells, the innate brain
immune cells, who knew that the brain had its own immune system. And we tend to think about,
well, that's what makes a good brain go bad. And the reality is these cells are
I hate to say design, but what they're, what they do on a good day is maintenance and good things.
They maintain our synapses. They maintain the function of the neurons. They maintain the blood-brain
barrier. So it really broadens the scope of what we would classically consider to be immune function.
I mean, you ask somebody, what does the immune system do? And the response is going to be,
well, that's what comes into play when there's a challenge by a bacterial infection, viral infection,
surveillance for cancer cells, whatever it may be. But the reality is that, you know, these firemen in the
firehouse are doing a lot of work to maintain the fire engine when there's no fire. And I think that's
that tends to broaden our understanding of this immune system. It has a good side and a downside. And to be
very technical about it, for our discussion today, these microglial cells can exist either in a very
supportive, we call it the M2 role, where they're shoring up these barriers and keeping our synapses
working, or they can shift to being destructive, what I call in the book, the evil twin, the M1
configuration, where they are going around and destroying the synapses, creating that neuroinflammatory
environment where the neurons can't work well anymore, and the blood-brain barrier becomes
more permeable, letting bad things into the brain.
said, the most empowering part of our discussion today is that the shift from being supportive
to being destructive is under our control. And, you know, for me, that really represents a whole
heck of a lot because it explains everything we've been talking about for so long. It explains why,
you know, in Grain Brain, why a higher carb diet, and we'll unpack this today, is associated
with activation of these microgleal cells.
It explains why permeability of the gut, of all things,
from having changes in our gut bacteria
leads to increased inflammation
that will activate these microgleial cells
and shift them to becoming, again, the evil twin.
We now see that we can, research-wise, anyway,
image the brain in living humans
using what's called a T-S-P-O scan.
This scan images when the microglia are activated to their destructive state.
So a positive TSPO scan shows activation of the microglyle cells.
And we see that the TSPO scan is positive, as you would expect in Alzheimer's, in Parkinson's,
in multi-sistam atrophy, progressive supernuclear palsy, major depressive disorder, post-traumatic
stress and even long COVID. So really, this whole notion of activation of the brain's immune cells
called microglia throws an incredibly large net, and that is giving us all a level of
empowerment now that we've never had access to in the past. You know, I think there's a whole new
way of thinking about the brain. I think we've kind of lost this essential idea in medicine,
which is that we can help the brain.
We know we can prevent heart disease by lifestyle.
We know we can prevent diabetes by lifestyle.
I mean, we even know in some ways cancer can be branded by reducing toxic exposure
and helping with your metabolism and a lot of other things.
But brain health is just something that we think of as this black box
and that traditional medicine doesn't know what to do with.
It's like, okay, well, I hear so much of this from my friends
who have family members with Alzheimer's,
And they go, well, I don't want to know my test because there's nothing I can do.
They're this fatalistic view that the brain is fixed or it progresses towards disease with this inexorable path that can't be altered.
And it's so important about your work and the things that you highlighted decades ago and that you continue to work on is that the brain is changeable,
that the brain can be influenced by what we're doing by our microbiome, by our diet, by exercise, by sleep, by our nutritional status, by reducing exposure to environmental toxins, by how,
helping our mitochondrial work better.
There's so many pathways to actually improving brain function
and not only just slowing and preventing neurodegenerative diseases
like Alzheimer's or Parkinson,
but actually intervening and reversing many of them.
And that's kind of a heretical thing to say in medicine.
Even what you just said.
You're right. It's considered heretical.
But as our colleague, Dale Bredesen, has mentioned many times,
we all know of cancer survivors.
Do we know of any Alzheimer's survivors?
And now we're starting to see that happen.
And it's really based upon what you just described, and that is these metabolic inroads.
And that is what you originally teed up for our conversation today, this concept of immunometabolism,
immuno being what we're talking about, these microgleal cells in the brain, the brain's immune cells,
and their metabolism.
So when these immune cells shift their metabolism, when their metabolism changes, then they shift in becoming
the evil twin. They shift from being supportive to being destructive. It's all predicated on their
metabolism that changes. Their mitochondrial function is declining suddenly and rapidly, and that
induces this shift to becoming what we call M1 and destructive. And here's the take-on bullet point message,
and that is that the metabolism of the microglial cell mirrors the metabolism of your body.
Wow, that is incredibly empowering.
So if I dedicate my lifestyle choices to improving my body's metabolism, to keeping my weight down,
to keeping my blood sugar in check, to keeping insulin functionality where it needs to be,
to keeping my blood pressure where it should be, then I am actually working lovingly with my
microglyle cells to really become the architect of my brain's destiny.
And, you know, in my case, having a family history of Alzheimer's, it's what I need to do.
And I am certainly not alone in that.
When we recognize that 40 to 50 percent of adults in America who live to be age 85 will have a diagnosis of Alzheimer's disease tells me a couple of things.
Number one, that's a flip of a coin.
And I want to make sure it lands on the right side for me and for everyone I'm interacting with.
Yeah.
And number two, we should absolutely consider this to be an epidemic.
That segment of our population is the most rapidly expanding.
And when you look at those statistics in terms of Alzheimer's risk, I mean, it's 65 years
and older, risk is 1 in 9 or 11 percent of people age 65 or older have dementia.
I will say here on your podcast, it is almost a fully preventable situation that people
shouldn't fear, that people should feel empowerment as it relates to making the right choices.
It's an awful situation for certainly the patient and for the loved ones as well. Having been through
that, again, I want to dedicate everything I do to giving people this information that we can
rewrite your brain's destiny. I think that's important, David. This is such an important concept
that we can do stuff to keep our brains healthy, functioning, and mentally sharp. And the question is,
you know, I'm 66.
You're a little bit older than me, not too much.
And you're like, little ahead of me like my big brother.
I'm on the continuum.
You're my big brother.
You know, like, how do we keep our brains healthy for the next 20 years?
So we're thinking about it for ourselves, but it's a really important concept of what causes brain damage.
