The Dylan Gemelli Podcast - Episode #28 Featuring Dr. Scott Sherr PART 2! THE METHYLENE BLUE CLINIC! Debunking Methylene Blue Myths, ”Blue Brains,” Mechanism of Action, Mitocho...
Episode Date: May 20, 2025Episode #28 Featuring Dr. Scott Sherr PART 2! THE METHYLENE BLUE CLINIC! Listen in as Dr. Scott Sherr, the Methylene Blue Expert, puts on a masterclass of debunking methylene blue myths and dives deep... into the TRUE facts about Methylene Blue. Dylan and Dr. Scott have a strong synergy together and are able to convey the most compelling insight yet on Methylene Blue! Learn about the "Blue Brains," myths, the mechanisms of action, mitochondrial and athletic performance benefits, how to PROPERLY dose it, selecting the best quality product, the bioavailability, and so much more!! This is a CANT MISS EPISODE!! Follow Dr.. Scott Sherr on Instagram https://www.instagram.com/drscottsherr/ Check out Dr. Scott on A4M https://www.a4m.com/scott-sherr.html MAKE SURE to visit the Troscriptions website https://troscriptions.com/?utm_source=DylanGimelli&utm_medium=podcast&utm_campaign=PodcastWithScottSherr USE COUPON CODE Gemelli to save!! ______________________________________________________________________ Today's episode is sponsored by Apollo Neuro! Get the Apollo Neuro for $90 OFF!! USE CODE GEMELLI to save https://apolloneuro.com/gemelli _______________________________________________________________________________ To PURCHASE MITOPURE visit Dylan's landing page and use code DYLAN to save 20% OFF!! https://shop.timeline.com/DYLAN TONUM supplements for the MIND AND BODY! USE CODE "DYLAN" to save!! https://www.tonum.com/DYLAN THE BREAKTHROUGH MIMIO HEALTH FASTING MIMETIC SUPPLEMENT! 20% OFF with code Gemelli https://mimiohealth.sjv.io/c/6588260/3323599/30611 TRULY Increase Your NAD LEVELS with WONDERFEEL NMN: https://getwonderfeel.com/?utm_source=DylanGemelli&utm_medium=podcast MESCREEN: The world's first and only at home mitochondrial efficiency test Save $100 with CODE DYLAN https://mescreen.com/cart/47561239626013:1?discount=&ref=DYLAN HIRE DYLAN ON THE MINNECT APP HERE: expert.minnect.com/@DylanGemelli Follow Dylan on Instagram, Facebook, Twitter and Tiktok @dylangemelli and PLEASE SUBSCRIBE and leave reviews!! MAKE SURE TO GO TO DYLAN'S YOUTUBE CHANNEL for MORE video content!! https://www.youtube.com/@DylanGemelliBiohacking Email Dylan for booking, collaborations and/or to apply for the Dylan Gemelli Podcast DylanGemelli@gmail.com Visit Dylan's Homepage https://dylangemelli.com
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Dylan Jameli podcast. So you can see if you're watching on video and if you're not.
I've interviewed my guest before. It was a tremendous interview. We hit home on so many different
topics. But see, he taught me so much in our first episode that we had to come back and do it again
and dig deep into a lot of new news and things that are being passed around. So real quickly,
because I can't really give a good enough intro for my man here because he's got so many credentials.
but I'm going to do my best.
He's a board certified internal medicine physician,
and he is certified to practice health optimization medicine.
He's a specialist in hyperbaric oxygen therapy,
which we talked about in our last episode.
And he's the CEO of Troscriptions,
one of my favorite companies in the world.
And he does a ton of other things,
but most of all,
he's well known for being a methylene blue expert,
and we are going to dig deep today on that.
So my friends, this is my friend, Dr.
Scott sure.
Good to be back with you, Dylan, for part due.
That's right.
Depending on which language you want to go.
Part two.
Okay.
I appreciate it, man.
I've been looking forward to this for a while and I always love talking to you.
You taught me so many different things on our first conversation and I don't ever get
nervous and I always study people that I'm with.
But man, when I taught, the first time I talked to, I was like, man, I got to be super
prepared to keep up with this guy.
but because of what you taught me, I mean, you've seen some of the content I've been doing.
You've inspired me to really dig deep on a lot of different concepts, but we're going to start
with methylene blue.
And I know it's your wheelhouse.
There is nobody that I feel is more suitable to discuss this than you.
And so that's why I'm really looking forward to this.
Now, methylene blue, I'd like you to kind of get into the craze about it because it's really
taken off.
And I feel like you've contributed to a lot of that.
with teaching and everything. Why do you think it's taken off like it has so quickly?
It's definitely having its moment and it really got big around mid-January or so when it was
mentioned on a couple big podcasts. And I think the Lynch pin in the whole thing was when
RFK, the human health secretary was filmed or caught taking methylene blue in a drink while he
was on an airplane. And that just made things go crazy. And great. Fantastic.
now people know about methylene blue.
We've been doing this for a long time.
So my company, transcriptions, as you said,
we were the first company to come out
with a commercial product back in 2020.
And Dr. Ted, our founder, our pioneer,
he'd been studying Methylene Blue for years
before we even launched the company.
And we were looking at the research together
and seeing how powerful this was.
And it was very intriguing to us
as a way of delivering a compound
that had the possibility
both to increase energy and to improve detox at the same time. It's called the Redox Cycler.
And so over the last five years, we've had tons of clinical experience, both in our clinical
practices personally. So I see patients still. I see people all every week, usually over telemedicine
at this point. Dr. Ted still sees patients. The other docs that are on our team still see
patients as well. And so we've got a lot of clinical experience on how best to use Methylene Blue
in practice and seeing what really can happen. And like, I'll be honest, when we first started using
it in 2020, I was like, I don't think this is going to work. Like, is it really going to work? And I
was just shocked about how many people, almost out of the gate, starting getting amazing experiences
and seeing their pain go away, their inflammation get better, their brain fog improved, like so many
different types of things. And we can talk about that. And I think we talked about some of that
on the last podcast. But when that hit in January, it was like everybody was seeing methylene blue
for the first time outside of a smaller, you know, a niche audience that had been knowing about
it and had been learning about it. I mean, over the last four years, though, Dylan, it, like,
it has been growing. Like, every year on top of that, for example, when I was the first speaker
at A4, one of the largest medical conferences to speak about Nethylene Blue. I spoke about
Nethylene Blue also at another conference called IHS, Integrative Health Symposium, which is the
largest medical conference on the East Coast as well. And so after I spoke, that was in
2003, in
2004, we started seeing a huge amount
more interest in the clinical world.
Because from a clinical perspective, it has
tons of, tons of applications, because
it's a mitochondrial enhancer.
94% of U.S. adults have mitochondrial
dysfunction, a part of our cells that make
energy. And so clinicians started
getting really, really excited about it.
And at the end of 2024,
there were all these other companies starting to make
and sell methylene blue. And
paying speakers to pay at these
to play and to speak at these conferences that I spoke out for free the year before.
And so I knew something was going on, right?
And so we all knew something was going on at the company.
And then really in 2025 in January is when things just went, you know, bonkers.
And it's been a really amazing ride overall because now there's a lot more interest.
As a result of all that interest, of course, there's going to be a lot more nayserers and people
out there that are trying to, you know, bring things down and make various arguments that, you know,
they feel are correct, maybe, or maybe they're just doing it because they know how
the social media algorithms work, which is to make a conflict, I mean, to make a splash and
do something to cause a stir in some way and then get eyeballs that way. So it was because of what
happened in January that everybody is talking about. It's trendy now. And I have mixed feelings
about that, right? Because anything that's trendy, people have a significant, interesting,
mixed relationship typically. Right. And like what I'm hoping for is that the knowledge is now
coming to the fore. We've been doing this for so many years. You can go back and look at all our blogs
and all of our lectures and interviews and things like that that I've done that Dr. Ted has done on the
team. So you can see that there's gravitas here. Like there's legitimacy in what we're doing.
This is not just a trend. What I've said is like believe the hype, but be careful the
bandwagon, right? In the sense of the hype is true, methylene blue's got fantastic potential.
But be careful about just following what everybody else is doing without understanding why you're
taking methylene blue and how you can best leverage it in your own particular situation.
You brought up so many good points. I will say this before we move into some of the
benefits and the way that it works, because I want to get into that again a little bit deeper
before we're trying to get, but I want to point something out that you said that is so very true
that people have to be very careful of. And that is tricky titles, clickbaits,
things that people say without really knowing what they're saying, but they're just looking for
Some people want to play that villain role.
