FoundMyFitness - #065 Dr. Satchin Panda on Circadian Insights into Exercise Timing, Melatonin Biology, and Peak Cognition
Episode Date: July 5, 2021Dr. Satchin Panda Dr. Satchidananda (Satchin) Panda is a professor in the Regulatory Biology Laboratory at the Salk Institute for Biological Studies. Dr. Panda's work focuses on chronobiology, the s...tudy of the day-night cycles that drive the multifaceted activities of the human body, using genetic, genomic, and biochemical approaches. He is an expert on circadian rhythms and a pioneer in the field of time-restricted eating. A priority for Dr. Panda when designing his studies is to identify strategies that positively impact public health. In this episode, Dr. Panda and I discuss... 00:00:00 - Introduction 00:04:29 - How circadian rhythms influence human health 00:12:30 - Seeking bright light in the morning and avoiding it in the evening improves sleep 00:20:40 - Supplemental melatonin may counteract evening bright light exposure 00:26:16 - The relationship between melatonin and insulin secretion 00:33:15 - Shift work, jet lag, and modern life contribute to circadian dysfunction 00:45:10 - Naps might aid with afternoon sleepiness and sleep loss 00:47:05 - Indoor lighting can be used to promote healthy circadian rhythms 00:51:20 - Time-restricted eating strengthens circadian biology 01:02:13 - Dr. Panda's ongoing study uses a smartphone app to track diet 01:03:41 - Most people are unaware of their eating patterns 01:07:58 - How Dr. Panda incorporates his research findings into his own life 01:16:21 - Our circadian rhythms dictate when we should exercise If you're interested in learning more, you can read the full show notes here: https://www.foundmyfitness.com/episodes/satchin-panda-3 Join over 300,000 people and get the latest distilled information on circadian insights straight to your inbox weekly: https://www.foundmyfitness.com/newsletter Become a FoundMyFitness premium member to get access to exclusive episodes, emails, live Q+A's with Rhonda and more: https://www.foundmyfitness.com/crowdsponsor
Transcript
Discussion (0)
Hello, my friends. I'm so excited to share a new interview with Dr. Sotchen Panda with you.
Many of you know who Dr. Panda is already. But for those of you who do not, Dr. Sotchen Panda is a professor
in the Regulatory Biology Laboratory at the Salk Institute for Biological Studies. He is an expert on
circadian rhythms and the pioneer in the field of time-restricted eating. Today's interview is a recording
from a clubhouse conversation Dr. Panda and I had in April of 2021. He has such a wonderful wealth of
on circadian rhythms, and he shares that knowledge with us. The circadian rhythm, which many of us
don't ever think about, is something that's deep. It's in our tissues. It's in our DNA. It's shaped
and molded by the forces of nature over evolutionary time. It's conserved across species,
an alignment to the day and to the night, to the rotation of the earth around the sun.
Sochan is part of that story. We anchor every day to this circadian rhythm through this blue light exposure.
But how do we do that? Dr. Panda's role in understanding that earlier in his career was in
discovering along with his collaborators the very pigment melanopsin that allows us to align to
the rhythm of our very own solar system. But circadian rhythms are so much more than just sleep
and wakefulness. Many different stimuli converge and if they do so in a properly coordinated fashion,
we benefit and have health. If they do not, we suffer the consequences. Disaster. Dr. Panda's
lab discovered another signal that regulates the circadian rhythm and organs involved in metabolism,
such as the liver. That stimulus is food. Food resets the circadian clocks in the liver,
stomach, intestines, and other organs. Metabolism is optimal during a certain time window,
a finding that set the stage for the discovery of time-restricted feeding or time-restricted eating,
as it's known. That was made in Sauchin's lab. I've done three episodes with Dr. Panda and with good
reason. He is one of my favorite scientists on the planet. The research coming from his lab has had
and continues to have such a profound effect on public health. In this episode, Dr. Panda and I discuss
how circadian rhythms influence human health. How seeking bright light in the morning and
avoiding it in the evening can help us sleep better. How the ability of supplemental melatonin
to counteract evening bright light exposure varies. How understanding the relationship between
melatonin and insulin secretion might help us decide when to eat. How shift work, jet lag,
and modern lifestyles contribute to altered circadian rhythms and metabolic dysfunction.
How naps might aid with the afternoon sleepiness and sleep loss. How we can tailor our indoor
lighting environment to promote healthy circadian rhythms. How time restricted eating,
eating within a narrow time range, can be beneficial. How Dr. Panda's ongoing study uses a smartphone
app to track when people eat, how most people are unaware of their eating patterns, how Dr. Panda
incorporates his research findings into his own life, how circadian rhythms dictate when we should
exercise, and how caffeine provides a workaround, and lots more. A couple of quick reminders
before we get to the podcast. Please make sure you are subscribed to the podcast so you don't
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If you need qualified medical advice, please seek it out.
Now, let's get into it.
Those of you that don't know who Dr. Sotchen Panda is, I've done a couple of podcast episodes with him over the past few years.
He's a pioneer in time-restricted eating and also an expert on circadian rhythms.
If you don't know what either of those things are, don't worry, we're going to get into those shortly.
We'll talk all about optimizing circadian rhythms and sleep and time-restricted eating and how time-restricted eating relates to circadian rhythms.
and just a lot of really cool stuff.
So maybe we should go ahead and get started.
And again, as Sachin mentioned, he's a professor at the Salk Institute and runs a phenomenal
laboratory there where he is publishing extremely high impact studies and that really,
you know, have a major impact on public health.
So maybe we can start chatting a little bit about the world of chronobiology and circadian rhythm.
I mean, many people listening to this conversation may have a job.
general sense of what a circadian rhythm is, but a lot of people have never heard of it. So
maybe you can sort of explain what it is, such, and why they're important. Yeah, so just imagine
if you have to do a lot of different things in a day, you just can't do them at random. So that's
why you come up with a calendar and put what time you want to do certain things so that you are
more productive. So similarly, our body does a trillion different tasks in a given day. For example,
there are dozens of hormones, there are many digestive juices, then there are brain chemicals,
there are genes that have to turn on and off. So that's why our body also has a daily
timetable that repeats itself every single day. So that's why the term circadian rhythm,
circadian literally means approximately a day and rhythm is rhythm. So this is a timetable that
repeats every single day. So what it means is the first thing that comes to your mind is sleeping
because sleeping is a big chunk of time that our body debuts to at a specific time of the night.
So similarly, almost every organ in our body, whether it's liver, kidney, heart, or even your
skin, or even your hair follicle has to do certain tasks. So that means every single organ,
And every single cell has its own daily time-tipple or circadian rhythms.
What's so interesting is that everything from, like you said, you know, every organ in your body has a circadian rhythm.
And I find it like when you think about when you're, a lot of people are interested in when their optimal peak cognitive performance, you know, occurs.
A lot of people take neutropids or they'll drink caffeine or, you know, do a variety of things to try to improve their cognitive performance.
but even time of day actually is important for that, right?
Yeah, so just like the brain has to sleep for certain hours at night,
it also has a narrow window in the first half of the day
when it has the best cognitive ability, problem-solving ability.
And maybe that's why Rhonda, you just scheduled a call at this time of the day
in the morning.
And what happens is when we don't sleep enough,
then a brain is foggy and we just can't think clearly and people think that by drinking a cup of coffee
we can start thinking clearly, which is actually not true. Caffeine just wakes up our brain,
but it doesn't make us to think clearly. And those experiments have been done extensively.