What can I do differently now to make sure I stay mentally healthy and my brain stays healthy
and I have no neurogenital diseases over the next 20 years?
and what should I be measuring and looking at in my own biology to track what's happening?
And this is important for us to sort of unpack, I think, because, you know, we know that
the changes happen in the brain decades before you ever forget your keys or somebody's name or,
you know, get lost in a grocery store.
These are things that happen, you know, in their 30s, 40s, 50s before you see any changes
in people 60s, 70s and 80s.
Can you help us understand what are those things we should really be thinking about in
terms of what is causing brain damage and how do we stop at how do we how do we stop this fire in the
brain that you've been so elegantly describing for decades and this this kind of how do we optimize
our metabolism reduce inflammation and all these core concepts because we know now so much more
than we did even when we all started this 30 years ago that it's it's really doable well I think
the most important step is that you embrace the idea that you are in charge if you don't do
that, then you're not going to pursue the other things that we will now talk about. So really,
job one is, I am the architect of my brain's destiny. Okay, Dr. Pearl Motor, Dr. Hyman,
what do I do? That's your question. And the reality is it's not difficult. It's not really
that sophisticated. If what makes a good brain go bad across the entire spectrum of neurodegenerative
conditions, yes, we're fearful of Alzheimer's, but there's a long list of other things that can
a good brain go bad, that's for sure. I mean, you know, people don't realize that
Parkinson's is also influenced by metabolism. If you have type 2 diabetes, your risk of
Parkinson's is increased by 85%. So this notion that metabolism is important is, you know,
the answer to your question, we've got to do everything we can to remain metabolically intact
in our 40s and 50s. We have a big buffer there cognitively such that we don't really see the
cognitive changes in the brain until, you know, maybe we're in our 60s, maybe we are in our 70s
and are forgetful of our keys, Wi-Fi codes, grandchildren's names, et cetera, we're way down
the continuum of brain decline when that stuff starts to happen. And you're exactly on point
that the issues that sow the seeds for the brain's degeneration happen when we are a lot
younger, in our 30s and in our 40s, that's who I'm hoping are listening to our conversation today,
because that's when we really begin to establish our personal set points as it relates to metabolism.
That said, to answer one other part of your question, then what are those markers?
And they are very straightforward, simple markers that you've talked about for years.
How important is your fasting blood sugar for your brain's destiny?
It is fundamental.
No, your fasting blood sugar.
And that is something, as neat I tell you, you don't need a doctor's prescription to understand your fasting insulin level, your A1C.
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Want to take it a little deeper? Let's look perhaps at your C-reactive protein. And as I describe in the book,
there are a suite of very brain-specific blood tests that we can get, like P-Tal-217, which we could talk about.
But the main players are those blood tests that I mentioned, that look at your blood metabolic markers,
know your blood pressure, and buy a very, very sophisticated and,
an expensive tool called a tape measure and put it around your belly and put it around your waist.
And then do the math and determine your waist to hip ratio.
And, you know, this is an extremely valuable way of understanding.
What is your risk?
How does that relate?
Well, when your belly is big, you have more visceral fat and you're increasing inflammation.
Those microgleal cells in your brain that are in charge of whether your brain will be healthy or not,
call it like it is, are very receptive to inflammation coming from anywhere in the body.
When inflammation chemicals called cytokines are produced anywhere in the body,
like from a leaky gut for all who knew, right?
Those chemicals can make their way to the brain through the blood brain barrier
that becomes less and less functional as we age.
Those microglia see inflammation and they shift to becoming the evil twin.
Now that they're shifted to become the evil twin, they go around the brain and destroy synapses.
The main issue in the Alzheimer's brain that leads to decline in cognitive function is the loss of connection, one neuron to the next via the synapse.
That's the connection.
So at a microscopic level, it's a loss of connection.
At a macroscopic level, Alzheimer's patients lose connections with themselves, with people around them and with their,
entire environment. So this loss of connection is really, you know, kind of the central issue
that is involved in the Alzheimer's brain. But, you know, we lose connection in Parkinson's as well.
We lose connection of these cells that make dopamine and part of the brain called the Substance of
Niagara projecting to other motor areas. And it's the same mechanism. That was demonstrated by Dr.
Langston in the 1980s when he first saw these patients who used a,
designer IV drug that was contaminated, the microglia were activated in their brains immediately
and destroyed those cells that made the dopamine, and immediately they got Parkinson's.
And he studied their brains 13, 14 years later, and these microglia were still at it,
still destroying tissue. So this is, you know, science technology magazine called this
the number one discovery of 2025, the incredibly central,
centralized role of microglia in brain degeneration. And gratefully, it's great to have another
explanation finally that takes us away from this idea that, for example, Alzheimer's is caused by,
ask anybody, they'll tell you what causes Alzheimer's, the accumulation of beta amyloid in the brain.
I think my blood pressure just went up saying that because I'm really getting tired of hearing it and reading.
I read it last night in some news report that what can we do to lower beta amyloid.
That is absolutely not the cause of Alzheimer's disease.
I say that in the book, provide the data, explain how the whole amyloid hypothesis was flawed.
But when we look at that discussion through the lens of these new amyloid targeting drugs, they are not working.
If beta amyloid is the cause of Alzheimer's, then you would think getting rid of the beta amyloid might do some good.
A Cochrane analysis was published about two months ago. This was an analysis of the 17 top
studies that evaluated the effectiveness of the drugs that do indeed lower beta amyloid in the brain.
The study that involved 20,342 individuals each study lasting about 18 months looked at two things.
Risk and benefit. That's what we always do, right, to determine, are we going to write a prescription
for something, an intervention. What's the risk and what's the benefit? What they found was the
benefit was zilch. That's not the word they used. The word they used was trivial. They don't work.
And the risk was really high. 20 to 25% of these people on these drugs develop brain hemorrhages,
and or brain swelling or even death. And for a drug that doesn't work. So that's a powerful argument
against putting people on these $40,000 a year intravenous infusions every two weeks.