They want to play the heel.
And it might not even be who they really are.
The problem is, is then they create this confusion into people's head.
And it's misguided and it's not right.
And some people feel threatened because maybe they have a product line and they're not
selling that and it's taken away from that.
But there's normally a motive there, unless somebody can sit down and go back and forth
with an expert like yourself that's willing to do that and you go blow for blow in a good
polite way with answers and questions. I'm sorry, but it's the credibility to me is not there.
And I just want to convey that message to people so they understand. I've been an influencer for 15
years. I know how this works better than anybody. You're like, you're one of the, the OGs when it
comes to this, right? And I am. Yeah. Yeah. And a big piece for me, Dylan, is that a lot of the advice out
there isn't bad, but a lot of it is not good either. And waiting through that is really hard. It's
not easy. As a consumer, as somebody that's consuming social media, looking for good advice and
education, it's hard overall. And so I totally understand that. The key, I think, is that when it
comes to methylene blue, at least, and this is not just methylene blue, it's sort of across the board,
is it be careful taking advice from people that don't see patients or clients for a living, is what I say,
because they don't really know what it is to actually treat people and see the new one.
of clinical care. It doesn't fall on a page. Your mug shot is like you can't somebody like,
for example, in medical school, you learn about a medical disease, like a condition, right? And like
it's on a page, you read about it. But you go see somebody in person and then they don't fit that
book. That's not like it's exactly that, right? And so you have to be ready to be more nuanced about
how you look at people and how you work with them and how you try to help them overall. And so
getting advice from people that don't see patients or clients and don't have the understanding.
of the breadth of responses that people have is kind of dangerous in some ways, right?
If you're following this person's stack and that person's stack and then, you know,
Brian Johnson's a great example of this, right?
I think Brian's doing some great work overall, but Brian's doing everything himself and he's
taking 100 to be vegan, right?
And so I've had a number of people, my clients come to see me that have done terribly
on something similar because they can't do what he does on a regular basis and don't
have millions of dollars to spend, right?
So that's his protocol.
Fantastic, right?
But is that protocol going to work for you?
Probably not, you know?
And so, thank you.
The main thing I always like to point out is it, if you're looking to take advice for
people that, you know, are on the socials and influencers in general, try to understand
whether they are seeing patients or clients and then how they're framing their advice
overall.
In general, if like, look, this is what I do.
This is what's worked for me.
Fantastic, right?
But if like, this is what you should do because this is what I do.
Like, you got to be careful with that is what it comes down to.
And to that point, I've always prided myself on giving experience.
I'm a data guy.
I don't care just what I'll tell you my personal feeling or experience on it,
but I won't tell you just because I felt a certain way that that's the end all, be all.
I want to see hundreds or thousands of people that I'm either coaching or monitoring or that I have data on that are actually providing it out of forums or studies or whatever the case may be.
But for me, in comparison to you, as a nutritionist and someone that does hormones, I fully understand
that every situation is person to person specific.
Right.
So you get a piece of data as a doctor.
You look at it and you go, okay, this is great to know, but I still have to implement that
on said person to see how they respond, right?
Exactly, right.
It's one thing to read about it in a book.
It's another about to actually use it in clinical practice.
It's an entirely different animal.
Damn right.
Okay, cool.
So let's do this.
just a real brief before we get into some, like the digging in that I want to do, just a brief
synopsis of what methylene blue actually is and what it actually does.
Yes, sure. So methylene blue has been around a long time. It's a compound that was developed in a lab,
so it's actually a synthetic ingredient. And so it's not made from nature. And that's one of the
arguments that we can talk about later. Not everything that is from nature is good for you,
just like not everything synthetic is bad for you, I promise. And we can talk
about why. But so it was the first drug that was registered with the FDA back in 1897. And from that
point on, it had a number of different sort of chapters overall. In general, though, to keep it
really short, higher doses of methylene blue are anti-infective, significantly anti-inflammatory.
It can be used to reverse things like low-oxygen states overall. And it does this in various ways.
Lower doses are mostly for mitochondrial optimization. And they help improve mitochondrial function
in various ways, including what's called being a redox cycler, which means that methylene blue has
this really interesting capacity of being able to donate electrons to your electron transport chain,
compensate for electron transform chain dysfunction, mitochondrial dysfunction, and at the same time,
act just like an antioxidant and pick up free electrons just like an antioxidant would.
There's very few other compounds out there that can do this.
And the power of methylene blue is that it works so well in the mitochondria to compensate for mitochondrial dysfunction.
As I alluded to earlier, Dylan, 94% of the U.S. population has some element of mitochondrial dysfunction.
Right.
And the mitochondria are not either making energy effectively or they're not detoxing from the energy that they make.
So most people don't realize that when you make energy is like putting gasoline in a car.
Okay.
When you put gasoline in a car, you can run it, but you also have exhaust.
Our cells have exhaust too.
Right.
Exhaust, not all of it is negative.
We have carbon dioxide.
We have water.
we also have reactive oxygen species, free radicals, as they're called, or oxidative stress.
So the body always is making these and trying to balance out how much it's making with a number,
with an antioxidant capacity, the number of antioxidants we have in the system.
And so many of us are having a difficult time is we don't have enough antioxidants around
to help balance out that stress from making energy.
And then on the other side, even before that happens, we can make the energy effectively
because we don't have the vitamins, minerals, nutrients, and co-factors to be able to do that.
And so as a result of my, so you have this mitochondrial dysfunction.
There's a lot of reasons why this happens.
Stress is a huge one.
So it could be, it could be stress from environmental stress, toxic stress, sleep stress,
not getting enough sleep.
Medications can do this.
Toxins on our environment otherwise.
What else am I missing?
Infections can cause mitochondrial stress, as well as insulin resistance is actually the number
one reason why people have mitochondrial stress.
And so, and that's a huge amount of the U.S. population.
So if you're pre-diabetic, if you have insulin resistance, your mitochondria aren't very happy is what it comes down to.
And like in seventh grade and eighth grade, when you learned about the cell, you learned that there was a nucleus and cytoplasm and Golgi bodies.
It's kind of my favorite name for any, for any organelles, the Golgi body, I always like that name.
And then endoplasmic reticulum, and then the mitochondria.
You saw a cell with one mitochondria, but that's not the case.
There's some cells in our body have thousands of mitochondria, and some cells actually have zero mitochondria.
The red blood cells in our body do not have any mitochondria.
They actually got rid of their mitochondria so they can carry more oxygen.
They initially had one when they first, then they first develop,
and then they lose their mitochondria over time.
But the cells of the most mitochondria per cell are the eggs and sperm,
the brain, the heart, the liver, and the musco-skeletal tissue.
That has the most in reserve.
Makes sense, right?
Because you need to make a lot of energy fast if you're running from some sort of animal
that's trying to eat you kind of deal.
Right.
And so mitochondrial stress is rampant, okay?
And the methylene blue overall has this capacity to really support the mitochondria.
And that's what makes it so powerful.
And these lower doses, four milligrams, eight milligrams, eight, 16 or so, they're really great
of mitochondrial optimization.
And up to about, and then when you get up to about one milligram per kilogram or above,
that's about 70 milligrams of methylene blue and above, that's when you're becoming
more anti-infective.
That's when you're focused on more chronic infection as well.
not only acute infection, but chronic infection.
And then you also have severe mitochondrial stress, hypoxic conditions, like low oxygen
conditions, because methylene blue can also act just like oxygen in the cells and maintain
aerobic respiration for longer.
So I have a lot of athletes that are using it now for endurance, for example, as a result of
being able to be able to go farther aerobically when they have methylene blue on board.
So in general, short story, nothing blue is a compound that was developed in 1890s,000,
97 or a little bit before that, but it was the first FDA drug at that time.
It's a mitochondrial enhancer.
It's an anti-infective.
It's an anti-inflammatory.
And it's a redox cycler overall.
And so it's got these fantastic capacities.
So a couple questions, because I've actually been studying cell, cellular biology, cellular health.
I'm just becoming certified as a cellular health coach with Dr.
Uyarth in her class.
Nice.
Yes.
So, and I've been working with timeline on uralithinease.
So I've really been digging deep into mitochondrial health, which is one of the draws I have to
methylene blue.
And so would that be stimulating mitophagy at all or rebuilding or is it just cleaning things up a little bit?
And then two, what other type of benefit would it be for an athlete?
So for me, I'm using it in the morning, like a lot of mornings when I'm feeling just a little
tired or a little sluggish.
It's giving me a kick.
It's giving me a kick.
