Control Your Brain Chemistry for Focus, Motivation & Well-Being | Huberman Lab Essentials
Watch on YouTubeVideo summary
The video explores how brain chemistry governs every aspect of human function, from organ regulation to overall performance, by focusing on four key neuromodulators: dopamine, epinephrine (adrenaline), serotonin, and acetylcholine. These chemicals operate through both fast-acting mechanisms for immediate responses and slower baseline processes that set the daily context for mental states. The host explains that these levels fluctuate predictably throughout a 24-hour cycle; specifically, phases one and two of waking hours are dominated by dopamine and epinephrine to drive motivation and energy, while serotonin rises later in the day to promote contentment and relaxation. Acetylcholine is distinct because it responds more directly to current activities like learning or focusing rather than following a strict circadian rhythm. Understanding this baseline backdrop is essential before applying tools to manipulate these systems effectively.
To optimize specific goals such as motivation, energy, focus, or well-being, the discussion outlines various behavioral and nutritional strategies tailored to each neuromodulator. For increasing dopamine, which drives pursuit of goals, natural methods include early morning sunlight exposure within three hours of waking and regular caffeine intake at safe doses, both of which enhance receptor sensitivity. Acute boosts can be achieved through supplements like tyrosine or phenylethylamine, though the host advises caution with L-dopa due to potential crashes. Behavioral interventions such as deliberate cold exposure are highlighted as powerful tools that not only increase dopamine but also build resilience by flooding the system with adrenaline early in the day when baseline levels are highest.
Epinephrine is primarily responsible for generating physical and mental energy, creating a state of agitation or readiness to move rather than calmness. Since this hormone does not cross from blood into the brain directly, it acts via neurons in the locus coeruleus that sprinkle excitatory signals across neural circuits. Effective ways to elevate epinephrine include any form of exercise, high-intensity workouts, and cyclic hyperventilation breathing techniques like Wim Hof or Tummo styles, which trigger a warm, alert feeling without relying on drugs. While beta-blockers can suppress these effects for public speaking or medical conditions, the focus here remains on leveraging natural tools to harness energy and forward momentum when needed most.
Serotonin is linked to feelings of satiety, comfort, pain relief, and overall well-being, often targeted by prescription medications that carry risks like lethargy if dosages are too high. The video emphasizes potent behavioral ways to naturally increase serotonin without drugs, such as physical contact through hugging or holding hands, practicing gratitude—especially receiving it—and observing others express thanks. Nutritionally, consuming foods rich in the precursor tryptophan and supplements like myo-inositol can support healthy levels that improve sleep quality and mood. The overarching conclusion is to build a versatile toolkit of dietary choices, behavioral protocols, and optional supplements based on individual needs, ensuring sufficient baseline chemistry while selectively using acute interventions to achieve desired states of focus, energy, or relaxation throughout the day.
Read the full video transcript
Welcome to Huberman Lab Essentials,
[music] where we revisit past episodes
for the most potent and actionable
science-based tools for mental health,
physical health, and performance.
I'm Andrew Huberman, and I'm a professor
of neurobiology and opthalmology at
Stanford School of Medicine. Today we
are going to discuss your brain
chemistry and how to control and
optimize your brain chemistry for all
aspects of mental health, physical
health, and performance. The important
thing to know is that your brain and
your spinal cord and the rest of your
so-called nervous system control all the
organs of your body and that all the
organs of your body feed back, meaning
they communicate through chemicals and
other means to your nervous system. And
vitally important is the fact that which
neural circuits are active and which
neural circuits are likely to be less
active at any given moment depends on
two major categories of chemicals. It
depends on hormones and it depends on
so-called neurom modulators. And the
four neurom modulators that we're going
to talk about today that are of the
utmost importance for your goals are
dopamine, epinephrine, also called
adrenaline, serotonin and acetylcholine.