And the response when I challenge doctors who are doing this therapy is, well, we've got to do something.
There's nothing else to do.
Yeah, we've got to do something.
We've got to offer something.
Well, you're offering something that is very threatening and has no efficacy.
So that raises the hair on the back of my neck.
And so what do you do in a situation like that?
you write a book. Thank God. I mean, one of the things I think, you know, you hinted it a little bit,
which I think is important to double back on, is this really important idea that all the conditions
that happen to the brain, Alzheimer's, Parkinson's, ALS, MS, long COVID, palmeralger, chronic fatigue,
mood disorders, psychiatric disorders, they're all related. They may manifest differently in different
people based on their particular unique genetics or predispositions. But the fundamental mechanism,
underneath, all these things are very similar.
And they have to do with our inputs, right,
the things that we have control over our diet,
our lifestyle, exercise, stress, sleep,
all that, environmental toxins, and our microbiome.
And then the downstream effect is very similar dysfunctions
around inflammation, around mitochondrial dysfunction,
metabolic dysfunction, you know, oxidative stress.
These are all things that we actually have been talking about
for decades in functional medicine.
And we're down into the kind of weeds of things looking at these diseases rather than kind of zooming out and saying, okay, what are they in common?
What can we do to optimize our overall health, but particularly our brain health, you know, from this lens?
And that's what we should be focusing on.
And I think, you know, this is a very powerful modality.
I'm right a patient who had pretty significant dementia.
We really helped her in so many ways.
She had heavy metals.
She had methylation issues.
She had gut issues.
We fixed a lot of things.
And she kind of did really well for quite a while.
Then she had a decline because her husband died.
It was a big loss for her.
And I said, well, why don't we just try a ketogenic diet?
And this might have been 20 years ago.
Because, you know, I was reading about the literature and mitochondria and inflammation
and insulin resistance to the brain and type three diabetes, which would be Alzheimer's.
And I was like, let's try it.
And it was amazing.
You know, the family was wealthy enough to have a chef.
they gave her the food and it was like she woke up and you know it lasted for quite a while and it just
alerted me to the fact that even in people who are fairly down the road there there are things that
can be done to really help this and as you mentioned you know Diel Bredesen is talking about the
Alzheimer's survivors you know who's the Alzheimer's survivor nobody right but there are now people
and I've had them in my practice as you have and when you aggressively treat these factors the causes
you optimize the immune system, you optimize mitochondria, metabolic function, that these people
do better. And it's quite remarkable. Yeah, you bring up a really good point. I don't want to miss
while it's still in our minds. And that is that you mentioned mitochondria multiple times, and that is
the metabolism of these microglyle cells. And ultimately, when the microgluele cells shifts from being
supportive to being destructive, it actually is characterized by a law.
loss of mitochondrial function. The M1 destructive microglial cell does not use mitochondria to any significant
degree. It's using glycolysis. So its energy production is much less efficient, much less ATP
produced. So in a very real sense, all of those neurodegenerative conditions that you listed
are mitochondropathies or based upon failure of their mitochondria. You can get there from mold
exposure, from having insulin resistance, from head trauma, from exposure to environmental toxins,
from PM2.5s in the air that we breathe, which is certainly very important right now,
vis-à-vis the incredible fires that we're seeing across North America. And you're right. And
when we target the mitochondria, we get responses like you've described, and I have seen,
and certainly Dale Redis and has described as well. Well, there was something really new that you said
in your book that I thought was so striking
that I hadn't really thought about before,
which is that the microglary
basically had the immune cells in your brain,
and they have mitochondria.
And I never thought of how the mitochondria in the immune cells
affect the function and health of the immune cells.
And that was kind of an aha for me,
like, wait a minute,
the metabolism, aka mitochondria, of immune cells,
when it goes awry,
is what's causing so much of the brain inflammation
and the brain in fire
that you've talked about for so long
and that's contributing to all these neurodegenerative
and neuropsychiatric disorders.
Is that right?
Imminometabolism.
What a term.
So talk about this.
I think this is a new idea.
I mean, Jeff Blandis talked about it,
one of our friends and mentors,
but tell us about what is this?
And is this kind of a new idea?
And how do we start to think about it?
How do we start to act on it and even diagnose it?
It's important because it's certainly not
just these microgluele cells in the brain, but it's immune cells throughout the body that are
dysregulated when their metabolism goes awry. And let me make one point that I think is really
important. This is bidirectional. That when these immune cells are targeted by glycated proteins,
elevated blood sugar, toxins, inflammatory cytokines, it will then shift their metabolism. It will
reduce their mitochondrial function. At the same time, as mentioned a moment ago, when mitochondrial function
is challenged for other reasons, then the immune cell will be targeted as well and shift to being
less supportive. So it's a bidirectional support system. Immunomatabolism support, you know,
goes both directions. And the manifestations of dysregulated metabolism of our immune cell is seen
throughout the body. But the central and pivotal role as it relates to the brain, I think, is so
powerful because we can influence it deeply by targeting metabolism, targeting the things that I
mentioned, you know, the markers of metabolism that we can easily measure. When we do that,
we are absolutely targeting our brain's immune cells, these microgleal cells, to be back on
our side and back to being supportive. And as we've talked about,
This is the upstream mechanism well above the accumulation of alfets, nuclean, or beta emloid, or other proteins that people tend to want to focus on, even phosphorrelated tau.
The phosphorylation of tau happens, which is, for your viewers, phosphorylated tau-217, which is the blood test you can get, you know, doing function health, for example, you can go and get your p-tow-217 measured, is a very valuable indicator of loss of synapses.
If you really want to know what it's telling you, the higher the level of this P-Tal-217, a blood test that is an indication of loss of synapses.
It is therefore, and what is causing loss of the synapses, activation of the microbial cells.
So this is a very important, and now arguably a more specific blood test, you know, in distinction, a contradiction to the simpler blood test that you and I talked about earlier.