Would anybody know, like, we're talking about energy levels, but would you notice strength
increase with that for like an athlete that's using it as well, or is it going to be more
proficient in like the energy levels and maybe endurance levels aspect?
Yeah.
So first question about like mitophagy, there are some small studies in animals that show
that methylene blue does improve mitochondrial function on its own.
So not only can it compensate for mitochondrial dysfunction, but it can actually rebuild part
of the electron transport chain.
specifically complex for cytokrome oxidase and help rebuild and reboot the mitochondria itself.
There's also some evidence that it does cause mitochondrial biogenesis as well.
Really?
And the reason for that, I think, is that because it's making the cells more efficient overall
and there's more energy available as a result of that so that the cells make more mitochondria
to actually compensate for that or to build up a balance as a result.
So these are preclinical, so it's hard to know overall.
There's really no studies in mitophagy specifically that I've seen, but there is the sense that I have overall that you're just rebooting mitochondrial functional.
And so as a result of that, sometimes what's going to happen when you need to do that is actually need to kill off mitochondria to start into make new ones, right?
Right, right.
So I think that is, some of that is happening.
I have seen, as I think about it now, there has been some literature on mitophagy in Alzheimer's models overall and how methylamebu might be able to do this.
And it's actually interesting how it might be able to do this, and this is kind of technical,
but the low doses of methylene blue, the four milligrams, eight, 16, 20, those are, those are really
supportive to the mitochondria, okay?
But higher doses like your 70, 80s, hundreds, things like that, they're also supportive,
but they also stress the mitochondria at the same time.
Okay.
And they do that by creating hydrogen peroxide.
And so our cells have this capacity to make hydrogen peroxide, and they do this because
it's a signaling molecule in the cell, and it's also something that's an anti-infective.
So the cell will make or release actually hydrogen peroxide when there's a bug around that
that they're trying to kill, and that comes from the part of the cell called the lysosome.
And so a methylene blue does is increase the amount of hydrogen peroxide that's produced
by binding to oxygen, making hydrogen peroxide. And so this causes stress on the system
and can cause mitochondrial biogenesis and mitophagy, from mitophagy first, and then mitochondrial
biogenesis as a result of that. And so I have seen some of the system.
this, but this is a very technical point. But what happens with these
these higher doses of methylene blue, when you make more hydrogen peroxide, you're
also stimulating the body to produce more glutathione directly, which is our master
antioxidant. And that's through a pathway called and the NRF2 pathway. And that stimulates,
hydrogen peroxide stimulates NRF2. That pathway produces more glutathione. But you have to make
sure you have enough glutathione to be able to make it, right? Otherwise, you're going to be in
in the world of hurt. And so when people start taking methylene bloom, they start getting
detox kinds of symptoms, especially at these higher doses, it's often because they have this
hydrogen peroxide production without the amount of, without the capacity to make glutathione
in response to that overall. So, but I don't want to forget your endurance question. I got off on a
tangent there. That's okay. Do you want me to go back to endurance or do you want to have the questions
about that? Well, that was a tremendous answer more than I even expected, but it was very insightful.
You have me think in a million different ways now, but I'm going to look into that later.
But yes, on the endurance side, I think it's clear that you're getting energy because, you know, mitochondria makes ATP.
You're fixing mitochondria.
You're going to get energy.
But my question was in terms of the strength, can that be expected at all?
Because you know that when we're talking to wider people, audiences that are looking to use this now, it's not just going to be people that need health benefits.
You're going to have athletes, bodybuilders, everybody looking into this.
So is there any strength benefit?
is there any possible type of muscle gain or sparing capability there?
And there may not be, but I know this question is going to come up.
Yeah.
So in the endurance performance world, two things that we're thinking about here.
The first is definitely on the endurance side, knowing that methylene blue is going to increase
your capacity to make energy aerobically from your mitochondria for longer.
And so I remember when I first started using methylene blue like three or four years ago,
I had one of my early clients taking it.
And I just had, I'm not really sure how this is going to work exactly.
Let's see how you feel.
Use it for exercise and let me know how it goes.
And then I talked to her a couple weeks later.
She's like, Dr. Scott, I'm never going to not exercise with Methylene Blue.
I'm like, I will always exercise with Bethlehem Blue.
I'm like, well, why?
She's like, well, when I go on my treadmill or maybe it was her Stairmaster in the morning,
it's like I can keep my heart rate up higher for another 20 minutes compared to what I
typically can.
So I can maintain a heart rate for longer without having to stop.
And this has been repeated now in a number of my clients.
And a good example would be a guy that I work with here in Colorado.
He did the Leadville 100-mile, ultra-mile, ultramarathon here relatively, maybe about a year ago now.
And this guy came to me because he was having a hard time finishing the race.
And we were giving him 32 milligrams of methylene blue every four hours.
So this is more than I would typically give most people.
But this is 100 miles, man.
This is a huge race, right?
And so he was able to cut off four hours of his time as well.
And yeah, pretty amazing, right?
And so this is just using Methylene Blue as an endurance enhancer.
So I've seen this also with another friend of mine, his name is Brian McKenzie,
who does a lot of work with hypoxic and CO2 training.
And so what he's been doing is he'll do hypoxic training, have Methylene Blue on board,
and then do endurance work afterwards.
And he's seen his VO2 max go up like five or 10 points, like not a small amount,
by having Methylene Blue on board, doing hypoxic training, and then doing endurance work, right?
And so, and the reason for this, again, is that the cells are going to be more sensitive to
taking up more oxygen after you've been hypoxic.
And then you have the methylene blue on board there.
That's going to help with the endurance side, giving you more aerobic capacity.
And so that's on the endurance side.
And so this is pretty consistent.
I've been working, I've been trying to work with a couple, you know, semi-pro teams and
things like that, get them more product and work on, like, you know, cyclists especially
that are doing a lot of endurance.
But I've had a few that have been interested.
Definitely people that are doing, like, I have a couple of things.
We have a couple soccer players that are using the Methylene Blue regularly during games now and seeing significant benefit.
So it's fantastic.
And the other piece, which is really interesting, and I was just speaking to another colleague that you know his name, Thomas DeLauer, about this on his podcast.
What he's noticed, and I think this is super interesting, is that he feels that for like an anaerobic kind of workout, what he's been able to use Methylene Blue for is that he feels that you can recover pre or intra-workout.
and even after workout faster with methylene loop is you don't need to get to as slow of a heart rate
to get the same recovery.
So typically for most people, they have to get to a slow, like a heart rate that's going to help them recover.
Like say if you're at 120, you need to get down to like sort of 70 or something to recover.
But what he's noticed with training is that he can be at a higher heart rate but still have a recovery.
Okay.
Because of the methleen booze on board allows him to recover at a higher heart rate.
and then he can maintain his anaerobic training and so he doesn't lose that anaerobic capacity
as fast as a result of being, and then he can have that heart rate recovery at the higher level,
which is pretty cool, right?
So this is like a newer thing.
We have to test it out more and kind of see, but if you can recover at a higher heart rate,
that means you can do more work, right?
You don't have to wait for your heart rate to come down further to know that you've recovered
it until you can do your next set, for example.
Interesting. That's interesting, right?
That's very interesting. Yeah.
Yeah. Because you know, like, if you really want to, like, intra-workout, and Thomas is really good
about this, but intra-workout, the idea is to try to get yourself as parasympathetic
between sets as possible. Exactly. Right? Because that's going to get the most bang
from your buck when it comes to performance and getting and training and strength.
But that's not easy to do. No. Yeah. And interestingly enough, then, that would be
something that I think would be hugely beneficial to a lot of like bodybuilders that are doing physique shows,
especially because I will tell you this, that people don't understand when they think of cardio.
You get muscular endurance and you're doing cardio by training, you know, super setting, 30 second rests in between sets.
But it's difficult when you're trying to lift heavier and your heart rate is going.
Obviously, you've got muscular fatigue, but you've also got regular fatigue because you're training at that rate and that pace.
That's interesting. Okay, so I'll tell you right now, I do very hardcore cardio training and I split my day because it's just, it's three and a half hour straight of doing what I do. So I take the methylane blue early in the morning when I go on a walk and then I come home and do 90 minutes of cardio. That's when I take it. And that's when I'm noticing it. So I'm going to have to try to implement that before my actual physical training and see how I do on that as well. And I can give you some data. Yeah, please do. I mean, and check on your heart rate and see because you typically,
if like a lot of the guys that you know and that I know that are in the weightlifting space,
they know when they've gotten to that point where they've recovered between sets.
Like just he's the physiology, the shift, right?