There are many features of how neurom
modulators work but for sake of today's
discussion we only need to focus on two
of those features and those are fast
acting features and longer slower
features or what we call baseline
features. Now perhaps surprisingly I'd
like to focus on the slow actions of the
neurom modulators first because those
slow actions of the neurom modulators
are happening in you and in me and in
everyone right now and they set the
backdrop the context in which the
various tools to manipulate dopamine,
epinephrine, serotonin or acetylcholine
will work. What do I mean by the context
or the backdrop or the baseline? Well,
it's fair to say that most people are
awake during the daytime and asleep at
night. So schedules of sleep and
wakefulness will vary, but in general,
everybody, regardless of whether or not
you're nocturnal or you're so-called
dal, you're awake during the day, pretty
much everybody follows a schedule in
which from 0 to 9 hours after waking,
that is from the time you wake up until
about 9 hours later, the neurom
modulators dopamine and epinephrine tend
to be at their highest levels that they
will be at any point in the 24-hour
period in any period of the day. So, we
can call this 0 to 9h hour period phase
one of the day just for simplicity. And
I've referred to this before in a
previous episode, but not in this exact
context. From 9 to about 16 hours is
what we will call phase 2. And that's
when dopamine and epinephrine levels
tend to subside a bit compared to the
earlier phase one part of the day. and
serotonin levels start to increase. And
then phase three of the 24-hour cycle,
which is from about and again about
these are approximates from about 17
hours after waking until about 24 hours
after waking is phase three of the day.
We're not going to focus too much on
phase three today because phase three of
the 24-hour cycle, that 17 to 24h hour
period, is one in which you ought to be
deeply asleep whether or not you're
nocturnal or dial. So, we're mainly
going to focus on what we're calling
phase one and phase two. Phase one being
this dopamine epinephrine dominated
phase of our day and phase two being
this more serotonin or serotonin
dominated portion of the day. And then
you might say, well, what about
acetylcholine?
You forgot about acetyloline. Well, we
didn't forget about acetyloline.
Acetylcholine is under control more in
terms of what we happen to be doing at
any given moment. whether or not we're
focusing or not focusing, whether or not
we're learning or not learning. And here
I'm referring to acetylcholine
specifically in the context of the brain
and thinking because as some of you are
probably shouting out there, right? If
you're exercise physiologists or you
know anything about how the brain
controls movement, acetylcholine is used
at the nerve to muscle synapse, right?
So neurons don't just control other
neurons electrically. The way you are
able to move in fact is because neurons
are controlling the electric activity of
muscles literally the contraction of
muscle fibers and that control is
exerted through the release of
acetyloline. So acetyloline is working
at muscles as well but we're not focused
on that today. We're focused on what we
can do during phase one of the day and
what we can do during phase two of the
day to control the specific
neuromodulators dopamine, epinephrine,
serotonin, and acetylcholine toward
particular end goals. So again, it's
really important to understand what the
backdrop of these neurom modulators is,
the so-called baseline, and that they
vary across the day if you are going to
be able to leverage tools to optimize
your brain chemistry. Before we dive
into the more pointed directed effects
of specific tools on neurom modulators,
I'd like to just briefly mention
hormones because they are also important
for understanding the background and the
context and these baseline levels of
neurom modulators. Hormones have many
different effects on the brain and body
and not unlike neurom modulators, some
of those effects are very fast, some of
them are very slow. Today we want to
think about hormones as they relate to
these neurom modulators. the dopamine,
serotonin, epinephrine, and
acetylcholine. And in general,
testosterone tends to collaborate with
and increase the action of dopamine.
That's not always the case, but in
general, when testosterone goes up,
dopamine goes up. In general, when
corticosterones like cortisol and some
related steroid hormones increase,
epinephrine levels go up. And in
general, when hormones like oxytocin or
prolactin are increased, levels of
serotonin go up. And then we have poor
old lonely acetylcholine off on its own.
But it's not poor and lonely. It
actually has incredibly potent effects
on its own. So it's really that it just
doesn't need much help from the hormone
systems or at least not the steroid
hormone systems in order to have its
tremendous effects. If you understand
these four neurom modulators and you
understand that while there are many
tools ranging from pharmarmacologic to
behavioral that can tap into these
neurom modulator systems that kind of
dopamine pull back on serotonin and so
on. Well then you can create a sort of
kit a grabag of things that you can use
in any context or I should say that you
can look to depending on the context
you're in and create the states of body
and mind that you want. Now once again
painting with a somewhat broad brush but
nonetheless an accurate brush we can say
that dopamine when elevated above
baseline
tends to increase states of motivation
both mental and physical motivation
drive and to some extent focus.
epinephrine and a closely related
molecule called norepinephrine.