So in a very real sense, you're evaluating what in the heck's going on in your brain's immune system
when you look at that test. But as I mentioned earlier, it can be as simple as measuring your waist
hip ratio. Yeah. I think that's important. Let's going to double down on this because I think this is
really, this is really new information for people, which is up until now, we didn't really have a good
way of like checking your blood sugar of your brain. In other words, what is your, like, your diabetes,
oh, my blood sugar is high got diabetes or my blood pressure is how I've got high blood pressure.
have a biomarker or a set of biomarkers that we could look at that would be impacted by
lifestyle. You know, we could check your APOE4 gene, which gives you a risk of Alzheimer's,
but those are genes that can't be changed. You can change expression of them. But now we have
biomarkers that are really revolutionary, I think. It's like a, it gives us an opportunity to start
to look at people's blood work very early and see what are the progressions and what are the changes
and how do we modify those? Because it's not just finding this lab work.
I'm going, oh, shit, you know, I got this problem.
It's like, oh, wow, I have this problem.
My blood sugar is low high.
Maybe I should stop eating bread and sugar.
You know, maybe my petal 217 is high.
Maybe I should change my lifestyle.
Maybe I should eat better.
Maybe I should reduce my insulin resistance so I can improve my metabolic health.
Maybe I should look at my microbiome and help that.
Maybe I should look at my toxic load and things that might be triggering this.
Maybe I should exercise more.
Maybe I should focus on my sleep a little better.
should think about nutrients I could take that would help my mitochondria or help my regulate my
immune system or my microbiome. So it gives you an opportunity to think about creating a plan for
yourself that's very proactive instead of reactive. I mean, by the time you are an in-stage Alzheimer's,
so there's not a whole lot you can do. But early on, you can see a lot of things changing. And
I've been actually using these tests. And in Function Health, we now offer a full suite of tests
that include as your basic panel,
a lot of things you were mentioning,
insulin resistance markers, insulin A1C,
particle size, hormone levels,
toxin levels, nutritional levels,
homocysteine, all the things you'd want to look at
as a foundation.
But we also offer an advanced sort of brain panel,
which allows us to look at P-Tow-217,
amyloid AD 4242,
looking at neurofilmant light chain,
which is often, you know, damage from the brain's damage
from traumatic brain injury and other injuries.
And GFAP, which is another.
protein. So there's a lot of things you can look at. And so I think for me, it's a really empowering
moment in neurology. And I mean, I'm going to make funny to be your neurologist, but the joke we
had about neurologist in medical school was diagnosed and adios. Basically, you would just, you would
be great at diagnosing things, but there was nothing you could do about it. It is so true.
And no, and no. And now it's not like diagnose and adios is diagnosed and Olaq. How
it's us. Let's go. Well, for me, it's, I want to be interventional long before we diagnose.
And, you know, I think what you just described is really fundamentally important that the,
the standard of approach in medicine has been to treat illness once it has manifested. And what you're
describing is the approach of keeping people healthy in the first place, which is more valuable.
I mean, I would, I would submit it's absolutely the latter. And,
You know, we describe our health care system in America.
It's nothing to do with health.
It's treating illness.
And so this is very much preemptive, preventive approach that you were describing,
and it's very, very empowering.
And I remember back in the day, this thought came to mind again.
Early on in the PSA blood test, prostate specific antigen,
insurance wouldn't cover it unless you had a diagnosis of prostate cancer.
early on, the PSA, before your time, Sunny Boy.
But anyway, and I thought, how ridiculous is this?
And then there was a notion of breast cancer prevention.
And, you know, where the pink ribbon, all this,
and breast cancer prevention was really emphasizing the way to prevent breast cancer
is to let women get mammograms all over the place.
You know, every year or whatever the interval was, have a mammogram.
Mammograms don't prevent breast cancer, excuse me.
They early detect breast cancer.
So I think that what you're describing, and in fact, that suite of blood tests that you
describe, you know, the glial fibularia, the GFAP, the neurofilament light, NFL, the looking
at phosphorylated p-tow 217, we describe them in the book because they're available to people,
and they do give you a sense as to where you begin the process.
And, you know, people talk about, well, what about your genetics?
And what if I do carry the APOE for allele?
And I know therefore, if I'm heterozygous, I have a five-fold increased risk.
If I have two of them, homozygous, my risk for Alzheimer's may increase 12-fold, should people even know that?
And my answer is, you bet 100%, because that will be much more encouragement for you to do what Mark Hyme and I are talking about today.
and that is get busy and get your metabolism, get your metabolic house in order, and you can
absolutely rewrite your destiny, and that's what this is all about. And does it fly in the face of
modern medicine, how medicine practice here in America? Yes, indeed it does. I mean, you know,
we see how the deck is stacked, and that's okay. I mean, Robert Kennedy, Sr. once said,
some people see things as they are and ask why. That's what we're doing right now.
Others see things as they could be and simply ask, why not?
And that's what we're doing as well.
Why not?
Why not give people the tools to set the stage for a healthy brain now
and not have to suddenly awaken at my age, 71,
and notice some cognitive issues and then hope for a cure?
Do I hope for a cure, a pharmaceutical cure for Alzheimer's?
100%.
If that existed, if GLP once turned out to be,
effective, I'm going to sign up for that. You bet. I will be recommending that. And I talk about that
in the book. My mission is not to really think outside of the box. It's really to make the box
more inclusive. And I am open to a drug intervention. You bet I am. And having mentioned GLP-1s,
I think there is some promise there. But for now, let's do the metabolic work. Yeah, I think it's
so important. And the name of your book is so important, brain defenders, because it talks about
How do we defend our brain?
Like, what are the things we can do to defend our brain?
And right now, I think people don't really know.
Like, they know if I shouldn't smoke and I should manage my blood pressure and I should,
you know, not eat too much saturated fat and I should exercise to prevent myself from getting a heart attack.
But if you ask people, what should I do to prevent getting Alzheimer's, it would be pretty much
a black box for people.
So I'd love to sort of spend a bunch of time now.
Pretty much what you just said.
Go ahead.