So we have to still respect the number of hours we sleep the previous night to be fully awake
and to be fully functional.
And what about the time of day in terms of like when neurotransmitters are being produced?
Like, is there a circadian rhythm to that as well?
Yeah, almost every neurotransmitter has a circadian rhythm.
When I say every neurotransmitter, it's not only the neurotransmitter, it may be the receptor
that receives the signal from neurotransmitter or the system that recycles the neurosransmitter.
any one of them can have a circadian rhythm. So that means at a certain time of the day,
we are more prone to feel happier. At a certain time of the day, we may be more prone to
feel a little sad. Those things are ingrained in our circadian rhythms.
Some people are natural early risers and, you know, other people's people are night owls.
Like for me, like I'm a pretty normal riser. I mean, like I guess ever since I had children,
I started to wake up earlier than usual, but I usually am up around 7 a.m.
And I find that my peak mental performance is sort of late morning-ish, you know, like around 10.
I start to, I feel like I'm the most mentally alert.
But what about, you know, people that are naturally early risers or people that are night owls?
And so they wake up much later in the day.
Is it a good idea for them to force themselves to wake up early or?
Well, one thing is irrespective of what?
you are alder-riderizer or late riser, what matters much more important is how many hours
you sleep. And many sleep scientists would agree that an adult should sleep around seven hours.
So that means if you're in bed for eight hours, then you'll get approximately seven hours of
restful sleep. So now let's go back to alidizers or night owls. Night towels, there may be
night owls for many different reasons. One, there may be genetically programmed to be night owl,
and that number seems to be extremely low because many people who think they are genetically programmed
to be late-nighter. They turn out to have certain other things, for example, caffeine habit, or
binge-watching movies, or even having some work at home that keeps them awake till late night.
And the challenge for night owlers is although they're night owls, the whole world is programmed to start or your work is more likely to start at 8 a.m.
So that means you have to get up and start your day around 630 or 7 a.m. depending on your commute time.
So the late nighters therefore have a big challenge that if they cannot go to sleep before, say, 1 a.m. in the morning, then they're not getting enough sleep.
And that becomes very challenging for them to function at peak human performance on the following day.
So that way, what might be a potential solution is to figure out whether, to figure out what is the cause of your night owl habit.
A lot of people may or may not pay attention to the idea that a lot of people, we have a cup of coffee or tea in the evening,
late afternoon or when we socialize, we drink caffeinated drinks or even chocolate or hot chocolate
that can keep us awake.
Then the second thing is we also are exposed to a lot of bright light in the evening.
A lot of people I have seen if they take care of the lighting and caffeine, then they become,
quote-unquote, normal.
So that means they can go to sleep, say, between 9.30 and 1130 so that they can get 7.30.
so that they can get seven hours of restful sleep,
and that way they can function normally on the next day.
So that's kind of my long, windy answer to a very simple question,
how night owls can manage their human performance every single day.
You brought up a lot of really important points,
for one, you're talking about avoiding bright light or blue light exposure in the evenings,
and some people may not be familiar with why that is.
So a key driver of the body's circadian rhythms is melatonin,
which, you know, people probably have heard of.
It's a sleepiness hormone, but it rises towards the evening because the blue light, you know, inhibits it.
So can you talk a little bit about maybe that?
And perhaps even the opposite of avoiding bright light in the evening would be actually seeking it out in the morning.
Yeah, so this discovery of melanopsin of the blue light receptor was considered to be one of the top 10 breakthroughs of the year in 2001 when three different labs, including mine, we discovered it.
To give you a context, if you're living in the nature, you don't have access to electrical lighting, then the day length changes between summer and winter.
And accordingly, our sleep and wake-up time also has to change, our circadian rhythm.
has to adjust to this changing day length.
So as a result, our nature has,
we have evolved to have this light sensor,
the specialized type of light sensors.
These are called melanopsin,
or blue light sensing light sensors
that are present in our retina.
These are not necessary for seeing the outside world,
but this light sensors sense blue light.
And why blue light?
because the sunlight is the best source of blue light.
When we say blue, it's around 450 nanometer to 500 nanometer that rains.
So these light sensors in our retina, they actually are slightly different
because they need good dose of blue light.
When I say good dose, that means, for example, in a full moon night,
your regular light sensors can help you find,
way or you can take your walk, but that level of light is not enough to activate melanoxin.
So that means if you stay awake and you are taking a night hike in a full moon night,
it's not going to reset your circadian clock.
Now fast forward a few years, what we understand now is this melanoxin, blue light sensor,
actually sensors light, bright light during the daytime, or blue light from electrical light.
and then tells our master circadian clock and the brain, depending on what time it is,
might say, hey, it may not be evening, it's actually extension of the day.
It's a long summer day, so please stay awake.
Or at the same time, it can also send a signal to this melatonin, which is the sleep hormone,
because when melatonin goes up, we tend to feel sleepy.
it tells melatonin that hey it's not time to go up because it's just a long summer day
so that's the way this blue light sensor in our retina connects to our brain to tell to reset our
clock or to tell when melatonin should rise or fall so now what are the functional consequences
or how we can use this information in everyday life one is since melatonin has to rise a melatonin
correlates very well with how we feel sleepy and how we fall asleep.
It's a good idea to let it rise naturally so that we can fall asleep.
And to let it rise naturally, we have to release the break.
And the break here is blue light.
And that's why dimming down light in the evening is a good idea to release that break
so that melatonin can begin to rise.
And since we know that this is blue,
light, that's the cause of suppressing melatonin, we can also do another thing.
We can change the color of the light.
And based on this science, almost all the cell phones, all laptops now have a night shift
or nightlight feature.
And you can program it to turn it on around 8 or 9 o'clock in the evening when these
screens will dim down and will turn little orange in color.
They may or may not help you to increase your malice.
attorney, but at least they will signal that it's time to wind down and go to bed.
Then, conversely, during daytime, it's very important to get a good dose of bright daylight.
So that means if you are sitting next to a window, large window and having your breakfast,
although you don't have sunlight falling on your eyes, you still get around 1,000 locks of daylight.
And if you have that exposure for half an hour to an hour in the morning, then that's pretty good enough to again put a strong break on melatonin, which might be slowly going down in the morning.
And at the same time, that melanopsin receptor, it does slightly different things during daytime.
It sends a signal to the brain to increase alertness and make us more functional.
so it reduces depression and makes us more happy.
So that way we can use this information that we learn from a very fundamental discovery in neuroscience to our Adventist
by getting at least 30 to 60 minutes of daylight, even sitting next to a large window during the first half of the day,
and dimming down light and maybe switching to yellow or orange-sifted light,
or wearing even blue filtering eyeglasses in the evening to improve our sleep.
So a couple of questions.
One, you mentioned wearing the blue filtering glasses at night,
perhaps to filter out some of the blue light.
What about avoiding sunglasses early in the day to make sure you're activating the melanopsin
receptor and getting that resetting of the circadian clock?
Great question.
because we also have to strike the balance between protecting our eyes and getting enough blue light.
So let's talk about some actual numbers of how much light we experience.
So if you are outside in a sunny day in California or sunny day in any place,
and if you're looking at the sky, not actually not looking at the sun,
you get somewhere between 100,000 to 200,000 locks of light.