And so just interesting to see if like, oh, I feel that physiology shift, but my heart rate's,
you have 10 points higher than usual, right?
Yeah.
So I think what Methambleu is doing there is it's working on the recovery aspect of things,
allowing you to kind of shed some of that oxidative stress a little bit faster so that
you don't have to go as deep to get parasympathetic.
But we'll have to see.
It's still early stages there.
Okay.
So I got a couple blood marker questions for you.
So you brought up inflammation as one of the things that methylene blue can benefit.
I want to know then if I was to take a blood panel because I analyzed blood panels daily and I was looking at somebody and had them on methylene blue, could I expect like their high sensitive C reactive protein to go down?
Is that something that I can see?
and what other potential, I know you can't say with certainty,
but what are the potentials that methylene blue could improve,
like say your liver values or blood counts or micronew?
Is there anything that I could look at
and I would expect to see an improvement on?
So I can just tell you what I've seen clinically.
Yeah.
Because it hasn't really been studied in any definitive way
to say that if you take methylene blue,
it's going to decrease your CRP or decrease your sedrate or whatever.
But what I've noticed, and I've been reported over the years,
is that what Methylene Blue does is it can affect, as we've been describing, the mitochondria,
and help with compensation of mitochondrial dysfunction.
And so if you have something that's decreasing inflammation in the system,
you're going to see some of these markers get better.
And I've seen, like in my own clinical practice, like sedrates, CRPs, inflammatory markers,
otherwise, like the things you mentioned, like liver, heart, kidneys, like all of it I've seen
improved using methylene blue.
And so it depends on the person.
Well, you've had, there's one person that I know that's been taking Methany Boot for a long time
that has, you know, kidney dysfunction, for example.
And it was progressing and progressing and progressing and maybe we'd have to go on, like,
hemodalysis, for example.
He's been able to stabilize on a low dose of Methylene Blue, and his kidney function stayed
the same.
It hasn't gotten any worse, for example.
And so a lot of this, if there's an inflammatory component of the presentation, which
there often is, and a Methylene Blue will often have an effect on inflammatory markers
related to that inflammatory ecosystem, whatever is happening there, right?
And so you can look at these over time and see.
Now, the other aspect of this is that where methylene blue is coming in is in the mitochondria.
And so you can look at the mitochondria itself.
And what I've seen over the years is that once you can start adding in methylene blue early
into like various types of protocols to optimize mitochondrial function, that's not the only thing
you're doing.
Of course, you're really looking at optimizing diet, lifestyle, nutrients, doing laboratory testing,
hormones, all the things that you know.
and that you can start using Methylene Blue early
and start seeing benefits relatively quickly
in some of those mitochondrial markers.
But in the end, it's not being done in a silo for me, right?
I'm not just using Methylene Blue at time zero
and then at time six months or three months or whatever
and like looking at mitochondrial function afterwards.
Like it's almost always being done, always being done really,
in a comprehensive way where I'm using Methylene Blue
as a way to help start optimizing the system quickly
while we're doing the harder work of optimizing vitamins, minerals, diet, lifestyle, those kinds of things.
So it's never easy for me to know, even with inflammatory markers, that it was a methylene move that did it,
because I'm not just using that one thing. But in essence, my sense of things is that,
and getting reports back from customers and other, and people that, other colleagues that are using it,
is that that's exactly what you'll be able to see. And it comes out clinically, right? So somebody,
for example, that has a chronic joint pain for you.
years and they start taking methylene blue and all of a sudden their joint pain goes away.
I don't have numbers.
I don't have like inflammatory markers on that person, but do I need them to know that their
inflammation is likely better, right?
And so in essence, the way I use methylene blue clinically is not in a silo.
It's not being done just with methylene blue.
It's being done as a significant intervention while doing lots of other things at the same time.
So it's hard to know.
And I'd love to be able to do more like controlled studies and like taking.
Methylene Blue for three months and see, but in the practical real world, that's just not
fucking possible, right? Because you don't want to wait and just give them one thing, right?
And this is, like, this is what clinical medicine is all about. Like, you don't just do one thing
with people. You really try to give them a comprehensive approach. And then over time, you peel things
off. And one of the things I do peel off over time is, is Methylene Blue, because it's a great
way to support the mitochondria, to get way to reboot and kind of get things going and jumpstart it.
And then as you're doing the other things to optimize mitochondrial function, you can wean
off the methylene blue and use it significantly less in a majority of the people that I work with.
Okay, okay, perfect.
So given the popularity, that means that obviously more people are going to start selling it.
And they're going to be able to try to take advantage of this.
A lot of places will not have any idea what they're doing, making, selling where it's coming from,
raw materials coming from who knows where.
I know for a fact because that's my world, so I've seen it everywhere.
Let me ask you a couple questions then when it comes to bioavailability on how it's taken.
And then I kind of, I definitely want to get into dosing after this, but in terms of how we're ingesting it, because I've seen now liquids, I've seen capsules.
Obviously, you have with troccriptions, the trokeys that turn your, you know, everybody's seen the blue tongues.
And that's, you know, seems to be one of the more favored methods of,
taking it. Can you tell me and everybody if there's a superior form and if there's things people
need to be careful of, because now that I'm seeing the capsules and things, I'm very, you know,
hesitant or not understanding if it's all the same or if there's a certain method that's going to be
better than others. And then also, does, does methylene blue need to be taken with food or not?
So let's talk about, I think, the quality first, right? So the methylene blue is, it's made in a
It's not made from nature, as we discussed.
And so the part of the production process of making methylene blue, there is a possibility
of it being contaminated with heavy metals specifically.
And so you have to be very careful methylene blue that you're actually getting to make
sure that it's as low in heavy metals as possible overall.
And so if you get USP grade of methylene blue, that's the best type of methylene blue,
but even grade methylene blue can go across the map.
You have all different types of levels of methylene blue contaminants for that can be.
that can be in there. So you have to be really careful. So you always want to get a certificate
analysis from the company that you're working with or you're buying the methylene blue from
just to know what exactly you have in there. Now, that's number one. And I think that this is a big
issue for us when we first started the company. Dylan, like it took us almost a year and a half longer
than we thought to launch the company because we needed to find a stable and good supply
and clean supply of methylene blue. And over the years, we've had to throw out thousands of
dollars worth of material of Methylene Blue itself as the raw ingredient because it didn't
meet our specifications.
And so what will typically happen is that a company will purchase Methylene Blue from a supplier,
wherever that supplier may be.
Right.
And then it comes with a certificate of analysis that says it's X, Y, Z, right?
It says it's 100% pure or whatever it might say, right?
But we take it another step.
We test it again once we get it to make sure that it is what it is.
Not a lot of companies are doing that.
Right.
They just trust the manufacturer that they've had a C of A that says X.
And then we have actually a recent story.
We're always looking for new suppliers.
And there was another supplier that we were looking at for Methylene Blue.
And their C of A looked pristine.
It looked beautiful.
And then we got it tested by our own lab.
Not at all.
And so they're like, they apologize.
Oh, there must be something wrong with the batch.
We'll give you a new one.
So we're testing it again, another batch pretty soon.
But companies don't do this, Dylan.
They trust the C of A from the company.
that that is giving them the ingredient, right?
And so they're not taking it the next level
and checking to see if it's actually what is in,
what it says it is, right?
And so we were really,
we were emphatic about this
when we started making our product.
So we don't just trust ingredients
that come in from our suppliers.
We test everything,
and this includes methylene blue.
And this is why we've had to throw out
thousands of dollars worth of material in the past
because it didn't meet our specifications.
And the other aspect of it is not only is it
from a purity perspective, the heavy metal contaminants, that's also a potency issue too.
Right.
Most of the products that we tested on the market did not meet their label claim,
especially if they were liquids.
So we didn't test any of the tablets because those are relatively new.
But from a label claim perspective, if you're taking a dropper, first of all,
do not ask me if you're taking the right amount if you're telling me you take 10 drops a day.
Because I have no fucking clue how much methylene blue you're taking.
My gosh.
And this is the problem, right?
Methylene blue and a drop.
or form is very difficult to go, the dose.
Overall, almost all the liquids that we tested were less potent than it said on the label.
So if it said you were getting one milligram in a drop or whatever, you were really getting
like 70 or 60 milligrams or maybe 80 milligrams in the drop at most.
There was one company actually that 125% more, so it was actually even more per drop than it was
supposed to be.
So it's across the map.
And so liquids are very difficult to maintain a, uh,
consistent milligram dose per drops.
You really don't know how much liquid you're taking if you're taking liquid.
