Boost Your Energy & Immune System with Cortisol & Adrenaline | Huberman Lab Essentials
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In this episode of Huberman Lab Essentials, Professor Andrew Huberman explains how two specific hormones—cortisol and epinephrine (also known as adrenaline)—are fundamental to regulating energy levels and immune system function rather than being purely negative "stress" chemicals. Cortisol is a steroid hormone derived from cholesterol that acts as an energetic signal prompting movement and alertness, while epinephrine triggers the sympathetic nervous system's fight-or-flight response by increasing heart rate and blood flow to vital organs. Huberman emphasizes that these hormones are not inherently bad; they become detrimental only when misregulated or chronically elevated for extended periods. Conversely, brief spikes in cortisol and epinephrine can significantly boost immunity, memory formation, neuroplasticity, and the body's ability to fight infections like E. coli. To optimize energy throughout the day, Huberman outlines a specific protocol involving morning sunlight exposure within 30 minutes of waking up. This practice is crucial for timing the natural rise in cortisol that stimulates movement from sleep to activity. The intensity of light matters significantly; on sunny days with no cloud cover, one should get outside for about ten minutes, whereas overcast conditions may require thirty minutes to achieve sufficient brightness (measured in Lux) to trigger an appropriate hormonal response. Artificial lights and phone screens are insufficient for this purpose because they lack the necessary intensity compared to natural sunlight. By aligning cortisol release with early morning light, individuals can establish a baseline of energy that improves focus and learning capabilities throughout the day without relying on artificial stimulants like caffeine immediately upon waking. Huberman further details how deliberate practices such as cold exposure (ice baths or showers), Wim Hof breathing techniques, high-intensity interval training, and weightlifting serve as tools to intentionally increase adrenaline levels while maintaining mental calmness. The physiological mechanism involves releasing epinephrine from the adrenal glands in response to physical stressors like cold water, which increases alertness without necessarily flooding the brain with excessive anxiety signals if managed correctly. A key study cited by Huberman demonstrated that subjects who engaged in breathing protocols or other methods to activate the sympathetic nervous system before exposure to E. coli experienced greatly attenuated symptoms such as fever and vomiting compared to those who did not. This suggests that learning to turn on adrenaline systems voluntarily can enhance immune resistance, provided these practices are done consistently rather than sporadically, allowing the body to build resilience against chronic stress responses. However, the episode warns of the dangers associated with chronic elevation of cortisol and epinephrine, which disrupts normal feedback loops between the brain, pituitary gland, and adrenals. When stress persists for more than four to seven days, the system can shift from a protective negative feedback loop to a destructive positive one where high hormone levels trigger further release rather than shutting down production. This chronic state leads to increased cravings for sugar and fat, potential metabolic issues like type 2 diabetes, hair graying due to melanocyte depletion in stem cells, and overall immune suppression. To counteract these effects, Huberman recommends maintaining consistent schedules for sleep, feeding, exercise, and light exposure as the most powerful buffers against chronic stress. He also suggests specific supplements such as Ashwagandha, which can reduce cortisol levels by approximately 14% to 28%, and Apigenin found in chamomile tea, which helps calm the nervous system before bedtime. Ultimately, Huberman concludes that individuals should view their relationship with these hormones not as a battle against stress but as an opportunity to learn regulation through behavior and nutrition. The goal is to distinguish between acute stress, which provides energy and immune protection, and chronic stress, which depletes resources and harms health. By adopting practices like intermittent fasting or delaying caffeine intake until after morning light exposure, individuals can bias their system toward healthy levels of neural energy without inducing negative side effects. Huberman encourages listeners to embrace the concept that they are not slaves to these hormones but rather capable of controlling them through deliberate actions, thereby optimizing both mental clarity and physical immunity while avoiding the pitfalls of prolonged agitation or exhaustion.