It's a very simple calculation.
And if you're inside your car,
and there is no direct sunlight falling on your face or inside your car,
and you're just driving, looking horizontally,
then you're getting somewhere between 5,000 to 10,000 locks of light,
which is similar to standing outside your car,
In a cloudy day, that's also 5,000 to 10,000 locks of light.
So now, in a cloudy day or sitting inside your car, there is not enough UV light to hit your eye and damage your cornea or damage your skin.
So in that case, driving without sunglasses is fine because you are not getting too much UV light exposure.
But if you are in the beach or you are outdoor skiing in a very sunny day and you have a lot of UV exposure,
then it may not be a good idea to abandon your sunglasses.
Interesting because the singlet oxygen produced by blue light can damage the rods.
There is a ton of UV light outside.
And what about on the flip side of that, you know, people actually being exposed to the,
bright light in the evening, oftentimes think, well, I can take a melatonin supplement and,
you know, that should sort of help me increase my melatonin. But is there a difference between
the melatonin produced in the pineal gland versus melatonin being made in your gut, which is
something that is even produced from eating food that contains the amino acid tryptophan, which
could convert it into serotonin in the gut and ultimately into melatonin.
You know, what are your thoughts on supplementing with melatonin maybe regularly or even is there
like an age dependent factor in there?
Yeah, so that's a very tricky question because, you know, melatonin is not regulated in the
U.S., but in other countries it is regulated.
And the reason why it's not regulated in the U.S. is you can feed a lot of melatonin to a mouse
and the mouse will never die.
In the sense, when you give various drugs or chemicals to an animal,
then there is a LD-50 or little dose 50 at which some animals would die.
So based on that, we think that melatonin is safe,
and of course there is not much adverse effect of melatonin shown in any major experiments.
But having said that, we don't know what are the long-term adaptation of her body to melatonin,
you start with a milligram of melatonin and your body will slowly become resistant to that
milligram and will need more and more. But at the same time, people think that melatonin is a
good alternative to slipping pill, which can have more adverse side effect. And maybe that's
one reason why we have seen almost 40% to 60% rise in melatonin use in last couple of years alone.
So coming back to your question about melatonin, the natural melatonin versus supplementing melatonin with a pill,
it's really hard to make those connections because, as you know, melatonin rises in the middle of our sleep.
And there's a kinetic to it.
And it's not easy to detect melatonin.
It's not like a continuous glucose monitor that you can stick to your arm
it will collect melatonin data because melatonin is present in such a low concentration
that it needs more fancy method to detect it.
So that means we have to sample blood in every 30 minutes or an hour when we are sleeping
and then use that in an expensive method to measure melatonin.
And that might be one reason why not much studies have been done
to differentiate between exogenous application or
taking a melatonin pill versus pioneer melatonin.
The second thing is when we take a melatonin pill,
nearly 70 to 90% of it is broken down the liver and kidney within an hour.
So whatever we take, only a small fraction of it stays in our bloodstream during our sleep.
So as a result, melatonin in experimental, like in clinical studies,
has been shown to improve sleep latency.
So that means it can help people to fall asleep.
But it may not be that good in sustaining sleep throughout the night.
At least that's what the clinical studies have shown.
But in some people, they feel that melatonin helps them to stay asleep throughout the night.
And unlike this pill, our endogenous melatonin actually,
rises roughly a couple of hours before our habitual sleep time.
It slowly rises and then it reaches almost its peak up to one hour into our sleep and
maintains that peak throughout the night.
And after we wake up, around that time it begins to decline and it goes down to its
lowest level, maybe two hours after we wake up.
is if you take a pill, it will just spike for 15 minutes to 1 half an hour just after you took
the pill, and then it will come down and slowly continue to go down throughout the night,
and by the morning when you get up, there might be very little, depending on how much
melatonin you took. These days, a lot of people are, and actually there is a shift in the dosing
of melatonin. For example, almost 20 years ago when I was a student, I could find one milligram
melatonin pill.
And it was very difficult to find a 3 milligram pill.
And now it's almost impossible to find a 1 milligram pill in any drugstore.
And the common is around 3 to 5 milligram pill.
So that means when people are taking this 5-mig,
it's possible that they have a very huge spike.
And then when it comes down,
it actually stays at a pretty high level throughout the night
and maybe even 2 to 3 hours after the way.
they still have significant amount of melatonin in their system.
So unfortunately, these are some of the studies that need to be done and have not been
systematically done.
What's interesting about what you just said about them, possibly the melatonin levels being
elevated even, you know, two to three hours after waking up, you have previously said
in another podcast, you've talked about how melatonin actually can, you know,
inhibit the secretion of insulin from the beta cells in the pancreas, the bit eyelid cells
in the pancreas, and that would obviously affect your blood glucose levels. Do you think
avoiding eating food, even like waiting an hour or two before or after you wake up, before
you start to eat, would be something that would be helpful for regulating glucose levels?
Yes, this connection between melatonin and glucose is relatively new because in 2009,
simultaneously four different papers came out from human genetic studies,
showing that people with diabetes or increased fasting blood glucose level have a
polymorphine or mutation in a melatonin receptor gene.
And that was really perplexing because until then, melatonin
was supposed to have its function only on sleep.
And people never thought that it can affect blood glucose.
And then from 2009 till, say, 2015, 16, there are a lot of studies
that started to understand why melatonin affects blood glucose.
And slowly, a much better picture is emerging,
that is melatonin just like it makes a brain to sleep,
it also makes our pancreas to sleep or eyelid cells to sleep.
That means it makes these insulin-producing cells
less responsive to glucose so that they don't produce as much insulin as they should
when we eat something that has carbohydrate or glucose.
So that means that if our melatonin level is high in our system and we eat something,
and blood glucose level goes up, the beta cells can sense that blood glucose,
but they cannot produce or release enough insulin.
Since the function of insulin is to absorb some glucose into muscle cells into many different
types of cells, without that glucose being observed, it stays in our blood system.
so our blood sugar level rises.
And to make it even more complicated,
going back to the discovery of that melatonin receptor variant,
nearly one-third of the population have that variant.
So that means they're more likely to be influenced by this relatively benignly moderate,
the high level of melatonin being in their system
and not being able to control their blood glucose.
So it might be difficult to go get yourself genotyped and figure out whether we are more or less sensitive,
but then the bottom line is there's a consensus that one soon not eat too close to bedtime when our melatonin levels may be high.
And that's when if we eat, then a blood glucose level may remain high.
In fact, this has been experimentally shown almost half a century ago.
in 70s and 80s, there was this talk that evening diabetes.
So that means you go in the morning to a clinic and get a bolus of glucose,
and then after 90 minutes you measure your blood sugar level,
it may come down to normal level,
but the same person, if he or see goes to the clinic in the evening or late night
gets the same bolus of glucose,
and after 90 minutes, they blood glucose may even at a high level,
which would qualify him or her to be diabetic.
So that's, and even now people observe the same effect.
So that means in late night, a body cannot respond to glucose
and produce enough insulin.
And now we are coming to understand, at least part of it,
is due to melatoid.
So now coming back to your question,
Yes, that's why we suspect that people who get up and immediately eat something that has sugar or carbohydrate,
then they may not be able to completely bring down that blood glucose level in the next 60 to 90 minutes.
So that's why it might be a good idea to wait for an hour or two after waking up,
for the nightly melatonin levels to come back to daytime level before you eat.