And we had a couple of people, especially maybe two or three years ago now,
telling us about taking the liquid and then taking our trokeys at transcriptions,
the same amount.
And ours was significantly more potent and stronger at the same dose.
And it's because it really wasn't the same dose.
Like ours was actually the dose that it was on the label because we test everything.
And we do it like a pharmaceutical company.
Like, I'm a physician.
You know this, Dylan.
Like, I work with physicians.
Like, we wanted to make our products, the trokies, as precision dose and pharmaceutical grade
as possible.
So every single batch is tested for purity.
Every single batch that we make is tested for potency.
And again, we're not just trusting the certificates of analysis of the ingredients that we procure.
We're testing them again ourselves before we even go the route of actually making it into product.
And so there's no other companies that are doing that.
There's no other companies that have four docs in the team that are seeing patients
and clinical practice.
And of course, trokeys, nobody else is doing that either because they're not easy to make.
No, I will say.
And it's not for the faint of heart to try to scale trokey production.
But what's nice about a trokey is that it's easy to break up into small parts into a quarter, a half, or full,
and find your dose.
So you're not relegated to a capsule or a tablet that's difficult to break up.
And you can figure out exactly what you need and then titrate your dose over time.
but to answer your second question, which was around delivery and bioavailability, to make a point there,
methylene blue is really an interesting compound for a lot of reasons, obviously, but this is another reason why it's very interesting,
is that it's almost 100% bioavailable, no matter how you take it. Whether you take it poorly as a trope,
you swallow it, or even obviously in an IV, IV is going to be 100% bioavailable, no doubt about it,
But it stays active even when it goes through the liver in first-pass metabolism.
And most things get deactivated on some level.
I always give the example of anesthetal cysteine or knack.
NAC is about 10% bioavailable.
So if you take 100 milligrams of NAC, only 10 milligrams is actually getting into the body.
But if you take 16 milligrams of methylene blue, just about like 16 milligrams is actually getting into the body.
Now, what's different is how fast.
Right.
obviously IV is going to be your fastest, and that's a good thing depending on the system or the
issue with methylene blue, but it also can be the most dangerous because it's going to go to
the brain the fastest. We can talk about that. And then a troki is going to be second fastest because
a trokey is going to be resolving directly into the mucosa of the mouth. That's going to be
faster than going through digestion. And obviously, swallowing it is going to be slower.
Now, you asked about food. Now, if you have food in your stomach when you take methylene blue,
it's going to get dissolved much slower overall. So your peak is going to be.
lower as far as your peak concentration in the blood.
Got it.
But I typically recommend as if you're going to swallow methylene blue, it's a swallow
an empty stomach, and then you can eat about 15 or 20 minutes later and help it kind of push
it through a little bit faster, but that's usually the best way to do it.
Okay.
Awesome.
All right.
So I'm going to welcome you into my world a little bit.
I'm going to do a small tangent.
I don't want to talk too much, but I have to talk about what you brought up because
this is one of my wheelhouses.
Please.
And what I'm talking about is liquid dosing and COA.
and the raws coming in and the testing and then reconstituting into liquid and the solvents that are used and how
it's done. Being that I've been around research companies for so long, I know the entire methodology and
the way it goes. First, let me say this about certificates of authenticity. When the raws are coming in from
China, if they can mimic and create a Louis Vuitton purse that looks just like a Louis Vuitton, they can
certainly make a fake COA. And they do it quite well. There's nobody in the entire world that can make
replicas better than they do in China. So if you're getting raws from there, you best be
testing the COA's triple time at times. And so it's really nice to hear. And I'm not saying you're
getting raws from China, but a lot of places that now are research companies are selling
methylene blue. They're doing liquids. And that's step one of where there's a problem. They don't
test a lot of their peptides, their SARMs to come in. So they're certainly not tested methylene blue.
They're just going to assume because it's cheaper than those raws that they're getting what it's set.
It's coming with a third party certification to CNN. Exactly. And a lot of
of them come in Chinese language. You don't even know what the hell it says if they're coming from out of there.
Yep. Secondly, when you're reconstituting these big batches, which they're doing in liquids of anything,
it makes it very difficult to get an accurate dosing into each bottle, right? Especially the people that don't know how to reconstitute properly,
whether it's temperature timing or they may not even be using the right solvents. So when you're testing those things,
that's part of the reason why. Number three is when those those are listed, it'll say 20 milligrams. So it's
generally 20 milligrams and a milliliter.
Well, like you said, some of these companies, what they do is they put too much in there
on purpose to make you feel like you're getting more than what you actually are.
So you could be double, triple dosing one millimeter, maybe 60 milligrams and you wouldn't even
know it.
It's the same trick they do with underground steroid testosterone and things where they dose them
higher so you think you're getting better quality.
In fact, they're hurting you.
So, you know, it's very, it's a slippery slope like you said.
And that's why it's important, especially with something.
like this because like I said, a lot of these companies, they're not ever going to test these
because the raw materials aren't expensive as a lot of other things for it. So they're just going to
throw them in and not really care. And you have to be careful like with the liquids. A lot of people
don't understand what the milligram per milliliter thing is like you were saying. Yeah. Yeah. You know,
and it's if you look at it, it's like what the hell is this? But if I, you know, if you break it down,
it's like every full dropper's one millimeter and it's telling you there's 20 milligrams per each full
dropper and one millimeter, right? So, sorry, I had to throw that in there to explain. No, it's good. I
appreciate the perspective because you've been doing this such a long time and you've been playing
around with things that are much more tricky than I have over the years with all the peptides
and things like that. And it's not safe. Like if you get more than you need,
Nethylene Blue at higher doses can cause more detox symptoms. It can cause more stress on the
mitochondria, as I mentioned. And if you think you're taking, you know, 20 milligrams a day,
but you're really taking 100 or something like that. Like that's, I mean, I don't, that's kind of an
extreme example, but once you get to about 80 or so milligrams of methylene, 8,200 milligrams
of methylene blue per day, you start building it up in the system. You don't fully detox,
you don't feel like get rid of it, like in your urine, within about 24 hours. And so if you're
taking more than that on a regular basis, you can get in trouble. And so my usual recommendation
is if you're taking more than about 30 to 40 milligrams a day of methylene blue, you really do
need to be taking at least one day off a week. And if you're taking more than that a day,
than thinking about taking more days off per week
to make sure you don't have the buildup in the system overall.
And so I worry about the liquid
because I don't know what people are getting
and people always ask me, what's the best liquid?
What's the best liquid?
We just haven't found one that I truly trust.
And I know what we're doing.
I'm supervising with Dr. Ted and the physicians on my team.
We're supervising the whole process
and looking at the C of A's.
And then we're always in communication with our labs
and our contract manufacturers
that are making the products
that are allowing us to make the claims that we are,
and also making us feel comfortable that we can use it with our patients and with our families.
And I wouldn't want anything else overall.
So I appreciate you making a big point of it, Dylan, because I think it's less understood the process there than people realize.
Like you could just get a certificate of analysis from a Chinese manufacturer.
It's like, oh, it's great.
It looks perfect.
Let's just use it.
Right.
And like, no.
No, like you don't.
I don't care if in China, India, U.S., it doesn't matter.
Like it has to be my opinion.
And I think yours is like, don't trust.
the piece of paper coming from the company that's selling you a product.
No.
Like,
because they have invested interest in you buying their product, right?
And so,
like,
especially the,
you know,
so,
like,
that's why we always use the third party testing.
And that's why we were always doing that.
And so I call it like fourth party testing or a beyond USP or something like that.
Yes.
Yeah.
I mean,
literally,
if you got any kind of skill behind a computer,
you could make one look perfect and you'd never know the difference.
And when we were,
you know,
when you're talking about liquids,
there's the solvents that a lot of times you have to use.
Well,
one,
specific compounds,
require specific solvents.
And if you use the wrong one,
that's part of the problem of like the degradation
or the integrity of the compound you're even using.
But two,
a lot of the solvents aren't good for you.
Glycol is not good for you.
Everclear, which is used to reconstitute a lot.
I think grain alcohol,
not good for you.
So these are other things that you have to think of too.
Now,
before we transition into the juicy stuff
that we have to get into,
I do want to go back to the dosing really quick because,
you know,
for somebody like me that's, you know,
learn from you, but still not comfortable answering a lot of things yet. And I don't. I defer.
I point people to your direction, but literally the two most common questions that I get.
We've already covered one, which is what are the benefits and what can I expect? But two is how to dose this.
And I always kind of, I look for your literature and I understand the scenarios are different. I like to
stick on that microdosing. But I guess let's talk about general dosing for an everyday person.
and then I want to talk about like cycling it or how many days a week or you should do it or not
because there's confusion there.