Well, it's those things too, yes.
It's like, the good news is what treats it?
Anything treats everything.
You know, it's kind of like a joke.
But if you look at the fundamental reasons we get sick, there's only a few.
It's what we eat.
It's our lack of activity.
It's stress.
It's lack of sleep or poor sleep.
It's environmental toxins.
It's changing our microbiome.
It's our genes combined with all those things to determine who we are.
And those things are highly modifiable.
And we can't change our genes or we can change the expression of those genes.
let's talk about like the fundamental things that people can do other than looking at these causes,
right, looking at the blood tests, which helps you see where you are,
what are the things that people should be doing to help their immunometabolism,
to help their brain immune system, to help their metabolic health, both with their body and their brain.
Because I mean, the brain and the body of the same.
Like it's not like we have, you talk about the body, mind, mind, body.
This is one thing.
It's not like two things.
So I think that we kind of get all confused about that.
But I think we really need to think about, you know, what are those things that people can do
very practically that have the most impact on the brain?
And maybe you kind of walk us through what you discovered around how to optimize
immunometabolism related to the brain.
You bet.
And again, you know, so many things came to mind in that setup.
And first, you know, back in the day, there was a heart-smart diet.
Remember the heart-smart diet?
As if, well, I don't have heart disease.
I have another situation, so I shouldn't go on that diet.
No, it's a body systemic good diet to be on because it's involved with keeping blood sugar
where it needs to be and lowering inflammation.
And those are the keys.
Those are the keys for brain health, too, when we talk about diet.
But the big, number one, most important thing is to embrace the idea, again, that you are in charge,
that your decisions matter in terms of your brain's destiny.
All right.
Now, where are those?
What are the decisions?
And I'm not going to rank them, but I'll just go through them.
Let's first talk about exercise.
You know, when we look at the data that looks at levels of,
let me preface this by a study appearing in the Lancet in 2024,
that looked at 14 modifiable factors and indicated that attention to these 14
modifiable factors is associated with about a 50% reduced risk for developing dementia.
And by and large, these modifiable factors are the things we've already talked about that affect metabolism.
Interestingly, as a kind of a sideline, they did not mention diet.
They did not mention nutrition.
So I, along with Dr. Robert Lustig, wrote a letter to Lance, it led to the editor, saying,
hey, you know, it must have been an oversight.
Here are the references that describe diet, you know, the mind diet, various diets, intervention,
Mediterranean and their effects on Alzheimer's risk. And we got a letter back from Lancet saying,
well, thank you very much, but we're not going to publish your letter to the editor. So I don't
know what's going on with that. We'll leave that. But let's first talk about exercise.
So, you know, the data that relates regular exercise with reduced risk of cognitive decline is
vast. And, you know, that really came to us in actually the late 1980s.
from a Dr. Kirk Erickson who randomized a group of just over 100 individuals.
One group stretched, one group aerobically exercised. After one year, he did two things. He did a
cognitive assessment and he actually did three things. He measured their BDNF, we'll talk about that
in a minute, and he actually measured the size using an MRI of their memory center in the brain.
He was first to demonstrate that this intervention, this program that you put people on,
was associated with an increase in size of the brain's memory center,
a preservation, in fact, an improvement of cognitive function
just because these people exercise.
You know, the epidemiological studies,
looking at people based on their self-reported exercise,
has shown strong relationship to reduction with more exercise of risk of cognitive decline.
And as we look at interventional trials,
your friend Rudolph Tansy at Harvard, along with Dean Ornish, published the study last year,
demonstrating an interventional trial on 51 individuals, not a huge trial, over a 20-week period of time,
demonstrating that when they change people's diets, allowed them to exercise regularly,
or invited them to exercise regularly, reduce their stress,
These are individuals with Alzheimer's disease diagnosed that their cognitive function didn't slow in its decline.
By and large, it stopped declining completely.
That's crazy.
And in fact, this is in 70% of their interventional people.
In many of them, it actually improved.
I'm going to let that one hang for just a minute.
So, you know, getting back to exercise, the question I think that you and I are often asked,
says, okay, I get that being sedentary is bad for my brain, you know, sitting around, not doing
things. And it's important exercise. One question is, well, what's better than for my brain? Is it
aerobic or is it resistance? Is it, you know, the weightlifting or the bands or whatever machine
you might use at the gym or aerobics? And that was actually looked at in a journal called
clinical and health psychology in 2025, a study that looked at was a review of 36
interventional trials where they put people on these programs and it was close to 6,000 individuals.
And their conclusion was, is it aerobics, is it resistant training?
Their conclusion was it is both.
It's the combination that seems to work best.
And, you know, as you and I know, these types of interventions work a little bit differently
that when we do resistance training, we're building muscles, which is really important,
because muscle tissue is an endocrine gland secreting various chemicals that ultimately positively
influence brain health. So the muscles make chemicals that go elsewhere in the body,
therefore it's an endocrine gland, more involved in regulating metabolism.
The aerobic part of the story improves blood supply, improves insulin functionality.
So it's the combination.
And what Zhang and the other researchers in that report noticed was that the best bang for the buck,
in other words, the best response was in individuals who were a 65 or older, you and me,
and also those individuals who already had some cognitive impairment for brain preservation,
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So, David, let's talk about a few other things around diet and what is so crucial to understand for people as a brain-healthy diet.
And I think we've talked about this lot, but I think it would be going to just crystallize your thinking about this.
in 2026. What I endeavor to do in brain defenders is simplify, because as you all know,
there are so many diets out there, whether it's Mediterranean, Mediterranean Plus, added greens,
the mind diet, you know, diets named after people, paleo, primal, whatever it may be.
And I wanted to look upon diet, not so much in terms of what you should be eating day in and
day out by being prescriptive about that, but rather what is the effect of the diet that you choose.
but with some stipulations.
And I think most importantly, it's a diet that's going to control your blood sugar.
And I will say that we've got to get some metrics here.