And conversely, at night also, it's a good idea to not eat or drink anything that has carbohydrate or glucose two hours before bedtime.
What about maybe eating a higher fat meal in the morning as opposed to eating something with more carbohydrates or glucose?
Well, so this is where we have to think numbers.
So, for example, if you drain all of my blood, you'll get 5 liters of blood.
And if my safe blood sugar level is 100 milligram per deciliter,
so that means from that 5 liter of blood, you'll get 5 gram of sugar.
And if you add one more gram of sugar, then my blood sugar level will become 120 milligram
for decilator.
So that's the almost the definition of diabetes.
What it means is if I, in the morning, if I eat even anything that has one gram of sugar,
that's one fifth of a teaspoon.
And my pancreas is not at all functioning and none of the blood sugar is observed by any cell,
then I will have dangerously high level of blood sugar.
So when you think of fat, rich food, except for pure,
fat, I think almost every other food will have some carbohydrate. And that carbohydrate will be more than
a gram of equivalent to one gram of sugar or carb. So that's why we have to be a little bit
careful in recommending what people should be eating because even with that fat or protein-rich
diet, even if you are having a couple of boiled eggs with a toast, that toast has enough
carbohydrate to trigger that needs to be absorbed properly.
Good point. Shifting back to the melatonin and, you know, its role in circadian rhythm, there are a lot of people that are, you know, have altered circadian rhythms because either they are shift workers or perhaps they've traveled into, you know, to another time zone. Can you maybe first kind of just define a little bit and explain why, you know, some people actually may be shift workers without even realizing it?
Yeah, I said that almost all of us are shift workers because the definition of shift work is very, I mean, if you strictly go by what is your shift work, then it's very hard to get a clear definition because some may be working very early in the morning, some may be working, someone may be working late in the evening or some maybe night shift workers.
So that's why the international level organization in some of the European countries, they have come.
up with a working definition of shift work, which means, which essentially translates to a very simple
term, like if you stay awake for two to three hours between 10 p.m. and 5 a.m. for 50 days in a year.
So that is on an average one day in a week, then you may be considered as a shift worker.
Now, if you think about yourself, almost all of us kind of, I think of. I think of. I think of
we go to bed very late or we wake up very early to do something, to take care of someone
or to finish an assignment very frequently.
So that's why I say that all of us may be shift work.
And why this two to three hours?
Because if we delay our sleep by two to three hours at night or we wake up two to three
hours before our usual wake-up time, then when we're awake in this modern days, we're usually
exposed to light or we try to stay awake by eating or drinking some coffee and all of these
events actually try to reset our clock. And it takes almost two days to adjust to a two hours
change in wake-up time or two hours change in sleep time. So that means by
disrupting our sleep-work cycle just for one day, we perturb our circadian rhythm for the next two to
three days. So we are not in our daily habits and not in alignment with our internal clock for those
two to three days. So that means that boils down to 40 to 50 percent of the week. We may be
out of sync, including the day on which we disturb our clock. So that's why we have to keep in mind
what is the definition of this shift work and how we all may be shift workers, because
even if you stay awake for a couple of hours extra to socialize and have a late-night dinner,
you may be living the life of a shift worker.
Is there anything we can do to sort of mitigate the negative effects?
Yeah, I mean, that's just sort of don't.
Well, so that's the thing that, you know, we built this anthropogenic world in the post-industrial
era without knowing the relevance or the significance of the significance of circadian rhythm in our life.
So that's why our personal choices are the way we run off, live in the family, or the way we
socialize, or the way we even pick to do a job, whether it's a night-shaped worker or we just
stay awake late into the night, binge watching or as a professor or teacher correcting grades,
all of these are based on the lack of knowledge of circadian rhythm and how it is important.
So in that way, I always say that we're experiencing what I call the lead and asbestos moment
in human health because until 1970s, we thought that lead and asbestos are safe and we could
use them in any building construction.
So similarly, without knowing the relevance of circadian rhythm, we thought that it's just a momentary
discomfort to stay awake for a couple of nights or to do a shift work or we connected late
night socializing and binge eating with some food hangover that will go away after a day or so.
But now we are realizing that these are serious issues.
So that's why it will take maybe a decade, three or four decades to build, rebuild an anthropogenic
world that actually nurtures our circadian rhythm.
So a few things we can do is if you want to socialize in the weekend, then instead of choosing
to socialize late into the night, try to go for the happy hour.
I mean, the food is cheap and you can finish your dinner early and you can still go back
to sleep at the regular time.
And when it comes to shift work, then we have to keep in mind that we have to extract
careful than people who are doing daytime job.
And we have to stay away from, say, caffeinated drinks
and a lot of alcohol, because shift work combined with alcohol
or too much caffeinated drink is quite toxic to our body.
It disturbs our sleep, wake cycle, and we're actually more
sensitized to be damaged by alcohol if we're doing shift work.
Then we have to choose, judiciously choose what time we eat or sleep and try to be within
that window almost every single day, even on the off days.
It's relatively easy to do that if you're a morning or evening shift worker, but for night
shift worker it's very difficult.
So that may be something that we can even bring up with your employer to see whether you
can be on night shift continuously for several days so that your body adjust to night.
shift and then come back to a few days of off days and this is a method that's used in
many countries where people stay on night shift or 24 hours shift even for several
days in a row and then they come back and take off days for for a week or two so there
are multiple methods but anyways this is it's still a new field of science and
we're still learning how to come up with personal habit
family rituals and societal norms to adjust to or to reduce the incidence of
circadian rhythm disruption and adopt habits that will make us resilient against
circadian rhythm disruption.
I find for myself, as a parent now, I, you know, my sleep is very beholden to what my
child does. And when my child, you know, wakes up, you know, I have to wake up, um, for the most part,
unless, you know, he's, this stays quiet for an hour, which sometimes he does. But, um,
you know, so like when I put my son down for bed, you know, I have an option. I can watch a show that I'm
really into and I've been waiting to see the next episode of. And, uh, in fact, it's a very stimulating
show. So, you know, I find myself, if I watch it, I often want to, as you said, binge watch. I
watch the next episode and just go to bed an hour later, maybe two hours later. And I find that
because I have to wake up, and, you know, people have all sorts of reasons. They have to wake up,
like you mentioned, work and, you know, children. And, you know, also in my case, I don't have
any blinds on my windows in my bedroom. And so I wake up sort of gently when the sun comes out,
which means that if I go to bed later, I will be losing sleep because I wake up at the same time.
pretty much because the lights coming in. So do you think that also just maybe avoiding some of
these stimulating shows like TV shows at night? You know, it's kind of a trade-off because on the one hand,
you're kind of relaxing and you're forgetting all the worries of work and you're kind of
immersing yourself in this other world, you know. But the flip side of that is you're also
probably stimulating yourself more and maybe getting a little bit of blue light from the TV screen
and then going to bed later.
Yeah, so you kind of touched on many, many important issues.
You pointed out how after your son goes to bed, that's the only free time you have.
And that's true.
In fact, the social scientists, they agree that nighttime is the time of free freedom, human expression, human creativity,
because this is when a lot of people who do a job that we don't like
or people who care for other children or people who are not well at home,
they get that free time late in the evening.
And that becomes a challenging issue,
where to draw the boundary between your personal freedom of expression
of enjoyment versus your personal duty to nurture your health.