Read the full video transcript
welcome to hubman Labb Essentials 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 this podcast is separate from
my teaching and research roles at
Stanford it is however part of my desire
and effort to bring zero cost to
Consumer information about science and
science related tools to the general
public today we're going to focus on how
particular hormones influence our energy
levels and our immune system we're going
to talk about the hormones cortisol and
epinephrine also called adrenaline if
you're somebody who has challenges with
sleep or you're somebody who has
challenges getting your energy level up
throughout the day and getting your
energy level down when you want to sleep
today's episode is also for you and we
are going to talk about the immune
system and how to enhance the function
of your immune system I think it's fair
to say that most people would like to
have a lot of energy during the day if
you work during the day and they'd like
their energy to taper off at night and I
think it's fair to say that most people
don't enjoy being sick and it turns out
that the two hormones that dominate
those processes of having enough energy
and having a healthy immune system are
cortisol and epinephrine I just want to
cover a little bit about what cortisol
and epinephrine are where they are
released in the body and brain because
if you can understand understand that
you will understand better how to
control
them first of all cortisol is a steroid
hormone much like estrogen and
testosterone in that it is derived from
cholesterol so understand that
cholesterol is a precursor molecule
meaning it's the substrate from which a
lot of things like testosterone and
estrogen are made please also understand
that cholesterol can be made into
estrogen or testosterone or cortisol and
that cortisol is sort of the competitive
partner to estrogen and testosterone
what this means is no matter how much
cholesterol you're eating or you produce
whether not it's low or it's high if you
are stressed more of that cholesterol is
going to be devoted toward creating
cortisol which is indeed a stress
hormone however the word stress
shouldn't stress you out because you
need cortisol cortisol is vit you don't
want your cortisol levels to be too low
it's very important for immune system
function for memory for not getting
depressed you just don't want your
cortisol levels to be too high and you
don't want them to be elevated even to
normal levels at the wrong time of day
epinephrine or
adrenaline has also been demonized a bit
we think of it as this stress hormone
this thing that makes us anxious fight
or flight the fact of the matter is that
epinephrine is your best friend when it
comes to your immunity when it comes to
protecting you from infection and
epinephrine adrenaline is your best
friend when it comes to remembering
things and learning and activating
neuroplasticity we're going to talk
about that as well once again it's a
question of how much and how long and
the specific timing of release of
cortisol and epinephrine as opposed to
cortisol and adrenaline being good or
bad they're terrific when they're
regulated they are terrible when they're
misregulated and we will give you lots
of tools to regulate them better
cortisol biology 101 in less than 2
minutes your brain makes what we call
releasing hormones and in this case
there's corticotropin releasing hormone
CR is made by neurons in your brain it
causes the pituitary this gland that
sits about an inch in front of the roof
of your mouth and the base of your brain
to release
act act then goes and causes your
adrenals which sit above your kidneys
and your lower back to release cortisol
a so-called stress hormone but I would
like you to think about cortisol not as
a stress hormone but as a hormone of
energy it produces a situation in the
brain and body whereby you want to move
and whereby you don't want to rest and
whereby you don't want to eat at least
at
first epinephrine or adrenaline 101 in
less than 2
minutes when you sense a stressor with
your mind or your body senses a stress
stressor excuse me from a wound or
something of that
sort a signal is sent to neurons that
are in the middle of your body they
called the sympathetic chain ganglia the
name doesn't necessarily matter they
release norepinephrine very quickly it's
almost like a a sprinkler system that
Just Hoses your body with epinephrine
that will increase heart rate will
increase Brea breathing rate it will
also increase the size of vessels and
arteries that are giving blood flow to
your vital organs you also release
adrenaline from your adrenals again s
riding at top your kidneys and you
release it from an area of your brain
called Locus cerus and that creates
alertness in your brain okay so we have
cortisol and we have epinephrine and
their net effect is to increase energy
so the first tool is to make sure that
your highest levels of cortisol are
first thing in the morning when you wake
up one way or another every 24 hours you
will get an increase in cortisol it's to
stimulate movement from being sleep
presumably horizontal to getting up and
starting to move about your day the best
way to stimulate that increasing
cortisol at the appropriate time is that
very soon after waking within 30 minutes
or so after waking get outside view some
sunlight even if it's overcast get
outside view some some sunlight no
sunglasses do that because in the early
part of the day you have the opportunity
to time that cortisol release to the
early part of the day it will will
improve your focus it will impr improve
your energy levels and it will improve
your learning throughout the day so
here's how it works on a sunny day so no
cloud cover provided that the sun is not
yet overhead it's somewhere low in the
sky could have just crossed the horizon