And I'm all in favor of wearing a continuous glucose monitor,
not all the time, but from time to time, to get a sense as to what is this diet I have chosen
for myself doing in terms of controlling my blood sugar?
Because my blood sugar is fundamental in terms of controlling my blood sugar.
my microglial cells and therefore charting my brain's destiny.
So get a sense as to the food you're eating.
Make choices that are reflecting a better control of your blood sugar.
That said, I like a more plant-based diet.
It doesn't have to be fully plant-based,
but a diet that is colorful,
meaning a lot of different colors of fruits and vegetables on the plate,
giving you the polyphenols,
giving you, importantly, the dietary fiber.
fat we described should be healthful fat, not fat that is threatening to your body, to your brain,
as if the brain were not part of your body. So I really did my best to simplify. We talk about
why it's good not to eat later in the evening to increase that window of fasting and all of
the things that people are very familiar with, but it's the outcome that is measurable of your
dietary choices that I think doesn't, the outcome doesn't get as much attention as it needs.
and that's what I focused on in this book.
Yeah, and also I think, you know,
one of the things that people are understanding now
about neurodegenerative disease in general,
whether it's Alzheimer's or Parkinson's or even things like MS,
they're often related to changes in the microbiome and gut dysfunction.
And maybe you could kind of talk about that,
because you wrote a whole book about that,
but I think it's worth sort of double-clicking on that again
for people to understand how important keeping your microbiome healthy is
because that's what determining a lot of inflammation.
You're just in making control and affecting some resistance.
If there's bugs in there that are not friendly bugs,
it can affect you by producing toxic metabolites that affect the brain.
So can you kind of talk about a little bit about the microbiome and the brain in that context?
You bet.
And you're right.
You know, I wrote a book years ago called Brainmaker.
And to be fair, some of my colleagues were not, you know, the eyebrows went up.
What do you mean, you know, the microbiome affecting the brain? That's the gut. That's, you know, the brains in Chicago and the gut is somewhere south of Los Angeles. So, yeah, it was an interesting time. But now I think the mechanisms have been, you know, much more fully fleshed out, delineated that we can understand, you know, the fundamental relationship between what's going on in the gut, even beyond the microbiome. But let's just talk about that for a moment.
So I think one of the fundamental tasks of the microbiome, aside from the metabolites that these bacteria and other organisms produce, is maintenance of the lining of the gut.
And as my friend Mark Hyman used to say, probably still says, you know, it's the garbage dump in the gut.
That's the term you use.
And things should stay in the gut that remain in the garbage.
They shouldn't make their way into systemic circulation.
Remember, you used to say that.
I probably did at that point.
No, I think I remember when you did say that.
But the point is that there's a lot of stuff in the gut that needs to remain there,
and it stays there because we have really good protection.
We have a strong barrier that keeps that stuff from making its way into the systemic circulation.
The maintenance of that barrier is predicated on diversity and good functionality of our microbes in the gut, called the microbiome,
when that is challenged by any number of issues.
that we can discuss, then they are less able to do that job, less able to maintain that barrier function.
Things get out from the gut into the systemic circulation and even into the gut lining,
the outside of the gut, and challenge immune cells.
What do these immune cells do now that they are challenged with various chemicals like LPS?
People may have heard of that, like Pala'saccharide.
They increase their production of these inflammatory cytokines.
If we go back to our original conversation early in this interview, we remember that cytokines,
these inflammatory chemicals, make their way to the brain and stimulate our microgleel cells
to shift from being supportive brain defenders to being destructive.
That connects an awful lot of dots between the microbiome being changed and ultimately
paving the way for Alzheimer's, Parkinson's, other neurodegenerdegendal conditions.
to the extent that there is now publications allowing us to recognize that we can almost fingerprint the gut microbiome
and relate it to risk for neurodegenerative conditions of very specific types.
That's how far we've come in studying the makeup of the organisms and more importantly, what they are producing.
In other words, the technical term is the metabolomics of what.
what is going on in the gut. But let me just extend this a little bit further. The most powerful
influence on the makeup and functionality of the microbiome are the foods that we choose to eat.
So now we've added one more dot, one more step, fundamentally relating our food choices to our brain's
destiny. Now it's through now the lens of the microbiome that you teed up so eloquently. And having
said that, it then allows us to understand why it is, one nuance of the clear and present threat
posed by our consumption, widespread consumption of these ultra-processed foods. We live in a country
where in adults, 60% of calories are coming from these franken foods, as the term you've used in
the past, these ultra-processed foods that represent a clear and present danger to your brain's
Destiny. Consumption of these foods, one study that was published in the Journal of Prevention
of Alzheimer's. Can you imagine a journal of prevention of Alzheimer's, Be Still My Beating Heart?
And this study that came out last year followed a group of 1,111 individuals over a period of 12.7 years
and basically asked these folks, during this 12.7 year, during the period of time that we're going to study you, what do you eat?
eat. So they kept a food frequency diary. What did they find? They found that those individuals who
consumed as an average one serving per day of ultra-processed foods experienced a 13% increased risk
of Alzheimer's disease, a disease. Just one serving. That's how much. That's a handful of chips.
That's 13% increased risk of Alzheimer's a disease for which there is no pharmaceutical treatment
available as you and I have this conversation. Further, they found that in those individuals who
consumed 10 or more servings of ultra-processed foods a day, now that's in the context of a country
where 60% of our calories is coming from this food. So that's not out of, that's 10 hand
servings of chips. That's probably on the low end. Yeah. Their risk is increased 270%. That's
of a disease for which we have no meaningful pharmaceutical treatment.
So 270%.
Yeah, basically a threefold increased risk of getting Alzheimer's, which, you know,
if you live to be age 85 as mentioned, is already a flip of a coin.
Now you've really tipped the scales out of your favor.
And that's just based on food choices.
And so what do the ultra-processed foods do?
They threaten blood sugar regulation.
They threaten insulin functionality.
They are pro-inflammatory.
and they mess up your microbiome,
vis-a-vis the discussion we just had,
we know that's bad.