And if we think about circadian rhythm disruption,
then it entirely boils down to how we manage those three to four hours of freedom time
after everybody, after we have finished doing what we are supposed to do for others,
and we have that personal freedom time.
And that's for a bigger discussion because that involves many different issues.
So coming back to the other side of the story, you said how you don't have blinds in your window,
so you wake up at the same time every single morning.
That would be wonderful if you also have the freedom to go to bed at the same time every single day.
So that's why circadian rhythm disruption, the fact that we are living like shift work,
brings up another necessity that is we have to have complete control over our bedroom.
We should be able to make that bedroom completely dark or inspiringly bright at any given time of the day or night.
So this is where I always tell people that try to design your bedroom or at least have good blinds that will make the room completely dark.
have your plugs handy, an eye mask handy, so that you can at least get those one or two hours of
extra sleep during daytime when it's difficult to fall asleep.
So I guess just how to go to bed and how to wake up itself can be a separate topic for discussion.
Yes, absolutely.
I'm fortunate to have darkness.
There's not any streetlights or anything.
but I think I have blinds on the way because I've realized that just that early morning sun,
like I am missing out somewhat on a little bit of extra sleep I could get early in the morning when that sun is coming up.
But you kind of mentioned something else.
Napping.
Are naps beneficial?
Of course.
And if you are, if you're sleep deprived, then naps.
Napping is a very good way to catch up with the lost sleep.
And in fact, we are designed to be napping
because we humans are not strictly diurnal.
We are crepuscular.
So that means we have more alert in the morning and evening
and little less alert right after lunch.
Our internal sleep pressure actually goes up physiologically
right after lunch.
So we are designed to have maybe 30 minutes to,
an hour of nap.
Interesting.
Do you think part of the reason we are sleepy right after lunch, and you probably know the
answer, but does it have anything to do with like a post-perandial like glucose response or
post-pranile inflammation, or is it totally circadian regulated?
I think it's a combination of both because there is a sleep pressure.
and if we have some food, then the post-prondial change in physiology, in combination of the sleep pressure, make us sleepy.
So as a result, you can fight this of many different ways.
For example, you can have a smaller launch, so you don't have too much disturbance to your physiology,
and you can fight up that post-pandial dip.
or since bright light actually makes us more a lot
than maybe having that lunch outdoor under a canopy
or maybe going for a short walk after lunch,
will keep you awake.
What about offices?
Are there any way we can optimize the light indoors?
Yeah, so there are many new technologies and architectural designs
that those are now coming into picture for office design, the open office design, and having
large windows, those are all part of this new scheme. And the fortunate thing is now glass
manufacturing has come to a point where glass can be both aesthetic as well as load bearing.
So some of the glasses are strong enough that they can even take some of the loads of the building.
So that enables designers to come up with large walls, which are just glass walls, that will allow enough light to seep in.
And then in large offices, having cubicles with enough headspace through which daylight can come through and kind of distribute throughout the large office space is helping to bring daylight at the same time reduce energy build by reducing artificial lighting.
All of these are helping.
Then at nighttime, there's also innovations in office space design.
You can have light layering so that only you can have more personalized light
because you can light up a cubicle or office with LED lights that can be dimmed or patented
up to the occupant's own choice.
So there are a lot of innovations that will actually help.
to optimize this anthropogenic world for circadian rhythms.
And lighting itself is a $27 billion industry.
And for the first time in human history,
we have near complete control over the quality, quantity,
and timing of light that we can have in our workplace or in our home.
So there will be a lot more innovations in this area
where maybe in future we can have this,
we can have our body sensors talking to the building sensors and building control system
to automatically adjust lighting, adjust temperature that will not sure our health.
What about in countries with very little winter daylight?
I mean, is there something like some sort of lights indoors that you can buy to kind of help simulate the daylight?
Yes.
Yes, if you look at many of the lighting, big lighting companies, they're actually from those northern latitudes, because they have been experiment.
I guess they have been experimenting with light for such a long time that they come up with all these innovations.
And the rule of thumb is if you go to buy, purchase a light bulb, then you'll see there are three different flavors of light.
one that looks orange color and it's very much like candlelight or firelight. And that's good
for evening time in your bedroom or wherever you don't like to have too much bright light.
And then there is blue sifted light, which looks very blue, very allotting, super bright, white.
And those are the lights that can help us in wintertime. And many of the cold countries of
northern latitude or extreme southern latitude countries, they have adopted to using light to
uplift their mood. So many of those designs now incorporate both orange-sifted light and blue-sifted
light at different time of the day or in different seasons so that in winter time, you can
have more of the blue-sipped indoor light to improve your mood and alertness.
and even brighter light to improve your mood and allotness.
And conversely, in summertime, when the days are extremely long,
they're also adopting good window blinds, window sheds,
and orange-septed light to simulate evening time
so that they can go to bed and they can get restful night of sleep.
Cool.
Kind of going full circle here, back to the circadian rhythms
and how every organ in your body essentially is on a circadian rhythm,
and including organs that are like your liver that are involved in metabolism.
You mentioned when we were talking about shift workers, you know, people eating within a certain time window.
So time restricted eating.
Most people here in the clubhouse chat probably have heard of time restricted eating.
They're familiar with your work.
But maybe we can kind of just briefly explain what it is and why eating within and more.
narrow window range, you know, your research has shown and others to be beneficial.
Yeah, so time restricted feeding or time treating is something that was, I would say,
discovered in our lab and the term was also coined in our publication. And it has been now
used more loosely in popular culture as intermittent fasting. Intermittent fasting, in fact,
in scientific literature refers to alternate day fasting, two days of fasting in a week
or even periodic fasting where people fast for four or five days in two to three months.
But we didn't want to use the word fasting because fasting usually refers to reducing calories
for one or more days.
Whereas the term time-restriating generally refers to eating within X number of hours,
where the X can be somewhere between 8 to 12 hours.
in experimental models, preclinical models,
and without explicitly reducing calorie,
and that's a big caveat between
calorie restriction or scientific term,
intermittent fasting, and time is treating.
So now, coming back to the science,
why we think it is important,
is if we think of why circadian rhythm is important,
one big thing is,
circadian rhythms actually help us,
help our body to repair and rejuvenate itself.
For example, we always equate human body to a car or an engine,
and we say how we describe how our body works by connecting it to an engine,
but there is a huge difference between a car and our body,
and that refers to you can start a car and take it for a spin at any time of the day or night,
and it will function the same way.
It will go from 0 to 60, if you're writing a Tesla, maybe three and a half seconds or some other cars, maybe five to six seconds.
It doesn't matter whether it's day or night.
But our body doesn't work that way.
If I wake you up in the middle of the night and ask you to do a complex piece of math, you might take an hour,
whereas in the middle of the day, it might take you only 15 minutes.
So there isn't being
The car doesn't have to self-repair itself
We have to send the car to a body shop
Or to a repair shop to repair it once every three to four months
Or tune it up
Whereas our body
Tunes up and repairs itself every single night
And that's why when we misuse our body
We have to send it to the body shop or repair shop
A.k.a. a hospital or emergency room
So that's why you don't want to use your body as a car.