Yeah, I've kind of developed this recently because I get this question a lot.
And I try to make it super simple.
If you're using it for mitochondrial optimization specifically, so day-to-day operations,
you're not using it for an acute infection or a chronic infection or like an acute stress overall.
In general, what I recommend people do is start off with one and quarter of our trokeys,
so four milligrams.
Four milligrams.
And then use that.
that for about three to five days, increase the dose by a quarter. So increase the dose by four
milligrams every three to five days until you start feeling a response. Now, depending what that
response is, is it like, holy shit, I can go run a marathon after being in wheelchair, then you're
great. But it might be more nuanced than that. It usually is, right? And so usually like the
first thing you feel is like maybe a little bit of a mood elevation, a little bit improvement
overall, just feel a little bit better. And then there should be a time when you get to the right
dose that you feel that something special is happening. And that could be anything from pain being
better, to brain fog being better, to your concentration being better, your brain, I meant brain,
I said brain fog already, maybe I have brain fog. But your endurance is getting better. Like there's
going to be, there's going to be noticeable changes. Typically, that's around between eight and 16 milligrams
for most people is what we found. And so once you find the dose that works best for you, then it depends
on what you're using it for. If you're using it more for a chronic issue that's been ongoing for a
long period of time, you may need to stay on that dose for a longer period of time. It could be two,
four, six weeks, sometimes six months until you can start weaning yourself down, depending on what
else you're doing to try to work on whatever it is that, you know, is going on the cells that's
causing the symptoms that you're having. But in other people that are relatively well optimized,
that's their dose. And then when they need it, that's the dose that they need. And so when do they need it,
depends on what they're using it for. It could be used for an endurance. It can be used for a bad
night of sleep. It can be used when you're getting an airplane, for example. And so in my more
optimized patients that I've maybe, maybe they were on methylene blue a lot initially as
there was, you know, kind of working on their mitochondria, working on their cellular function,
their gut, hormones, those kinds of things. Eventually, I like to wean them down to a point where
they're taking it maybe, on average, maybe three days a week-ish. And that's a good mark for
most people to use it in more of like a targeted way for those three days a week. And that
could be, again, just more stress on the system, like a long exercise this day, a bad night
as I mentioned, like going on a plane. And most of us are under stress on a regular basis.
Our mitochondria are used to stress on some level, but they're not used to like shitty lights
and shitty food and, you know, toxic relationships and, you know, screaming kids or whatever that
don't stop. And so, like, I find that most people can benefit from it some of the time on a regular
basis. But some people can benefit from it on a regular basis for a longer period of time. But the
dosing from a mitochondrial perspective, you're feeling the energy, feeling the detox capacity, feeling
more resilient overall, usually between four and 16 milligrams, man. I've been really surprised by
that. Initially, when we first came out with the product, I was like, this is going to be, I think
that might be too low, but it's not. I mean, I have some people, a good example is I was talking to a
clinician just a week ago or so, a patient of theirs, who was widowed. They'd lost their spouse
maybe a year prior. And this hadn't been able to like break out the funk, right? Right.
They were still kind of moping around and they just weren't doing their thing. She gave this guy
four milligrams of methylene blue. He had like the best day of his life. He was walking around. He was
moving. He was doing things around his house. It was like a different person. And I've four,
eight milligrams in people. I've, I have another friend of mine. She's, uh, Dr. Stephanie Remke.
she's great, and she'd be great for your podcast eventually.
She's fantastic.
But she's like, I give my little old ladies with fibromyalgia and chronic fatigue,
just a little bit of methylene blue, they can go get their haircut, they can clean their
floors and their kitchen, and they love it.
And so just these, like, lower doses go a long way.
And of course, there's other things that these people are doing with these clinicians,
right?
But, like, it goes a long way.
Now, if you have a chronic infection or you have severe mitochondrial stress from, like, an acute
trauma, acute low oxygen state. This is when your dose of methylene blue should be much higher
in general. So for me, this is from an acute infection. So leave chronic infection out for a
minute because that's a little bit of a different animal. But acute infection, acute stress,
acute trauma. I'm usually dosing around one to two milligrams per kilogram for about three to five
days, maybe even more than that, maybe a little bit, maybe up to seven days. So that's like
150 to about 150 milligrams of methylene blue for about three to five days. So it can be high.
Yeah. But then I slowly ramp them.
I quickly ramp them down after being at the higher doses.
Chronic infection, though, they tend to need higher amounts of methane
for longer periods of time, usually in combination with other things as well.
And so you're talking about your chronic Lyme and co-infections, for example, chronic mold.
These people, I know, I mean, I have a couple of colleagues and I myself do this.
If you use about 50 milligrams twice daily of methylene blue for five to seven days or longer,
and then we ramp them down.
Sometimes we need to be on even longer periods of time of methylene blue,
depending on like the chronicity and what else is going on.
But for most day-to-day operations, we're talking about four to 16 milligrams for the most part.
And then all of my patients have a higher strength methylene blue in their medicine cabinet,
if they have an acute infection, acute trauma, acute stress,
because that's going to be very supportive overall to the mitochondria.
Using those high doses for short periods of time is very safe for the most part.
So what I generally do, so we can talk about like just my personal to give you an idea what I do.
So most of the time I use blue kids.
canotene half a troche in the morning with and i told you this before and i take the tromune with it
even though i know the tromune technically should make you like more sleepy or tired does not do that
if you're taking it with caffeine though that's good you know you're taking with the caffeine so yeah
and then i have coffee right after so i i do that but then if i do the just blue i'll do half also like
i'm on a packet of that right now but i that i do that like every i don't know every month
once a month i do that and then i stick with the canotene but i go about
about five days and those are my workout days. And then the two days, I stopped taking both.
Yeah, that's good. And then I do like the five days back on when I'm working out,
unless I'm just wrecked on like a bad day, which generally doesn't happen, but on the weekend.
But I figured take the days off, I'm not working out. And I'm maybe not working as much,
you know, on the computer. So is that a pretty good protocol? That's a great protocol. I mean,
so the blue canotene, for those that are listening, is a combination of methylene blue with
nicotine, caffeine, and CBD. So it has the stimulants in there. And,
the nicotine and the caffeine. Lodose nicotine, just a milligram and a full troche. So a half a milligram
is what you're taking there. Caffeine is just a quarter cup of coffee. So it's not a lot in
what you're taking, but it's a fantastic pre-workout boost because you get that stimulant
effect of the nicotine and caffeine, and you get the methylene boo that's supportive and helping
with energy and endurance of the things we mentioned before. So I think it's great. It's great.
I think that the buccanatine especially, I do recommend people cycle that one for sure because
that one has a stimulants on there. So it's good to take a couple days off.
at least typically when people are taking that one, unless you're taking it because you're
using it as a replacement for something you'd be taking from a pharmaceutical perspective.
But even people that are taking pharmaceuticals like Adderall and Vivance and things like that,
most of those guys and gals will be not taking it on the weekends.
Right.
It's a similar kind of thing with Blue Canotene where you'd probably want to stop it on the weekends
if you were, you didn't need it, if you were taking it for, you know, something as a replacement
for something like that, of course, under medical supervision and things.
I feel a stronger mental acuity and awareness and sharpness when I take the canatine,
which is one of the reasons that I like it.
Yeah. I'm not saying I'm not a morning person, but for me, I tend to get better as the day goes on.
And that makes it an easier start for me oftentimes because I don't think that one should drink
coffee right away in the morning. It's better to wait about 90 minutes. So that's kind of my start
when I go on a morning walk and take that on the walk, get home, get acclimated, then make the
coffee and it works well for me personally just to kind of share some data with you and info for
others that are, you know, looking for methodologies. Let's transition now to the big, the big fun
topic that we definitely have to address. And I wanted to make sure I left plenty of time for
that. So all right. Now, like you said earlier, when something gets really popular, it becomes really
polarizing. And people utilize that to their advantage, like we said, to get clicks, oftentimes
saying things they don't know or someone will put out some.
published study about blue brains, for example, or things like that. So let us do this. Let's pick out,
you give me, because you would know better than me, I know some of the myths that are being passed,
but I want you to pick out two to three of the most troubling or the ones that are getting the most
headlines that we need to debunk now. Sure. So I think a couple come to mind. The first one would be the one
you just alluded to, which is blue brains.
Yes.
The second one would be that the only reason
methylene blue works is because it increases serotonin.
And the third one would be that only people that have mitochondrial disorders
should take methylene blue.