or if you wake up a little bit later it
could be somewhat low in the
Sky basically the intensity of light the
brightness is somewhere around 100,000
Lux Lux is just a measurement of
brightness on a cloudy day it's about
10,000 luxs okay so tenfold reduction
but bright artificial light very bright
artificial light is somewhere around a
thousand
luxs and ordinary room light is
somewhere around 100 to 200 lucks so
even if you have a very bright bulb
sitting right next to you that's not
going to do the job your phone will not
do the job not early in the day to get
the cortisol released at the appropriate
time you need to get outside so let's
just set a couple General parameters if
it's bright outside and no cloud cover
get outside for 10 minutes if it's a
cloudy day dense overcast you're
probably going to need about 30 minutes
if it's light Cloud broken cloud cover
it's probably going to be somewhere
between 10 and 20 minutes this is why
it's vital to get this light on a
regular basis to get that cortisol
released early in the day that sets you
up for optimal levels of energy now
throughout the day you're going to
experience different things most of you
are not spending your entire day trying
to optimize your health you know some of
you might be but most of you have jobs
and you have families and you have
commitments life enters the picture and
provides you stressors those will cause
increases in cortisol and
epinephrine the key is these blips and
cortisol and epinephrine need to be
brief you can't have them so often or
lasting so long that you are in a state
of chronic cortisol elevation or chronic
epinephrine elevation this system of
stress was designed to increase your
alertness and mobilize you towards
things get you frustrated and provide
the opportunity to change Behavior and
the reason it works is that cortisol
when it's released into the bloodstream
it actually can bind to receptors in the
brain it can bind receptors in the
amydala fear centers and threat
detection centers but also areas of the
brain that are involved in learning and
memory and neuroplasticity and this is
why I say that neuroplasticity the
brain's ability to change itself in
response to experience is first
stimulated by attention and focus and
often a low-level state of agitation so
understand that and you won't be quite
so troubled about the little stress
increases that you experience throughout
the day now there are ways to leverage
stress epinephrine and cortisol in ways
that serve you and to do it in a
deliberate way there are also ways to do
that that increase your level of stress
threshold meaning they make it less
likely that epinephrine and cortisol
will be released so I want to talk about
the science of those practices because I
get asked about these practices a lot
things like Wim Hoff breathing which is
also called Tumo breathing things like
ice baths things like high-intensity
interval training
all of those things have
utility the question is how you use them
and how often you use them those tools
just like stress from a life event can
either enhance your immunity or deplete
it that's right those same practices of
ice baths Tumo breathing high-intensity
interval training or training of any
kind can deplete your immune system or
it can improve them excuse me they can
improve it meaning they can improve your
immune system
the key is how often you use them and
when and so I want to review that now in
light of the scientific literature
because in doing that you can build
practices into your daily or maybe every
other day routine that can really help
buffer you against
unhealthy levels of cortisol and
epinephrine meaning cortisol increases
that are much too great or that last
much too long epinephrine increases that
are much too great or that last much too
long let's say somebody tells you
something very troubling or you look at
your phone and you see a text message
that's really upsetting to you that will
cause an immediate increase in
epinephrine adrenaline in your brain and
body and chances are it's going to
increase your levels of cortisol as well
let's say you get into an ice bath or a
cold shower that will cause an
equivalent increase in epinephrine and
cortisol let's say you go out for
high-intensity interval training you
decide you're going to run some Sprints
you do some repeats or you're going to
do some weightlifting in the gym or you
decide that you want to do some hot yoga
you're going to increase your
epinephrine and cortisol levels and
guess what they increase your levels of
energy and alertness so if you're
somebody who struggles with energy and
alertness it can be beneficial provided
you get clearance from your doctor to
have some sort of protocol built into
your day where you deliberately increase
your levels of epinephrine and your
levels of cortisol so it's really
important to understand that the body
doesn't distinguish between a troubling
text message ICE Tumo breathing or
high-intensity interval training or any
other kind of exercise it's all
stress cognitively reframing that and
telling yourself I like this I enjoy it
is not going to change the way that that
molecule impacts your body and brain I
sort of chuckle because people would
love to tell you that all you have to do
is say oh this is good for me no what it
does to tell yourself that it's good for
you or that you enjoy it is it that it
liberates other molecules like dopam
dopamine and serotonin that help buffer
the epinephrine response now the way
that it does that I've talked about
previous episode but I'll just mention
that dopamine is the precursor to
epinephrine epinephrine is made from
dopamine and that's why if you tell
yourself you're enjoying something and
because dopamine is so subjective that
you can in some ways as long as you're