So now, coming back with repair and rejuvenation,
now if you think of sleep as a perfect example,
when we sleep for seven hours or eight hours,
during that seven to eight hours,
our brain is repairing and rejuvenating itself
by taking out the toxic materials,
by strengthening the synaptic connections or connections
between our neurons
and re-synthesizing some of the neurotrots.
transmitters, all this repair and rejuvenism is happening for those seven to eight hours.
So now, just like the brain, every single organ in our body also needs to repair and rejuvenate.
And for that process to work, you don't want to, so just like the brain is unfluged from
all the outside sensory stimulation for this repair to happen.
Similarly, all the cells, all the organs in our body has to be unplugged from outside input.
And one of the outside input that influences almost all of our organs is food, because when
we eat, it changes quickly the levels of many hormones, it even changes the nutrient level,
and all cells in our body have to process, store, breakdown, interconvert, all the molecules
that we get from our food.
So that's why we need to stop eating.
But then the question is, if our brain needs only seven to eight hours of sleep,
why do we need 12 to 16 hours of no food?
And the answer is, when we eat,
it takes at least five hours for our stomach to digest that food.
And after five hours,
then our intestine might take several hours to absorb nutrients,
some of the nutrients and then send them to our liver and other parts of the body.
So that means if you finished your dinner at 6 o'clock in the evening,
then your stomach is still working till 11 p.m. or even later,
so it's not actually getting to sleep or repair or reason it itself.
So that means how many hours you are not eating, you subtract at,
at least five hours from that, that's the number of hours your organs are resting,
repairing or sleeping.
So that's why if we eat for 8 to 10 hours, then we give our organs some rest for 16 to 14 hours,
and that translates to roughly 8 hours of really no digestion, no nutrition, interconversion,
and that's the time our organs are getting to repair and research.
at RezuNet.
So as an experiment, we have done this experiment in mice and fruit flies because we can control
eating there.
When we give mice at libitum access to food, they can eat any time, then they will eat nearly
70 to 85 percent of the food during nighttime when they are awake, 15 to 30 percent
of food during daytime when they typically sleep.
And in this lifestyle, mice will slowly gain weight.
will slowly become diabetic, they will have high plasma fatty acids that will make them prone
to heart diseases and many other bad things will happen.
But if we feed the mice the same number of calories from the same diet source, whether
it's healthy diet or unhealthy diet, if they get to eat all of that food within 8 to 10 hours,
then we can protect them from all these diseases.
and if the mice are already having disease
and we put them in time-restricted feeding
for 8 to 10 hours,
we can reverse those diseases.
We have done a lot of molecular studies now
looking at different organs,
looking at the whole genome sometimes,
hundreds of metabolites,
and we find the molecular mechanisms by which
this time-dustating is triggering
breakdown of toxic metals.
materials, detoxification during the fasting time, better uses of fat, protein, and carbohydrate
during day and night, and improved improvement in metabolism and mitochondia function that
reduces the active oxygen species, all of these good things, and improved autophagy.
All of these things are happening when mice eat within 8 to 10 hours.
And some of these have been now translated to human studies and some of the pilot studies have come in.
The results have come in.
They're very promising and some of the randomized clinical trials ongoing and hopefully we'll get those results from 2021 onwards.
And you've also found that people follow, generally speaking, an eating pattern.
Like if they're not trying to eat, you know, within a certain time window with your Maestercadium,
in-clock app, you found naturally people eat within a longer window than they thought they
would eat in. Is that correct? Yes. So when you started this human mouse studies, then we realized
that we're kind of adding another leg to human nutrition research. That is, we know that the number of
calories and the type of food that we eat have a huge impact on our health. And we just started when we eat
is also important. Then it becomes an important issue to understand when people eat, because we do
have different methods. For example, 24 hours dietary recall to understand how much and what type
of food people ate in the last 24 hours. Similarly, there are methods to measure what diversity
of food people have eaten in the last three months or a year through a tool called food frequency
questionnaire or FEPQ.
But there was no method to really understand when people eat.
We can ask people, when did you eat breakfast, when did you eat lunch, dinner.
But that doesn't give us the correct view because we often ignore the occasional eating
or snacking that we might have done late at night or early in the morning.
And we consider them to be benign and we don't report them.
but as I mentioned, even one gram of sugar can change my blood sugar level.
So we wanted to capture every single eating event that happens.
And from circadian rhythm point of view, even if you ate or drank something that has calories,
maybe two to three hours after your dinner time, just for one day in a week,
that can have an impact on your circadian rhythm for two to three days.
So even if people eat outside their usual dinner time or breakfast time for one or two days in a week, they might ignore it and may not respond to questions.
But if we can capture that, then we objectively know their eating patterns.
So that's why we started this app called MyCedian Clock.
People anywhere in the world can go to the website, sign up for the study.
It's a academic study.
There is no commercial interest here.
they share that data with us.
What we found is nearly 50% of adults have an eating window of 15 hours or longer.
So that means in a given week, there is a 95% chance that they would eat within that 15 hours window.
That means that if somebody wakes up around 6 o'clock and has a cup of coffee with cream and sugar,
a little bit of sugar immediately after waking up, then,
This person is also going to bed, say, at 9 or 10 o'clock at night and is having a glass of milk or beer or something else that has some calories,
then that is roughly 15 hours of eating window.
And even if this person does this only a couple of times in a week,
still the circadian system is anticipating that that's the eating window.
So that way we develop this app to measure when people eat,
in addition to the tried and tested methods of what and how much we eat.
And we figured out that nearly 50% of adults eat for 15 hours or longer,
and only 10% of adults actually eat for 12 hours or less interval in a day.
And what percentage of people think they eat for 12 hours or less if you ask them without?
That's almost 100% because in this first study,
when we did this study on 156 people,
We had a questionnaire where we asked them, what time do you eat your breakfast, lunch, and dinner?
What is the interval of time when we eat, when you eat?
And when we compare that, their own response, it was only less than 5% of people who said that they eat for more than 13 hours.
So what we perceive, how we eat and how we actually eat is very different.
And all of your listeners, if you just think back and ask yourself, is there any day in the last seven days when you had a piece of cookie or a glass of beer or wine a couple of hours after your dinner time, after your dinner was finished, I would guess that at least half of you remember at least one day in the last one week, you had done that.
and this is almost like your body flying to a different time zone and coming back from circadian
point of view.
So that's why when we think of when we eat, it also brings up other aspects of the timing.
And since the research is very new, it will have more variance to the timing.
People will start thinking, okay, what happens if you eat?
after an hour of waking up versus six hours after waking up.
What happens if you eat only two meals in a day versus six meals within that eight hours or ten hours?
So all of these various sense of human nutrition timing are yet to be fully studied,
but I'm glad that our research has put focus on to this timing of food as a variable in health.
Is it better to have an eating window that
if let's say you're eating within a eight hour time window and you'll you know you're quote
unquote not eating I guess you're not eating for 16 hours is it better to stop that have that
eating window end at 7 p.m. versus let's say 11 p.m. Yeah so so this is where biology and our human
behavior and personal choices come into play. For most of us,
What we see from the app data is there is a circadian pattern or the time of the day pattern to what people typically eat.
For example, if you ask what time of the day people are more likely to drink alcohol and have more sugar retreat,
it's between 7 p.m. and 11 p.m. or midnight.
So then if you're eating alone and if you have complete control over your diet and you have this very strict diet resume,
what you want to eat, then it doesn't matter whether you are finishing dinner at 7 p.m.
versus 11 p.m.