And again, I want to emphasize that
epinephrine is adrenaline and adrenaline
is epinephrine. Norepinephrine is
noradrenaline and noradrenaline is
norepinephrine. But today, we're going
to just simply talk about epinephrine
and norepinephrine.
That category of neurom modulator is
mainly responsible for generating our
energy, our level of fuel and baseline
level of forward center of mass as I
like to call it. When epinephrine levels
are high, we tend to feel agitated. We
tend to feel like we want to move. We
tend to feel like we can't shut down our
thinking and our anticipation of what's
going to happen next. And when
epinephrine levels are very, very low,
we actually have less physical energy.
we tend to have less mental energy in
terms of generating thoughts very
quickly and so on and so forth. Now the
neurom modulator serotonin
creates a number of different states in
the brain and body but for sake of
today's discussion we're going to think
about the predominant states that it
creates and those are states of
contentness being happy feeling fairly
relaxed feeling soothed and to some
extent even some relief from pain or
lack of pain. Serotonin is associated
with a feeling of satiety, of having
enough of what we already have. And
acetylcholine, we can say, is mainly
associated with states of focus. And we
can go a step further and say that it's
mainly associated with steps of focus as
they relate to learning and encoding new
information, so-called neuroplasticity.
So let's say you want to be more
motivated. You want to be more in
pursuit of goals and you want to have
more energy and to be more focused.
There are many ways to go about that. In
fact, there's a near infinite cloud of
opportunities. Everything from
prescription drugs to elicit drugs,
which I certainly do not recommend.
Supplements, nutrition, you can listen
to particular music. You can do all
sorts of cognitive, behavioral,
nutritional supplementation tricks. or
you can just understand that what you're
really after are increases in dopamine
above baseline that you control and
there are ways to control them that are
quite potent and science tells us which
tools are going to be the most potent
and the most versatile for you. So, I'm
going to share those tools with you now
with the caveat that each one of those
tools could be its own entire podcast
episode and that we've done near entire
episodes on each of these tools or small
collections of these tools. So, I'm
going to cover these in somewhat
superficial manner. Let's say you want
to increase dopamine for sake of
increasing motivation.
The first thing to do is to understand
what the natural behavioral tools are
for increasing dopamine and to do those
as consistently as possible. Again,
these are tools that you'll want to do
nearly every day, if not every day. And
I know I'm sounding like a broken record
on this one, but here again, we come to
sunlight. And I should say, not just the
desire to, but really the need for
viewing the maximum amount of sunlight
that one can reasonably get given
schedules and locations in the world,
time of year, etc. in the early part of
the day.
Within the first hour of waking ideally,
but certainly in the first 3 hours of
your day, you going to want to maximize
sunlight exposure to your eyes. Never
look at the sun or any other light so
bright that it's painful to look at. And
yes, of course, blinking is fine, but
no, take sunglasses off, go outside once
the sun is out, and get some natural
light in your eyes. So if you get
sunlight exposure to your eyes and it
does have to be to your eyes in the
early part of the day, you increase the
amount of dopamine receptor that you
have which allows whatever circulating
dopamine happens to be there to have a
greater effect on motivation and I
should say also on mood and feelings of
being in pursuit and generally in
craving and pursuit of things in life.
Now there's another way to increase the
effect of whatever dopamine happens to
be circulating in your brain and body
and this again relates to increasing the
number or the efficacy of the receptors
for dopamine. How do you do that? Well,
turns out that regular ingestion of
caffeine at safe and appropriate levels
of about 100 to 250 milligrams is going
to increase the number of D2 and D3
dopamine receptors. When you drink
caffeine, it's going to increase your
levels of adrenaline and so-called
epinephrine, which will increase your
energy levels. It's going to decrease
levels of something called adenosine,
which builds up while you're sleepy.