not completely lying to yourself you can
get more epinephrine you get more or
more ability to push through something
and you can sort of reframe it but it's
not really cognitive reframing the
cognitive part is the trigger but the
it's a chemical substance that's
actually occurring there it's dopamine
giving you more
epinephrine a bigger amplitude
epinephrine release and it gives you
some sense of control so here's a
protocol that anyone can use if you want
to increase levels of energy if you
suffer from low energy during the
daytime or whenever it is you'd like to
be alert pick a practice that you can do
fairly consistently maybe every day but
maybe every third day or every fourth
day maybe it's an ice bath or a cold
bath maybe it's a cold shower maybe it's
the cyclic in inhale exhale breathing
protocol I described if that wasn't
clear and people always ask for a demo
I'm not going to do the whole thing
right now but I'm willing to do a few
rounds of this or a few Cycles I should
say so it's
inhale I would do that more deeply more
like
like you do that 25 30 times repeatedly
you will start to feel warm people in
the yoga Community they say you're
generating heat you're not generating
heat you're releasing adrenaline inhale
exhale inhale exhale 25 or 30 times you
will feel agitated and stressed that's
because you're releasing adrenaline in
your body and that's because you're
releasing norepinephrine in your brain
and you'll be more alert so if all these
protocols all these activities are just
equivalent they're just stress then how
do we make them good for us how do we
actually benefit from them now of course
the cold itself can have some health
promoting effects it can increase Brown
fat thermogenesis and Metabolism
high-intensity interval training or
other forms of exercise of course has
cardiovascular effects that can be good
for us as does weight training Etc but
what we're talking about here are ways
to increase energy and to teach our
brain and body to teach ourselves how to
regulate the stress response so in
addition to the benefits of the actual
practices what we're talking about is
building a system so that when you
experience increases in epinephrine and
cortisol from Life events you're able to
better buffer those and we are also
talking about ways that you can increase
energy overall because that's what
today's episode is all about energy in
the immune system there's a biological
mechanism that's very important if you
want to do those things increase energy
and your immune system on demand learn
learn to buffer stress on demand in real
time and it means taking these
protocols these practices whether or not
it's cold water or ice bath or exercise
or any of those and making one small but
very powerful adjustment in how you
perform them but in order to make that
adjustment I can't just tell you the
adjustment I have to tell you the
mechanism so that you know if you're
doing it correctly or not this is really
a case where if you can understand a
little bit of mechanis M you will be far
better off than just adopting
protocols cortisol as I mentioned is
released from the adrenals it can have
action both in the body and in the brain
cortisol can cross the blood brain
barrier epinephrine cannot that's one of
the reasons why it's released both from
the adrenals in your body and released
from this brain stem area the locus
culus in your brain that's a powerful
thing because what it means is that the
body can enter states of Readiness and
alertness while the Mind remains calm so
I'm presuming at this point that you're
getting your morning light to time your
cortisol increase I'm presuming that you
want more energy or that you want to
increase your immune system's function
and its ability to combat infections of
various kinds now the simplest way to
describe how to do that would be in the
context of cold water or a breathing
protocol let's presume cold water so
let's say you decide you're going to
take a cold shower you get into the cold
shower and if it's cold enough that will
be stressful you will experience an
increase in epinephrine it will increase
your alertness now you're using this as
a practice as a tool to build you could
call it resilience but the ability to
stay calm in the mind while being
stressed in the body epinephrine in the
body and you do that by subjectively
trying to calm yourself now you can do
that by telling yourself it's good for
you by emphasizing your exhales anything
that you can do to try and stay calm
despite the fact that you are in a
heightened state of alertness you do
this with exercise you could do this
with music pretty much anything that
will give you a really heightened state
of
alertness offers you the opportunity to
try and stay calm in the mind what
you're trying to do at a mechanistic
level is to have adrenaline released
from the adrenals but not have
adrenaline epinephrine released from the
brain stem to the same degree so you're
not just trying to buffer this you're
not trying to say oh this is good for me
this is good for me I'm going to grind
this out you're not trying to grind it
out you're trying to move through this
calmly while maintaining alertness in
the immediate period following that
practice your system your entire brain
and body are different your body is
actually primed to resist infection when
you have high levels of epinephrine in
it for short periods of time so the
scientific study that explored how
increasing adrenaline in the body can
improve immune resistance is grounded in
a well-known phenomenon that increases
in stress actually protect you against
infection in the short term so I want to
look at the classic data first describe
what was done and then I want to talk
about the more recent study which is
immediately actionable there are a
classic set of studies that are really