But if you target that you are ending that 8 or 10 hours window at 11 p.m.
And that includes socializing with other people and sharing food or being even influenced
by what other people ordered for dinner, then you're likely to consume a lot of unhealthy
food during that extra between that 7 p.m. and 11 p.m.
So that's why setting aside the biology in real human, in real world, what time you end your dinner will indirectly influence what type of food you are more likely to eat.
So that's why we suggest that you try to finish that window relatively early so that one thing is you have less chance for consuming too much alcohol and unhealthy.
food, and second is your last meal is likely to happen at least two to three hours before
your habitual bedtime so that you can have better night's sleep.
What sort of time-restricted eating pattern do you follow, Sachin?
Yeah, so I try to do around 10 hours time restating.
So that means if I start my breakfast around 8 o'clock, then I try to do.
finish dinner by 6.6.30. And what is interesting is if I occasionally eat at 8 or 9 o'clock,
even if it's a small snack or something, then that night my sleep is bound to become really
fragmented. So I have a negative feedback loop that if I eat late, then I won't sleep well.
And then the next day will be really crappy. I need more caffeine and other stuff to stay awake.
So that's my eating habit these days.
Do you personally count caffeinated beverages that don't have any calories like black coffee,
resetting your clock in the morning?
Yes, there are actually studies showing that a cup of coffee is equivalent to an hour or two hours
of bright light.
That's the impact on circadian clock.
So it does impact our sleep.
and definitely no coffee after 2 o'clock in the afternoon,
because if I drink coffee after 2 o'clock, then my sleep will be really bad.
The other day, I had a cup of coffee actually around noon,
and that completely disturbed my sleep that night.
So we do consider that coffee might disrupt your circadian rhythm,
but at the same time, we understand that a lot of people cannot function
without coffee, particularly night towels who are getting less sleep.
It's much better to be caffeinated than be sleepy when you're driving to work.
Also, some people that work request them to be completely a lot.
For example, people who work in the entertainment industry
who have to go in front of a camera at 4 o'clock in the morning,
if they don't have enough sleep, it's better to be caffeinated.
to be caffeinated to do your job, otherwise you lose your job.
So we make those exceptions, and in our studies, we ask all of our participants to log
everything so that we can go back and redo the calculation to see whether caffeine intake,
even without cream and sugar or with cream and sugar, had any impact on time-restriating,
which led to some changes in health consequences.
But I must say that since all of our studies are relatively small,
a number and also the number of people who drink black coffee outside their eating window in
our studies may be even smaller.
We are yet to see strong statistical power to dissect this effect.
Great.
What about, have you seen any data or you aware of any data suggesting any time-restricted eating
differences between men and women, perhaps, you know, you know, there's obviously a fasting
component to time-restricted eating when you're the part when you're not eating.
Other than like pregnancy and breastfeeding, do you know of any concerns for women,
for example, regarding time-restricted eating?
Well, you know, time-restricted eating is a very loose and broad term.
So that means even if somebody, as I said, only 10% of adults eat for 12 hours or less.
So that means if somebody was eating for 16, 17 hours, even if they're pregnant of breastfeeding,
they can come down to say even 14 hours or 12 hours of eating or 13 hours of eating.
And if they continue with that routine, they may still see some benefit.
But for medical risk reason, we don't suggest that people who are pregnant or breastfeeding
sort of even try to think of time restyating.
But it's a common sense that if you adopt a good habit,
even when we are expecting, when you're breastfeeding,
even if it's 13 hours of eating and 11 hours of constant downtime,
that will have an impact on the family
because when your baby is growing up on that 3 to 5 years of his,
they'll slowly pick up that habit of eating,
so within 14 hours or 11 hours,
and then slowly they can shrink.
So now, coming back to the adverse effects,
so that's why I say that, you know,
eating anyone from 5-year-old to 100-year-old
can do 12-hour-time-rested eating
without much concern about adverse side effect
unless the person has type 1 diabetes,
which is equivalent to brushing your teeth once a day.
And if you are trying to do 10 hours time rest of eating,
then it may be better that if you're breastfeeding or if you're pregnant,
then it may not be the ideal time-restriating window 10 hours might be too restrictive.
But for the rest of them, again, without type 1 diabetes,
it might be brushing your teeth twice to take care of your health.
And if you're doing eight hours time-residing,
it's almost like brushing your teeth twice, brushing your teeth,
taking too much care of your health.
So if you can do it for lifelong, then it may be better.
But at the same time, be careful about not reducing your calories too much,
because occasionally we do see some people try to do eight hours time,
rest of eating, at the same time reducing calories to almost thousand kilo cal per day,
and increasing their activity level, running half a marathon once a week or a pipegates.
three times a week. And that can adversely affect your body weight, can affect even your
bile acid metabolism, and might increase risk for kidney stones. So we don't try to combine
too many things at the same time. And 12 hours time resty eating, as I said, may be safe for
most of us, except the type 1 diabetic, unless they have a continuous glucose monitor
and they have some calories handy if they become hypoglycemic.
And you mentioned children five and over.
So do you think that kind of much like your anecdote,
if you eat a snack or something later in the evening,
you have more fragmented sleep?
Is that something that you think maybe hold true for younger children,
like preschool age as well?
Or is there any evidence of that?
No, there is no, I don't think there is any evidence because it's very difficult to studies on children.
We don't want to intervene too much.
But if you think about the general recommendation is children of that age should sleep for 9 to 10 hours every night.
So if you're a good parent and you are putting your child to sleep for 8 to 10 hours,
then hopefully you are not waking up your kid in the middle of the night to feed something
so they are fasting for say 10 hours when they're sleeping and then after waking up it's not that
they wake up and immediately eat something they have to brush their teeth and then maybe get cleaned up
and let's add one hour there so that's almost 11 hours and similarly just before going to bed
and they might have half an hour to one hour before bedtime home
they had their last calorie.
So in that way, you can see how a 5 to 10-year-old can easily fall into eating within 12 hours
or, say, 13-hour's window, which is not that bad.
Means if you put together the sleep hygiene and the common sense bedtime ritual and wake-up time ritual,
then you can easily see how you can maintain a 12 to 13 hours.
eating window for a five to 10-year-old.
So there's one more area I kind of just wanted to touch on mostly out of my own personal
interests, and that is exercise timing in the circadian clock.
There's been a bunch of studies that have come out over the past few years suggesting
there are better times for humans to exercise.
Yes, so there are a lot of studies that are coming out, saying that that by, so the late
afternoon or evening may be the best time for exercise.
And there are many physiological reasons for that.
One is for exercise, we need much better muscle tone, joint flexibility, and less risk for injury.
And all of these stars align in the late afternoon because that's when our heart rate is
relatively high, our core body temperature is warm.
we don't need that warming up that we typically need only in the morning that much warming up
and a muscle tone is better, joint flexibility is much better, so risk for injury is less.
So that's why all of the studies are finding that late afternoon exercise is much better.
Then the second, so this is for healthy people who are trying to get the gold medal instead of silver.
or reducing the risk for injury.
Then if we think of people who are sick or who are trying to manage their glucose,
say people with diabetes, is late afternoon exercise better than early morning.
And in fact, there is at least one study that came out of Stockholm,
showing that people, the same people, when they did exercise,
high-intensity interval training in the morning versus the same people doing the same high-intensity
interval training in late afternoon. They found that people who did the morning heat interval
training, the blood glucose level actually went up, whereas doing the same exercise in the evening
helped them to reduce their blood glucose level, 24 hours, blood glucose, those who had diabetes.