It's going to make you feel less sleepy,
more alert, more energetic. That's sort
of obvious, but what's less obvious is
that it's increasing the number and
efficacy of dopamine receptors, so that
whatever dopamine happens to be around
in your system is going to have more of
a potent effect. So these are ways of
modulating more or less the baseline of
dopamine that you are able to produce
and the ways that dopamine can have its
action by way of binding to receptors
more potently.
Now there are other ways to increase
dopamine in a more acute or directed
way. Ways to spike your dopamine to
enhance your state of motivation, mood,
focus, and so on. If you're somebody who
has or is taking drugs for depression or
mania, please be very cautious about
manipulating your dopamine. In any case,
I don't just say that to protect us. I
say that to protect you. But if we were
to look at the supplement landscape and
ask which supplements increase dopamine,
there are a vast number of them. But the
three main ones, the most effective ones
that are readily available out there
without a prescription are mucuna
purines. This is actually the outside of
a velvety bean that has been extracted
and put into a supplement. Mchuna
purines is actual L-dopa. It's 99%
L-dopa which is a prescription drug that
is given for Parkinson's and for other
purposes where increasing dopamine is
important. I don't recommend mucuna
purines. I'm not saying that no one
should take it, but I don't take it and
I don't recommend it because it tends to
so potently and acutely increase
dopamine that there's a pretty
substantial crash afterwards. The other
two supplements that can increase
dopamine in a short-term way, but in a
significant way are elyroine. So, you
can buy that as a supplemented amino
acid. People vary tremendously in their
sensitivity to supplementing elyrocine.
I know people that can take two grams. I
know people that can barely take a 100
milligrams. I know people that the best
dose for them is zero milligrams. So,
there's a lot of variation there
depending on sensitivity and their
natural baseline levels of dopamine and
whether or not they're doing a lot of
other things to support dopamine. But,
nonetheless, taking elyroine will lead
to fairly substantial increases in
dopamine within about 15 to 45 minutes
and it lasts for about 30 minutes to two
hours and then there's kind of a
tapering off. Some people experience a
little bit of an emotional or andor I
should say energetic crash. Some people
don't. And then the other supplement
that I certainly use and that I know a
number of other people use is more fast
acting but more potent which is
phenylthylamine.
This relates to the so-called PA
molecule Pa
and phenylthylamine increases dopamine
and some metabolites related to dopamine
in ways that really increase energy and
feelings of well-being and motivation.
And again, it's fast acting. So my
particular protocol, the one I use is
I'll take phenylthylamine at dosages of
about 300 to 600 milligrams along with
some elyroine or I'll take it on its own
with a molecule or I should say a
compound that we'll talk about a little
bit later as it relates to acetyloline
alpha GPC. But tyrrosine and
phenolthylamine taken alone or together
will make you feel more motivated and
more alert, more willing and able to
lean into particular motivated
behaviors, whether or not they're
physical or cognitive. But leaving that
aside, there are certain behavioral
protocols that are unrelated to your
overall goals and motivations that can
increase dopamine in a very sustained
way. And without question, the most
potent behavioral tool for doing that is
going to be deliberate cold exposure.
Deliberate cold exposure has been talked
about a lot here and elsewhere in terms
of its ability to do things like reduce
inflammation as a way to test and
improve resilience because uncomfortable
cold uh provided it's applied safely is
a great way to learn to be more
resilient because you're essentially
staying or forcing yourself to stay in a
circumstance where your system is
flooded with adrenaline. As I mentioned
before, dopamine tends to collaborate
with epinephrine and vice versa. Many
people will ask which protocols to
follow. Please see the episode on the
use of deliberate cold for health and
performance. You'll find that
hubbermanlab.com. So the use of cold
water for increasing dopamine is a real
tool. It's I would say a power tool. I
want to just briefly return to the fact
however that all of that is riding on
that phase one phase 2 background.
meaning it's probably going to take less
cold water exposure or I should say less
time doing cold water exposure early in
the day to get a big increase in
dopamine than it would later in the day
because later in the day your baseline
levels of dopamine are lower and you've
got more serotonin circulating.