based mainly on the work of somebody
named Bruce mckuin who was at the
Rockefeller University in New York I'm
not going to go through all the details
of the study but essentially what they
were doing was exposing subjects to some
sort of infection either bacterial or
viral infection and inducing stress
sounds like a double whammy right you'd
think that maybe getting a little
electric foot shock or cold water
exposure or something to increase your
levels of stress and adrenaline would
just make the effects of the infection
worse but no quite the
opposite brief bouts of stress which now
you should be thinking about in terms of
cortisol and epinephrine release we
actually able to increase immune system
function the duration here is really
important because if stress stayed too
high for too long then yes indeed stress
can hinder the immune response but for a
period of about 1 to 4 days it actually
can protect you by way of increasing the
immune response there's a human study
that I definitely want to point out to
you because it it was published more
recently than the mchan work the title
of the paper is voluntary activation of
the sympathetic nervous system that's
the system that causes figh ORF flight
and AKA stress this is Cox Kox at all PN
proceedings of the National Academy of
Sciences 2014 and they incorporate the
ever famous Wim Hoff breathing here's
what they
did they injected people with
eoli and they had groups that either did
the sorts of breathing I've been
described ring that increase adrenaline
release although I should say I don't
think you need that breathing to get
adrenaline release you could do it with
cold exposure you could do it with other
things high-intensity interval training
as well and what they found was that
the response to the ecoli was quite
different in the people that had a
protocol in this case breathing to
increase adrenaline so this is a
remarkable study because what they found
was that The Fever The vomiting all the
negative effects of eoli many of them
and some cases all of them were greatly
attenuated by way of engaging the
adrenaline system the point is you can
control your immune system by finding a
way that you can increase adrenaline and
this runs counter to what we always hear
which is don't get too stressed or you
will get sick learn to control
adrenaline turn it on and turn it off
learn to control cortisol turn it on
with light in the morning try and turn
it off and then when it spikes because
of Life events learn to turn it off
learning to turn on and off
adrenaline AKA epinephrine and learning
to turn on and off
cortisol affords you the ability to turn
on energy and focus and your immune
system that's the most important point
from today's podcast and understanding
that it doesn't matter what protocol you
use maybe it's a cup of coffee and
running up a Hill five or six times that
will improve your immune system function
if you get adrenaline in your system you
can use a ice bath you can use a cold
bath it really doesn't matter so up
until now we've been talking about
increasing energy and increasing the
immune system by way of cortisol and
epinephrine but I'd be totally remiss if
I didn't cover how cortisol and
epinephrine if chronically elevated or
if elevated too high can have a lot of
detrimental effects your immune system
over time will get battered and you
won't be able to fight infection off as
well right you can start laying down the
sort of classic pattern of cortisol
induced body fat why do we seek high fat
Andor high sugar foods when we are
stressed for a while why would that be
and the reason is that the so-call
glucocorticoids of which cortisol is a
glucocorticoid it's caused as we've
mentioned before by releasing hormones
from the brain and AC th from the
pituitary Etc but normally high levels
of glucocorticoid shut off the releasing
hormones in the brain and in the
pituitary they shut down in a so-called
negative feedback loop chronic stress
however stress that lasts more than four
to seven days causes changes in the
feedback loop between the adrenals and
the brain and the pituitary such that
now the brain and the tary respond to
high levels of glucocorticoids cortisol
by releasing more of them it becomes a
positive feedback loop and that's bad
it's a Cascade of stress equals more
stress equals more stress so this is why
it's very important to learn to turn off
the stress response so there's one study
that doin her colleagues did where they
stimulate chronic stress by increasing
corticosterone but
cortisol and they found that subjects
would in increase their consumption of
sugar and fat in fact they would even
eat lard and that led to all sorts of
things like type 2 diabetes um that led
to dysfunction in the adrenal output Etc
and so the real key is to learn to shut
off the stress response and you should
uh watch yourself next time you
experience stress if it's a short-term
bow of stress typically it blocks hunger
if it's a longer bow of stress typically
it triggers hunger in particular for
these so-called Comfort Foods sugary and
fatty foods other bad effects of stress
is that yes indeed stress can make you
go gray pigmentation of hair just like
pigmentation of skin is controlled by
melanocytes well it turns out that
activation of the so-called sympathetic
nervous system which is really just
another name for the system that
liberates adrenaline from the adrenals
and epinephrine in the brain drives
depletion of melanocytes in hair stem
cells so indeed there's a rate of age
that we will undergo based on our
genetics but stress will make us go
great how do I know the difference
between chronic and AC acute stress and
how do I keep chronic stress at Bay once
again getting your light and your
feeding and your exercise and your sleep
on a consistent schedule or consistent