Okay.
How about those three?
Let's do it.
And which, just for reference points, if we can say who says it, it doesn't matter.
Sure. So who are the people that have put out these references or
myths that we're going to debunk. So the blue brains, I don't remember the guy's name. He did a blog on
it. He's got a relatively popular blog. Forgive me, I don't remember his name. I'll look it up what we're
talking. The second one, the serotonin thing, that's our friend, Dr. Paul Saladino. I got it. And
you also talked about mitochondrial function as well. So, but the third one, the third one's related to
Chris, Chris Masterjohn, Ph.D., who is a biochemist. It's a very, very good of biochemistry.
but his translational capacity to clinical medicine,
I think needs a little bit more support overall.
And so those are the three corresponding to what I just described.
Cool.
Okay.
Let's knock them down one by one then, brother.
Yeah, sure.
So they're relatively quick because it's not,
especially because we've already had this whole preamble
about what methylene blue does overall.
But number one, blue brains.
So the first, this is a blog that was very good
in the sense of showing pictures of these blue brains
that were shown after these patients had died.
And they did the post-mortem.
They did the autopsy, and their brains were blue.
And so the people in this study, it wasn't even a study.
It was just a case report about eight different people,
had gotten ridiculously high levels amounts of methylene blue
over three milligrams per kilogram in the IV
as a last-ditch effort to try to save their lives
from shock, sepsis, cardiopulmonary arrest, and things like that.
So, methylene blue is used as a last ditch effort in some of these indications
of some of these situations to try to do, like the last thing you could do to try to save this
person's life.
Okay.
So these people got hammered with IV methylene blue, and then they all died in this, obviously,
because they were showing blue brains.
Right.
And they did autopsies within about four to six hours afterwards, and all of their brains were blue.
This is not surprising, okay?
This is a huge amount of methylene blue.
And so we know that methylene blue, what it does, in general, is concentrated in the mitochondria,
which is where he's doing all its fancy work and compensating for mitochondrial dysfunction.
But it's actually changing color all the time between blue to colorless, depending on its redox state.
So, but in essence, they got so much methylene blue that it's not surprising that their brains were blue as a result of it.
if you're taking low doses of methylene blue for eight milligrams 1625 even a little bit higher than that your brain is not going to turn blue your mitochondria are going to have a concentration of blue pigment for a short period of time and then it's going to go away your brain is not your brain is not going to get stained blue it's not like like that's going to happen so this is a great sensational piece where showing blue brains like you're taking methylene blue your brain's going to turn blue right no it's not going to do that now if your brain is going to turn blue now if your brain is going to turn blue. Now if your brain is going to turn blue.
blue because of three milligrams per kilogram IV methylene blue, it's because they were trying
to save your life, okay?
They failed, but they tried.
And so it was a great headline, your brain's turning blue when taking methylene blue.
Yes, if you're taking it at huge IV doses to save your life because you're going to die,
all by all means, your brain's going to turn blue for a short period of time.
You know, I doubt it would have stayed blue if these people had actually lived to see the next day,
all right, because this would have come out of the system over time.
But low doses of methane blue are not turning your brain blue.
It's only concentrating the mitochondria.
And then it's out of your system within about four to six hours.
That's the half-life.
So within about 18 hours, it's fully out of the system.
And it comes out through your urine, all that blue pigment is gone.
Okay, so no blue brains have been harmed in the world of transcriptions and others using methylene
blue.
So that's number one.
Any questions on that?
Well, I just, I looked it up while you were talking.
And unfortunately, because of the way that, you know, people search it and the way it ranks,
the AI immediately pops up and says, yes, methylene blucin, stain organs, particularly the brain and heart,
causing a distinctive blah, blah, blah, blah, blah, blah, blah, according to an article published in ScienceDirect.com.
So that, my recommendation, yeah, you know what, and this is just me and you spitballing here,
the recommendation would be to put out some sort of article doing it.
exactly what you just explained that could pop and alternatively combat that so that when it's
searched and viewed, that an alternative response would be given as to why. And that's how you can
kind of combat something like that to get the message out on top of like doing this.
Just for, for reference, you know, to be helpful. We've put out a lot of stuff over the last,
you know, month or two with all this. But it's, it's all good. You know, like no, you know, all,
press is good press on some level because I get to have these conversations with you,
and say, look, this is really what's, you know, the brass tax of the whole thing.
Damn right.
And so, and then you had Paul Saladena who came on to talk about how his response to all this was,
you know, methylene blue is only working because it increases serotonin.
It has no effect on mitochondrial function.
Because if you have optimized mitochondrial function, you don't need methylene blue.
That's kind of his whole argument, right?
And so first off, the first part is complete bullshit, you know, in the sense that nothing
blue does increase serotonin, that is true.
But the idea that the only effects that you have are because you have,
increased serotonin are completely out of, I don't even know where he got that from overall.
So we have studies that show what methylene blue does in the mitochondria.
We know what it does to compensate for mitochondrial dysfunction.
We know it can help with energy.
We know it can help with detox.
And so that's completely ludicrous to say that methylene blue only works because it increases
serotonin.
So methylux not only works in the mitochondria, but also works as a monoimmune oxidase inhibitor,
an MAOI, reversible one, which means that it prevents the breakdown of norapenephephrine,
dopamine and serotonin. As a result of that, you will have more of those neurotransmitters around when
you're taking methylene. And it is a reason why you have to be careful, actually, if you're on
serotonergic drugs like SSRIs or SSNRIs, which are like a newer class of antidepressants,
if you're on medications for Parkinson's that increase dopamine, it can be an interaction there.
You have to be careful. And if you are taking those meds, it doesn't mean you can't take
low-dose methylene blue, which you should take it with the supervision of a health care provider.
Okay. Right.
So Paul's first argument there was that it was a serotonin effect that was improving people's function.
But there's no way that that's actually what's happening clinically, like working with patients,
which Paul does not do, you would see and get that experience very quickly and get the response very
quickly that this has nothing to do with serotonin.
I mean, there's something going on with serotonin, but the effects that we're getting are not related
to that at all.
Right.
And that's, that was my initial thought right off the bat was, okay, how many people has he
observed this on how can he prove this? What is he seen that would indicate this? Or is this just
something he heard and read? And I saw him. I watched some things on his that I like and that I don't
like like like like a lot of people. But he was on some sort of show. And they asked him, what was the
one supplement that you are bothered by or annoyed by? And he sat there and went and thought and thought,
well, methylaine blue, well, you know, obviously because it's causing him probably issue with something
he's doing and he doesn't like it taking all the steam and being talked about. I just, if you're going to
go directly at something, you should have a lot of data to back it up and a lot of experience to back
it up to make any sort of substantial point or credible, you know, aspect that you're given.
So anyway, you only had to talk for about 30 seconds on that where I knew that was bullshit, but I
appreciate the breakdown. So let's, it's okay. Yeah, I mean, I think it's, it's good to have a
counterpoint in the whole situation to talk about why that counterpoint is wrong.
Right.
And from clinical experience, we know that what he's saying is not correct.
The other aspect of it is he talked about this, and Chris Mastrogyne also spoke about it in various
ways, is that if you have optimized mitochondria, you shouldn't take methylene blue because
it can make the mitochondria worse.
And so this is an important point to distinguish.
Okay.
Yeah.
And so first of all, 94% of the U.S. population has some element of mitochondrial dysfunction.
So there's very few people fall in this category of optimized mitochondria, number one.
And even people that have optimized mitochondria still have significant stress of the mitochondria
on a relatively regular clip if they are on an airplane, all the things we mentioned before,
poor sleep, stress, toxins, get an infection, all these other reasons why somebody would optimize
mitochondria will still have stress on their mitochondria.
Okay.
So for that reason, for the first part of my, my first part of weighing, of coming back to this,
is saying that 94% of the U.S. population has some elements.
of mitochondrial dysfunction. So as a secondary piece to that is what Chris Masterjohn initially said
in one of his first treaties on methylene blue, which is a fantastic biochemistry. It was really great
for biochemistry. He did a great job. But his conclusion was that you should only take methylene blue
if you have an inherited mitochondrial disorder. And this is also crazy because there are, 94% of the
US population has some element of mitochondrial dysfunction. They may not benefit as much as somebody that has an
inherited mitochondrial disorder, but they can still benefit. And we're seeing this on a regular basis
on how these people can benefit with sort of any level of mitochondrial dysfunction. The amount of
methylene blue that you need may be different. The amount of methylene blue that you need to take
on a regular basis may be different, but they can still benefit if they have mitochondrial stressed
overall. So that's also a big piece of it. And then the final one, which is important, is that
they both discuss that you should not take methylene blue if you have optimized mitochondria.