When the microbiome is threatened, back to that,
it's not only the gut permeability issue,
but it's the lack of production
of certain metabolites, products of these bacteria
that make their way to their brain,
these short-chain fatty acids
that are important for gene expression regulation,
what did I just say,
that our gut bacteria are,
regulating our gene expression, our life code, I better take good care of my gut bacteria because
they have a big, they have a very important job. They are determining gene expression throughout my
body and yes, even in my brain for crying out loud. So, so yeah, food matters. I think what you're saying
that's so important and people don't realize how, how just dramatic diet can be in prevention and
also treatment. And, you know, you've written a lot about it. I've written a lot about it. I think
one of the things that I think would be really worth sort of diving into a little bit is
something that people don't really think about that much, which is how do we think about
the immunometabolic effect of toxins? And they're ubiquitous and there are everywhere.
We're exposed to so many of them. And yet many of us don't really have a way of understanding
how to diagnose them or treat them. And we feel a little bit confused. It's like, well, what do we do?
And I think you and I both been involved in this field,
and I think that having a understanding of how to assess environmental toxic load,
how it affects the brain, how it affects metabolism,
how it affects immune function is really important.
I think that was one of the biggest ahas I had early on was that toxins can be directly poisonous,
but they can also be immunotoxic.
In other words, they can trigger immune dysfunction.
And there's a whole phenomenon of autogenes,
which are autoimmune-inducing toxins.
The same can be true for the brain, I think.
So maybe you can sort of help us understand that a little bit.
Well, you know, we don't put this microglial activation in the category of classic autoimmunity,
but in a very real sense, it is.
These microglia are activated and then go about destroying our own tissue.
So in a very real sense, I think it's fair to indicate that this is, you know,
it's not a classic description, but it is an autoimmune situation.
I think back to your question, though, how does toxic exposure relate to this?
And I think in a word fundamentally.
So I don't know how deep you want to go, but whichever toxin comes to mind.
I think let's look at toxins that are directly affecting the mitochondria.
I recently had the opportunity.
I think you did, too, to interview Dr. Ray Dorsey.
I think you had him on your podcast.
Yeah, yeah, yeah.
And he made it very clear that he considers Parkinson's, for example, to be a man-made disease.
as a consequence of first the Industrial Revolution and our exposure, even back in the 1800s,
when James Parkinson wrote his treatise on the shaking palsy is what his book was about.
And he didn't describe what was, you know, it was a toxic event,
but this was when people began to be exposed to these higher levels of toxins,
and even to this day.
And, you know, by and large, the toxins that are at play here,
are toxins that threaten mitochondrial function.
When we threaten mitochondria, we threaten the microglia
and cause them to shift to becoming the evil twin.
It's really that straightforward.
We're threatening metabolism,
and this is again the term immunometabolism,
the relationship between mitochondrial dysfunction
and this dramatic life-threatening change
of our microbial cells, our brain's immune cells.
So what Dr. Dorsey made very clear
is that we are exposed to a variety of toxins these days in our environment that directly target
mitochondria and therefore can manifest as things like Parkinson's. As you discussed in your
interview of Dr. Dorsey, he's really very much fixated on this trichloroethylene, which had been used
industrial cleaner, dry cleaning fluid makes its way into water. And there are places where
groundwater is still contaminated by TCE. And, you know, in my, in my lecturing, I've opened up this
discussion a little bit further, looking at first something I alluded to earlier, this MPTP
contaminant of this IV drug that people were using in the 80s and getting parking because MPTP targets
the mitochondria. Well, are there any mitochondrial toxins that we may be exposed to these days? And the
answer is you bet there are. Let's talk about something called paraquot. What is Paraguat? Paraguat is an herbicide.
It's used to kill weeds around our crops. The good news is that 70 countries around the globe,
because it is such a devastating toxic experience, exposure to paraquot, have banned or significantly
reduced the use of paraquot in agriculture. The country that is not on that list is.
is the United States. In the United States, our usage of paraquot, a mitochondrial toxin is skyrocketing.
The reason being that are weeds in that are less responsive now to glyphosate. So they're developing
what's called roundup resistance. So we've had to turn to the use of paraquot, a mitochondrial
toxin exposure to which is associated with increased risk of Parkinson's to treat.
the weeds in our modern agriculture.
And let me be really clear about this paraquot thing.
Paraquat is used experimentally to create Parkinson's in primates in research laboratory.
And we are spraying it on our food.
Something's wrong here.
Something's very, very wrong.
It's been said that man is the only animal who will be foul his own nest.
So, you know, we're spraying a mitochondrial toxin on the food.
We eat something's wrong with that.
Taking it even further, glyphosate itself, the active ingredient in Roundup,
buy it at the hardware store, and, you know, spray it around your vegetables.
I'm telling you not to do that is similarly a mitochondrial toxin.
And we're seeing the politic around glyphosate currently, and we'll see how that ends up playing.
But, you know, we live in a toxic world.
It's true.
And let me just pivot a little bit here to something I think that's really fairly germane,
as you and are having this discussion in the summer months,
where wildfires are rampant in North America,
recognize that these are by and large forests that are on fire,
but it's not like this smoke is benign when it's coming to our cities and we are breathing this.
These particles, these PM2.5s are powerfully pro-inflammatory,
meaning they increase the cytokines in our bodies that make their way to the brain
and will shift our brain defenders, microglueal cells, to becoming brain destroyers.
And also, the PM2.5s themselves can be inhaled and make their way through the nose
into the brain directly and can induce inflammation.
It takes me to one other topic I want to cover real quickly,
and then we can unpack whatever else you want.
And that is what we call a feed-forward.
cycle that inflammation experienced from any source, be it the permeability of the gut, be at the
PM2.5 particles that we might inhale, inflammation from any source will shift the microglia
to becoming their M1 destructive phenotype, we call it. That is a pro-inflammatory phenotype,
meaning that once those microglias shift to being the evil twin, and let's be clear they can
back, that's what our work is all about. But once they're in that,
M1 damaging configuration, they are spitting out more and more of these damaging cytokines in the brain
that further target other good microglueal cells and shift them to being on the dark side,
if you will, like zombies. So it becomes a feed-forward process. So you can induce that shift
from head trauma, for example. That's why these football players with chronic traumatic
encephalopathy, continue to worsen once they've stopped, you know, after playing football.