is is going to be the most powerful
thing you can do in order to buffer
yourself against negative effects on
Mental Health and phys physical health
for that matter there are things that
one can take supplements prescription
drugs Etc all supplements of course have
to be checked out for their safety
margins for you because it's going to
differ from person to person you're
responsible for making sure they're safe
for you if you decide to use them one of
the most common ones is
ashwagandha it has a very strong effect
on cortisol itself how strong the
decrease in cortisol noted in humans is
14.5 to 27.9 9% reduction in otherwise
healthy but stressed humans the other
compound that I think deserves attention
is appenine a p i GE n i n appenine
which is what's found in chamomile I
take it before bedtime 50 milligrams the
major source of action is to calm the
nervous system and it does that
primarily by adjusting things like Gaba
and chloride channels but also has a
mild effect in reducing cortisol so
asoag gandha and Aenon together sort of
uh I would consider the most
potent commercial compounds that are in
supplement non-prescription form that
one could use if they were interested in
reducing chronic stress especially late
in the day by way of reducing cortisol
late in the day so you're probably
getting the impression that cortisol and
epinephrine are a bit of a double-edged
sword you want them elevated but not for
too long or too much you don't want them
up for days and days and days but you do
want to have a practice in order to
increase them in the short term
so we should talk about protocols that
can set a foundation of of cortisol and
epinephrine that is headed towards
optimal optimization is always going to
be a series of regular practices that
you do every day so sleeping at certain
times light at specific times food at
specific times certain foods Etc and
that's highly individual but there are
some universals and we've covered a
number of those in the discussion today
meal timing meal schedules has a
profound effect on energy levels and as
I mentioned before the energy I'm
referring to is not glucose energy so
what I'm talking about is neural energy
epinephrine and
cortisol fasting and timing ones eating
are two sides of the same coin when our
blood glucose is low cortisol and
epinephrine are going to go up anytime
we hav't eaten for 4 to 6 hours levels
of epinephrine and cortisol are going to
go up pretty substantially one thing
that many people do to great benefit is
they follow a so-called circadian eating
schedule they eat only when the Sun is
up they stop when the sun is down more
or less the other way to think about
this is they stop eating a couple hours
before sleep and they eat more or less
upon waking assuming that they're waking
up more or less around the time the sun
rises maybe plus or minus 2 hours now
let's say you decide to do what I do
which is I skip breakfast I drink water
I delay my caffeine for 90 minutes to 2
hours and then I drink my caffeine and
then my first meal is typically around
lunchtime 11:30 or 12 so I've got a
cortisol increase I've got my sunlight
in the morning so I'm getting a big
pulse in energy early in the day and yes
there's a little bit of agitation I am
hungry sometimes early in the day
sometimes no but my grillin system is
used to kicking in right around noon at
the point where I eat as long as I don't
eat
carbohydrate in my case I know that my
epinephrine levels are going to stay
stay pretty high so for me it's usually
meat and salad or something of that sort
or fish and salad so fasting is a tool
for many reasons can increase growth
hormone Etc but today I'm talking about
fasting as a tool to bias your system
toward more epinephrine adrenaline
release and toward more cortisol release
but still low enough that it's not
chronic stress that it's not causing
negative health effects one has to learn
how to regulate these hormones with
behavior with nutrition perhaps with
supplementation I also want to mention
again that I think there's great benefit
to having a practice that perhaps you do
every other day but if you can't maybe
every third day or every other day of
deliberately increasing your adrenaline
in your body while learning to stay calm
in the mind so that you learn to
separate the brain body experience the
idea is to stay calm in your mind so
that then you can regulate your action
so once again we've covered a ton of
material I hope right now you're
thinking okay am I in a state of chronic
stress am I under activated or could I
afford to increase my levels of
adrenaline cortisol to improve my
relationship to my immune system and to
energy neural energy and I hope that
you'll think about some of the ways in
which cortisol and adrenaline are not
good or bad that stress isn't good or
bad but short-term stress is healthy
alertness and energy is healthy even if
it puts you at the edge of agitation
that's an opportunity to learn how to
control these hormones better and I hope
hope that if you're in a state of
chronic stress that you'll do things to
start tamping down some of that stress
and that you realize that your nervous
system and your hormone system are
linked but they're linked in ways that
you can control that we don't have to be
slaves to our hormones and certainly not
the hormones that cause us stress we can
learn to control those both to the
benefit of our body and benefit of mind
thank you for joining me for what I hope
was an informative discussion and an
actionable discussion about how to
increase energy and the immune system by
way of cortisol and adrenaline
epinephrine I really appreciate your
willingness to learn new topics as well
as to embrace and think about new tools
and whether or not they're right for you
and as always thank you for your
interest in science
[Music]