That should make sense to you now as to
why that's the case. And does that mean
that you should really modify your
protocols dramatically? Probably not.
But you might keep that in mind that if
for instance you need to be in a highly
motivated focused state in the late part
of the day for whatever reason, it might
take a few or more of these tools in
combination in order to accomplish that.
Whereas if you're somebody who feels
pretty good during the day, but you're
kind of lacking motivation, you want to
increase dopamine levels and you don't
yet need to or want to resort to
prescription drugs or supplementation,
well then you might layer in a couple
behavioral protocols, paying attention
to, of course, the things that you might
be doing that would also potentially
suppress dopamine. So again, that kit of
tools is designed for you to play with.
If you choose, if it's safe for you to
apply them, then do that. Consider doing
them individually, not trying to hit all
the tools all at once, right? I mean,
why throw all those tools at your
dopamine system at once. Better would be
to have those tools in your kit and be
able to deploy them depending on whether
or not you're on travel, whether or not
you're eating well or less well, whether
or not you're sleeping well or less
well. That's highly individual. And I
like to think that in having those tools
in hand, you'll be able to adjust them
and apply them in the ways that allow
you to access the dopamine increases
that you're after. So next, I'd like to
talk about epinephrine, also called
adrenaline. I want to point out that
epinephrine is released both in the
brain and the body. In fact, there's a
barrier between brain and body that
prevents the epinephrine that's released
from your adrenal glands from crossing
the bloodb brain barrier. So your brain
has a separate site called the locus
ceruius. This is a collection of neurons
in the back of the brain that kind of
sprinkler the rest of the brain with
epinephrine
and essentially wakes up whatever neural
circuits happen to see or I should say
uh wake up any circuits where that
epinephrine happens to arrive right and
generally increase the excitability of
those networks. That's why we say
epinephrine increases energy. I'm not
talking about caloric energy, although
that's distantly related to this, but
really energy and the desire to move.
For many people, increasing adrenaline
or epinephrine might seem like a crazy
idea. Most people probably associate
this molecule with stress and they would
like to be less stressed. But there are
people, including me, that want to
increase our levels of epinephrine, at
least early in the day. I'm somebody who
wakes up rather slowly. In fact, I tend
to be kind of thinking about thinking
about maybe being in action early in the
day. But I try and push myself to get
into action which itself can increase
epinephrine. I should mention that any
physical activity, any physical
activity, walking, running,
weightlifting, swimming, even talking
for that matter is going to increase
levels of epinephrine. Locus ceruius is
a brain structure that is tightly
coupled with behaviors in a birectional
way. That is when you are in action you
increase the amount of epinephrine
released from locus rule you wake up the
brain and conversely when locus ceruius
is active the brain wakes up. So it's
reciprocal it goes both directions. So
keep that in mind. Exercise does indeed
give you energy. It burns caloric energy
but it gives you neural energy by way of
increasing epinephrine transmission from
locus ceruius. So we have exercise and
we have caffeine as potent tools for
increasing epinephrine and thereby
energy. Another potent tool that's
purely behavioral but is known to work
based on excellent studies in humans is
so-called cyclic hyperventilation. Some
of you may be familiar with Wimhof
breathing. There's also tumo breathing
which is very similar. Kundalini
breathing. All of those styles of
breathing involve cyclic
hyperventilation, deep inhales and
either passive exhales or active
exhales, but repeating inhale, exhale,
inhale, exhale in a very deep and
repetitive way. If you did that for 25
repetitions, 25 inhales and exhales, you
would feel more alert. You'd also feel
more warm. Why? Because you've increased
epinephrine adrenaline release in the
brain and body. It works the first time
and it works every time to increase
epinephrine and thereby energy. If you
do that over and over, you're going to
be very alert. You're going to have more
energy. You're going to feel like you
want to move around a lot more. In fact,
you might even feel agitated. So, people
with a lot of anxiety or prone to panic
attack might want to be cautious in how
they train and embark on that type of
breathing. Might want to approach it a
little more carefully or avoid it
altogether. But for most people, cyclic