Look at Muhammad Ali, quit boxing, stop the head trauma, but continues to worsen. Once this process
has taken hold, it's a feed forward. It's hard to stop. But not, but not impossible to stop.
Can very well be stopped as you've demonstrated in your patients in whom you've improved their cognitive
function, as Dr. Bradson has demonstrated, as I'm describing, as Dr. Tanzi,
and described in his recent publication, you bet.
And people are doing this.
I mean, at our center, ultra wellness center in Lennox, Massachusetts,
we do a lot of this, and we see these patients.
And we understand how to assess their nutritional status,
insulin resistance, metabolic health, immune health,
to look at mold, to look at toxins, to look at the microbiome.
I mean, that's one of the big advances in functional medicine
is really understanding how to optimize the microbiome
to what we call the 5R program as a reset for the gut.
And these are just a different set of lenses
and a different set of tools we use
to address these kinds of chronic,
often very, quite scary illnesses,
but we can really make a difference.
And I think, you know, your work has just been so inspired for me
or this book is incredible.
I'd encourage everybody get a copy of it,
Brain Defenders, and the subtitle of this amazing book,
Brain Defenders, is harness the power of your immune cells
to protect your brain for life, which is what you have to do.
Before we close, David,
I'd love to just do a rapid-fire set of questions.
You're up for that?
Are these double value two points each?
Yes.
Go ahead.
Okay, what's the single worst daily habit for your brain health?
I would say lack of connection.
Lack of connection to others, yes.
I like that.
And just as a side note, there's my new book that I'm sort of working on.
I talked about this guy, Steve Cole,
who's come up with this whole science of how disconnection and loneliness
actually activates a whole gene expression pattern.
that drives inflammation. So you're right on target. What's the single best daily habit for brain health?
Connection to others. Okay, there we go. How about alcohol? Is it ever good for the brain?
It's never good for the brain. You know, our messaging has changed over the years. It's a toxic
event and it's never good for the brain. How about sleep? How many, how many hours should people sleep
every night? Ideally, seven to eight, not just quantity, but I think it's important to study
your sleep, wear the Apple Watch or the o'er ring, and get a sense of the quality of your sleep.
You kind of address this a little bit, but what's more important for the brain aerobic exercise
with strain training if you had to pick one? If I had to pick one, I would probably say aerobic.
And then walking. Is walking enough or do you need to do more? It really depends on the individual.
What does walking do for you? Can you risk walk and get your heart rate up to where it needs to be?
That's the question. But I think walking on an incline is, you know, going to help build muscle mass,
which is important as well.
Yeah, if you're a marathon runner, walking probably won't do it,
but if your couch potato would probably want to start.
How about blood tests?
What's the most important blood tests that people are not getting, but they should?
Fasting insulin.
Agreed.
Agreed.
Wow.
We're on the same page, David.
If Markheimer agrees with me, I'm doing well.
What's an really something that makes it dad in the long run for your cognitive health?
Increasing waist size.
Ah, so your belly fat.
Belly fat.
Yeah, that's a big one.
Ways.
Okay.
ever too late to improve your brain health? And can you really reverse loss? We've talked about it.
But is it too late? Is there a point at which is too late? Well, there's certainly a point in which
it's too late. I think end-stage Alzheimer's is too late. But as we now see interventional
trials using lifestyle modification have proven effective, even in individuals with established Alzheimer's
disease. What's one food that you eat regularly for your brain? Salmon. Salmon. Okay, you're catching
it up there in a lot of in British Columbia right now.
I caught one last night when the sun was coming on.
Yeah, it was great.
With an orca in the background.
I love that.
How about what's when food you avoid?
Fruit juice.
Fruit juice, yeah, no fruit juice.
Orange juice is not a health food.
And what is one supplement with the strong evidence
that you would take for your brain health?
Vitamin D.
How about GLP1 drugs?
Are they going to be brain health drugs?
My sense is quite likely.
I think there is some refinement
that's obviously needed. We've seen an incredible interventional trial published in New England Journal of Medicine
where Parkinson's was stabilized. I think GLP-1s have a future in brain health, the brain health arena.
Interesting. So it's an evolving story. We'll pay attention. Okay, what's more important for your brain?
Doing brain games, you're staying socially connected and intellectually engaged. I would say socially connected for sure.
And if you're a 40-year-old right now, what are three numbers you want to know that reflect what's happening in your brain?
You need to know your fasting insulin level, your fasting blood sugar, and I would say your waist to hip ratio.
Those are good. It's all metabolic health. Okay. Now lastly, finish this sentence, the best way to stay mentally sharp for the next 20 years is to change your thinking today to the extent that you realize that you are in control of your brain's destiny.
You are in control of your brain's destiny. That is a big one. I think people all understand this about their heart.
their weight, but they don't understand that their brain health is in their control. And I think
that's what so much of York has been highlighting for the last 40 years. This last book, Brain Defenders
Harness the Power of your Immune Cells to Protect Your Brain for Life is amazing. It's out now.
You can check out David's website, Dr.com.com. He's got a podcast, and you'll learn all about
his amazing work. He's definitely one of my mentors and one of my close friends. I'm happy to be
in this world with him because without him, I would be much less smart. So, thank you.
you, David, for me. I love you, brother. I love all what you do. Good to see you. All right,
buddy. Thanks so much. Enjoy salmon fishing in British Columbia. If you love this podcast, please share it
with someone else you think would also enjoy it. You can find me on all social media channels at Dr. Mark Hyman.
Please reach out. I'd love to hear your comments and questions. Don't forget to rate, review, and
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channel at Dr. Mark Hyman for video versions of this podcast and more. Thank you.
so much again for tuning in. We'll see you next time on the Dr. Hyman Show.
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