So that's a very strong result.
And what we know is, as I said, our pancreas has a clock.
That means the pancreas produces more insulin in the morning or the first half of the day.
And the second half of the day, even in the absence of melatonin,
it doesn't produce that much insulin as well as in the morning.
So that means any help in managing.
glucose, independent of insulin, is much better in the evening.
And when we exercise, our muscles actually take up a lot of glucose without the help of
insulin.
And this might be one reason why late afternoon, early evening exercise or even brisk walking
may be much more beneficial for people with diabetes in managing their blood glucose.
So the bottom line is whether you are healthy or less healthy,
It seems that late afternoon, early evening exercise is better, but at the same time, if you have time to exercise only in the morning, then you should not stop exercising, go for that morning exercise.
Completely agree.
There was a very interesting, very recent study showing that fat oxidation was about almost like 13% higher in the afternoon compared to the morning.
but if you took in, if the participants took in, it was actually quite a large amount of caffeine.
30 minutes before exercise in the morning, their fat oxidation was equivalent to if someone
exercised in the afternoon without any caffeine. For me, I like to exercise like first thing in the
morning. I'm sort of, you know, mostly fasted. I do have a cup of coffee. But it's kind of nice
to know that maybe that caffeine, and I don't exactly know the mechanism, but may actually
boost the fat oxidation a little bit more than, you know, if it was just morning without the
caffeine. And also just one more question about there was another study showing that like
performance, athletic performance actually varied depending on when a person wakes up. So like
whether they're an early riser versus intermediate or late riser. And what was I thought was so
interesting about that study is that their peak performance was very different. So if it was like an
earlier intermediate riser. Their peak athletic performance happened between five or six hours
after they wake up. But if they were a late riser, their peak performance was almost 12 hours.
It's 11 hours after they basically woke up. So I thought that was interesting. So last to kind of
wrap up this discussion, could you discuss some of your circadian resolutions for 2021,
things maybe that anyone could use, anyone could follow as well?
Yeah, so we thought, okay, so how do we put all of this together?
Because we talked about light, we talk about sleep, not having light exposure,
before sleep, having light exposure during the day.
It can be all confusing.
So we thought an ideal circadian day might be try to sleep for eight,
try to be in bed for eight hours consistently every night.
When I say consistently, try to go to bed within an hour window and stay in,
be in bed for eight hours so that you can get seven hours, seven and a half hours of sleep if you're an adult.
And then after waking up, try to avoid food for one to two hours because that's when your
melatonin hormone is slowly going down and cortisol hormone is spiking.
And then after waiting for an hour or two, have your first bite and then count eight, ten,
11 or maximum 12 hours. That's the window of time when you should be eating and also make
sure that the last bite or the last calorie is at least two hours before your bedtime.
You don't want to have that last calorie too close to the bedtime so that you can avoid
food and avoid bright light for two to three hours before bedtime.
And then during the daytime, particularly in the first half of the day, if you can
can try to go outside.
Even if it's a cloudy day, there is enough light to uplift your mood because light is
the best antidepressant, it's plentiful and free.
You just have to step outside.
And when you're stepping outside, you can also take a brisk walk for 30 minutes and that
way you can get both your exercise and light dose of the day.
So that's the bottom line, eight hours in bed, wait for one or two hours before fast calorie,
We eat everything within 8 to maximum 12 hours.
No food and no bright light for 2 to 3 hours before bedtime.
And 30 minutes outdoor, brisk walking during the day.
Great pointers.
So thank you so much, Saatchen, for having this clubhouse chat.
People can follow you, obviously, on Clubhouse.
But you're also on Twitter at Saatchen Panda.
your website's my circadian clock.org, your book, which is fantastic, and I've read a couple
years ago, My Circadian Code has a lot of the information we talked about today and so much more.
Also, your ongoing crowdsourced data using your My Circadian Clock app that's available
on the app store or Google Play. Is there anything else where people can find you?
or you want to direct them to?
No, you had a very comprehensive list.
We actually like when people, you know,
the MySykadian clock app is an academic app,
so it's not as fancy as not the other apps.
But I'm really grateful that thousands of people
have shared their eating habits, sleep habits,
deaf habits, and socioeconomic demographic information.
And that has been extremely useful for,
many ongoing and future studies.
We have nearly now 10 different clinical studies going on in parallel on the Myosocadian
platform.
And then the book has been very guttifying because the book has been now translated to 10 different
languages.
And through the book, I also came to, while writing the book, I also came to understand
how to think of my experiments.
in the light of public health
and whether we do
and experiment in drosophila, fly, a mouse,
we're always thinking,
is it going to have an impact?
So that opened my eyes.
And Rhonda, you are the first one who,
I remember the first time I did a podcast
that was with you.
That was the first time I didn't know
what is a podcast.
And I got an email from Rhonda,
I went back to the lab and I asked, what is a podcast?
And a lot of people explain to me.
And here we are again.
So, Rhonda, you're always ahead of all of us,
and you are doing a fantastic job in communicating science to millions of people
because we're scientists, we are not very good at that.
And science has to be disseminated and thank you for doing such a fantastic, fabulous job.
Oh, I appreciate that, Sautchen. Thank you. And for those of you here on Clubhouse listening, you can, this conversation was recorded and you can find that podcast on your favorite podcast player, just search for Found My Fitness. You can also sign up for our newsletter on foundmyfitness.com and keep up to date with all the things we're doing, including podcasts like this one.
So thanks again, Sotchen, and I look forward to talking to you soon.
and keeping up with all your wonderful research.
Yeah.
Thank you.
And have a perfect circadian day.
All right.
Sounds good.
You did the same.
Bye-bye.
Okay.
Bye-bye.
I want to say a huge thank you to Dr. Panda for joining me.
And thank you to our listeners for tuning in.
If you know someone who can benefit from this information, please share this episode with them.
If you're looking to quickly learn more or dive deeper into the science on fasting,
sleep and circadian rhythms, you might enjoy our premium podcast, the Aliquat.
Each episode is,
short and focused on a single topic, curated and remixed from the best of our longer form videos,
interviews, and members-only Q-N-A sessions.
Head over to foundmyfitness.com forward-slash aliquot to listen to a few samples of the aliquot,
including a preview of our special fasting episode, which includes more clips from previous
conversations I've had with Dr. Sauch and Panda.
Go to foundmyfitness.com forward slash aliquot.
That's A-L-I-Q-U-O-T, A-A-O-T.
Aliquot.
We talked a lot about circadian rhythms and how some people have genetic snips that make them
an early riser or a late riser.
Some people even have a snip in the melatonin receptor that prolongs melatonin release into
the morning, which has been associated with impaired glucose tolerance with a late dinner time.
You can check out our free genetic report on circadian rhythms to get that information and
more.
All you need is your raw, deep.
DNA data, which you may have gotten from a provider like 23 and Me or ancestry DNA.
You can find that basic report at foundmyfitness.com forward slash genetics, forward slash circadian.
That's found my fitness.com forward slash genetics forward slash C-I-R-C-A-D-I-A-N.
Or you can just scroll to the bottom of the genetics page and look for the big list of free basic
reports. All you need is your DNA file.
Thanks for listening and talk to you soon.