hyperventilation is simply going to get
you more energized and feeling like you
want to move, feeling like you can think
more clearly, and you will be more
wideeyed and alert because you are
releasing adrenaline. And the cold water
exposure protocol that I talked about
earlier and that's covered in our
episode on cold and in the newsletter on
cold. Well, that as I mentioned earlier
potently increases dopamine, but also
epinephrine. Now, we can't really say
that there are foods to increase
epinephrine. There are of course
prescription drugs that will increase
epinephrine and of course there are all
sorts of so-called beta blockers that
will block the receptors for epinephrine
to make you feel calm for public
speaking or for various heart conditions
etc. That's really the domain of
physicians and should really be worked
out with your cardiologist with a
physician etc. I think the tools of
exercise and should you want very potent
increases in adrenaline, highintensity
exercise, as well as the tools of
caffeine, cyclic hyperventilation, and
deliberate cold exposure really combined
to give you a nice little kit, I would
say a versatile kit of ways to increase
epinephrine for sake of having more
physical and mental energy. So, next is
the neuromodulator acetylcholine. And as
I mentioned earlier, acetylcholine is
associated with states of focus. And
those states of focus can be high energy
states of focus. So the ones that are
accompanied by high levels of dopamine
and epinephrine and where we're really
excited about and really lasered in on
something. or they can be the calmer,
more relaxed states of focus like
reading a book or practicing music or
listening very carefully to somebody in
a way that's relaxed and calm. Now, ways
to increase acetylcholine in a potent
way include again nutrition and
supplementation. It is important to have
baseline levels of acetylcholine be
sufficiently high as well. And for that,
the ideal situation is to regularly
ingest foods that provide enough of the
precursors for acetylcholine to be made.
Eggs contain a lot of choline. Beef
contains choline. Soybeans contain
choline. So there are vegan or non-meat
sources. Chicken, fish, mushrooms,
kidney, beans, these sorts of things
contain a lot of choline. And there are
other vegetables that contain choline.
So depending on your dietary preferences
and needs, you can um select certain
foods uh to ingest to get enough choline
to synthesize enough baseline
acetylcholine.
In the realm of supplementation, there
are some excellent tools for increasing
acetylcholine in the acute short term,
meaning over the course of about 30
minutes out to about 2 hours or maybe
even four hours. The most common of
those molecules is actually nicotine.
Nicotinic acetyloline receptors are
abundant throughout the body and brain.
They're in various brain circuits. They
are on muscle. And yes, smoking nicotine
either by vaping or cigarette will
activate those nicotinic receptors. But
of course, smoking is a terrible thing.
It will also activate things like lung
cancer. So, I definitely don't recommend
that. It also activates addiction
because of the ways that it triggers
activation of the dopamine circuits.
However, some people will chew nicarette
or other nicotine type gums. Some people
are very sensitive to ingested nicotine.
Some people take it and feel absolutely
terrible. But some people do use them as
cognitive enhancers. Supplements that I
have used and do use for increasing
acetylcholine
are things like alphagpc
or hooperine. AlphaGPC
is in the choline pathway such that more
acetylcholine is synthesized after you
ingest it. That's the general logic or
framework of how it works. Whereas
hooperine is mainly in the enzyatic
pathway. It tends to adjust how much
acetylcholine is broken down and lead to
net increases in acetylcholine. I will
often take 300 milligrams of alpha GPC
prior to workouts or prior to cognitive
work bouts. I tend to take it alongside
caffeine and phenyl ethylamine. So I
take that in combination either before
workouts or workouts. Really sharpens my
focus and again I'm doing that three
maybe four times per week. And I'm
careful to do that in the early part of
the day so that it does not disrupt my
sleep. So let's discuss serotonin.
Serotonin as I mentioned earlier is
associated with brain and body states of
well-being, of comfort, of satiety. And
therefore, it should come as no surprise
that a lot of the prescription drug
treatments for things like depression
involve increasing levels of serotonin
in the brain and body. That said,
anytime you talk about prescription
drugs for serotonin, we also want to
acknowledge that there are often side
effects associated with increasing
serotonin. In particular, if serotonin
levels go too high, that is if the
dosages of those treatments go too high.
People will, for instance, feel reduced
appetite, reduced libido, increased
lethargy, etc. And there's a so-called
serotonurgic syndrome. That said, there
are behavioral tools, nutritional tools,
and supplementation tools that can tap
into the serotonin system. Not to the
same degree in potency, but nonetheless,
in ways that can still impact our
feelings of well-being in positive ways.
What sorts of things? Well, for
instance, physical contact, things like
holding hands, believe it or not, hugs,
cuddling, etc., can increase serotonin
transmission and they make people feel
good. This shouldn't really come as a
surprise. There's also gratitude and we
did an entire episode about gratitude.
There's a lot of misunderstanding about
gratitude. Turns out, first of all, that
receiving, not giving gratitude is what
has the most potent effects on
increasing serotonin and activity of the
brain circuits that involve serotonin
and that lead to increases in feelings
of well-being. This is interesting.
receiving much more than giving
gratitude is what activates those
serotonin pathways. The other thing
about gratitude that's somewhat
counterintuitive is that observing
others giving and receiving gratitude is
immensely powerful for evoking serotonin
and the activity of serotonergic
circuits in you the observer. So
receiving and observing gratitude turns
out to be the most potent way to
increase serotonin in the brain and
body. Now, what about nutritional
approaches to increasing serotonin?
Well, just as we have tyrrosine as an
amino acid precursor upstream of
dopamine synthesis,
we have the amino acid tryptophan, which
is upstream of serotonin synthesis. And
one simply has to go online and put in
tryptophan containing foods and you will
discover that there are a lot of foods
that are enriched in tryptophan that can
lead to net increases in the amount of
serotonin available in the brain and
body. Now one molecule that I've found
to be particularly interesting and
useful and this is one that I haven't
talked about yet on this podcast is
inositol in particular myoininoitol.
Myioininoitol can have the effect of
increasing serotonin and other
neurochemicals but primarily at least in
terms of the neurom modulators discussed
today serotonin. I've been taking 900
milligrams of myioinostol
every third night or so as a test of its
ability to improve sleep. And I have to
say the depth and quality of sleep that
I've been obtaining on myositol is
pretty remarkable. And of course, I
should mention that no supplement,
either added or withdrawn from your
protocol, should ever be used as a
direct replacement for prescription drug
treatments that your physician has given
you. You should always talk to your
physician anytime you remove or add
something to your drug protocol or
prescription protocol. Of course, again,
this is a general theme of all four of
these neurom modulators, dopamine,
epinephrine, acetylon, and serotonin.
You want to make sure that you have
sufficient baseline levels of those
things through things like diet, regular
behaviors, and then you have the
opportunity to use supplementation and
if it's appropriate for you,
prescription drugs, and certain
behavioral protocols to try and get
these potent increases, these acute
increases in whichever the neurom
modulators you happen to want to
leverage for your particular goals. So
that brings us to the end of at least
this exploration of the neurom
modulators, dopamine, epinephrine,
acetyloline, and serotonin. Whether or
not you're using nutritional tools or
supplementation or prescription drugs or
any other sort of protocol to try and
create a desired effect of focus or
energy, motivation, relaxation,
you are playing with the same
neurochemical ingredients. So what I'm
hoping is that rather than decide that
any one tool is the most useful or that
any one neurochemical is most useful for
that matter that the information that
I've provided today allows you a kit of
versatile tools that allows you to
figure out what levels of dopamine and
augmentation of dopamine are appropriate
and necessary for you. what levels of
acetylcholine and tools for manipulating
acetylcholine are going to be most
useful for you and so on and so forth.
So, I'd like to thank you once again for
joining me today in our discussion about
these incredibly powerful molecules we
call neurom modulators and the things we
can do and take in order to control them
so that we can enhance our mental
health, physical health, and
performance. And last, but certainly not
least, thank you for your interest in
science.
>> [music]