And so, okay, we've already kind of discussed that most of us have stress under mitochondria all the time.
But in the case that you have optimized mitochondria, should you take methylene blue?
And they're both pointing to a study that was done in stroke patients, their stroke animals, actually.
And in these stroke animals, you gave methylene blue immediately after you gave an animal stroke,
the size of their infarct, the size of the area of the stroke was significantly less.
They had better profusion in that area.
So they actually had a smaller area where they had the stroke if you gave methylene blue very, very quickly.
Again, one of the reasons why I have all of my patients with methylene blue in their medicine cabinet just in case.
In that same study, they showed that an area that wasn't affected by the stroke was mildly stressed from an energy perspective, making energy from a mitochondrial perspective.
So the mitochondrial were stressed in an area that was normal, but in the abnormal area had significant improvements, right?
So their argument is like, well, if you have normal mitochondria, you shouldn't take methymline.
blue. But number one, if you have a stroke, it could be very, very, potentially very, very
effective, which is fantastic. But in addition, the piece that they left out is that they're using
pretty high doses of methylene blue IV, again, in these animals, right? And so,
methylene blue, at least a milligram per kilogram in the IV, were given to these animals,
showing some mitochondrial stress in an area with normal mitochondria. So this actually proves my point
that higher doses of methylene blue, especially IV, should only be reserved for acute situations.
If you're taking methylene blue on a regular basis, it should be oral, it should be lower dose,
and it's not going to cause that mitochondrial stress. We just haven't seen it clinically.
And if I can't see it clinically, then that means that it's very likely related to their study design
using higher doses of methylene blue in the IV, causing mitochondrial stress in normal areas of the tissue and the animal.
So in essence, low dust is methylene blue, not IV, especially, are not causing mitochondrial stress
in normal mitochondria, people that are well optimized, as well as all the other reasons why it's
important to make these distinctions between all these different types of populations.
So I just want to touch on a couple things and bring up a couple points and see if you agree
with what I've learned and what I've come to see and find out when it comes in relation to mitochondria
dysfunction or when things start to go and maybe as to why.
I mean, and I've been in class and study, and so I've looked at studies and analyzed them now and seen things right on paper that are facts.
And, you know, mitochondrial function, ATP production, it starts to decline probably when we get into our later 30s or early 40s based on everything and piece of literature I said.
And I'm seeing an 8 to 10 percent decline per decade.
And that's just general, just normal, maybe on somebody that's even in good health.
Yeah.
And, you know, you can have what, skeletal, distrategor?
decrease skeletal muscle function.
You could lose mass because of that.
What's the entire process of creating new mitochondria slows down when we get older.
I think that's a well-known fact.
So that means that we have a lower number of healthy mitochondria.
So I don't know how they could say or determine who or what,
because some people start to have a degradation of mitochondria at a younger age, too.
So I don't know how one could say that or prove it that someone's optimized or not based
on mere side effects and especially, you know. Yeah. You just, you just actually hit another point where
I just, I just realized as well, right? So we are not supposed to live until after about 40 years
of age, right? Right. Evolutionarily, we're supposed to be dead by then. And so most of us can pretty
have well optimized, pretty well optimized mitochondria in our 20s and 30s, because that's where
we're most optimized to do almost anything, right? Right. Especially our 20s. But if you're trying to live
a long life with optimized mitochondria, it's very difficult to do if you're not supporting them in other
ways. Yes. After we get about over the age of 40 or so, for sure. So that's the other piece that
I never really thought about until you just said it, is that aging will deteriorate your mitochondria
no matter what. Right. And so we need the support, right. Yes. And that's why it tends to start
happening at that age. Because when you start, I mean, essentially, I don't want to sound morbid,
but when your mitochondria start to die, you essentially start to die. That's like the dying process,
correct? I mean, of course. Pretty much. And don't all diseases generally,
start in the mitochondria or the cell membrane in general, mostly.
And then I guess you would look alternatively to the gut if it's like that extra
five or 10 percent that's left over.
But everything is, yeah.
Yeah, what you say is like the mitochondria is sort of like your common denominator.
Yeah.
Almost all signs of aging.
Yes.
deterioration.
Your mitochondria are, you know, they're making a lot of energy.
So they make a lot of rust over time.
They rust the system.
And that's one of the things that ages the system over time, too, the oxidative
stress related to making energy.
And so, and that affects the mitochondria itself.
It affects the cell membranes.
It affects other areas, the DNA, of course, too.
Yeah, I'm curious about something.
I don't know how versed you are on peptides or not.
So if you're not, just throw this to the side.
But I'm curious if methylane blue kind of stacks well with anything else,
especially on the side of mitochondrial health.
So I'm thinking, and this isn't peptide related, but urolithinate or peptide related,
something like MOTC or S-31 that are really may have different functions or mechanisms
of action that could coincide and be very synergistic with it? Or is that,
am I just, you know, creating something that's not there? No, you can definitely do the stacks.
We have more and more people using mitochondrial peptides along with methylene blue.
Again, these are other ways to help support the mitochondria while you're trying to work on
optimizing them as best you can with diet, with lifestyle, with supplementation and other kinds of
things. So we have people that are using a lot of NAD with methylene blue, for example.
I think this is not a bad idea, but it's also important to think about an incontority.
of how else you're supporting the mitochondria. So like I don't think, you know,
peptide plus methymethylase going to do it, for example. I think that you really got to be
thinking, I mean, it can help in the short term, a long term really want to be supporting
the mitochondria in the ways that's going to help them be as resilient and more self-perpetuating
in their function and optimization as possible. Yeah. And I will point this out and I,
you kind of mentioned this earlier, but this is something I face when people come to me with a
certain problem and I'm digging and I'm like, look, your hormones have to be optimized
for a lot of these things to work.
So we have to make sure that we're making lifestyle changes while taking these things, too.
So if you're taking a methylene blue, you're taking something else to optimize your mitochondria.
You still got to make other changes in your life, sleep better, lower stress, eat better,
workout, exercise.
These things are not going to work if you don't help them work, right?
100%. Yeah, it's all about giving that perspective.
Of course, what I love about methylene blue is that you can use it very early on in the process
to help motivate people.
Yeah.
coming more of like a cornerstone habit, like exercise where you start doing exercise,
everything else gets better.
You start feeling better.
Your energy starts getting better.
You're going to start doing more.
You're going to start taking that walk around the block or getting to the gym in the morning,
whatever it might be.
So I use it that way a lot in my patients too.
Awesome.
I know we're getting lower on time, but I do want to, I talk to you about this prayer.
I want to talk about because I saw you talking about sleep and I saw you just, we talked about
Gabba in the last episode, but I'd like to get into a little more because, you know,
And you know this as an expert, as a professional, and you teach these things, but you don't always do exactly what you teach because you're doing so much, like I'm doing so much. So my point is, is that I know how important sleep is, but I haven't valued it enough until recently. And some of the things that you've said have helped me take a different perspective at looking at sleep. I'm going on Molly Eastman's podcast soon on the sleep is a skill podcast. Yeah. Yeah.
It really.
Always great.
Yeah.
Yes.
And that's why I'm the Viva rays that I'm working with now because of,
and I'm trying to teach people about sleep importance.
And so you've been a pretty good beacon of knowledge on that too.
So I'd just like to get some aspects on maybe why do people have so many sleep issues.
And I know that's a loaded question,
but there's certainly some chemical aspects or things to look at aside from stress
and aside from eating like shit and everything.
But on the chemical.
side or your side, what are some of the problems and issues and how is the GABA relationship there?
It's a cultural thing, Dylan, you know, like we'll sleep when we're dead.
Right.
When I was in medical school, we had shirts made that said, sleep is for quitters, right?
This is the hustle that is just part of American culture in general.
So sleep is thought of something that you do last in your day.
And I may have mentioned this last time I don't remember, but something that Dr. Ted, who I work with, said very early on.
when I was working with him was to flip that around.
Make sleep the first thing you do every day rather than the last thing.
So the first thing you ever do, the first thing you do every day is go to sleep rather than wake up.
So if you use it as the first thing you check off rather than the last thing you check off,
you start understanding the priority over it all, right?
And so the problem is that most of us are just on, on, on all the time and we don't have to turn off.
And this is the off system of brain that the off switch of the brain is the GABA system overall.
The GABA is our most important neurotransmit.
It helps relax the nervous system, calm brain firing.
Our brains are firing all the time.
We have hard time relaxing because many of us, most of us,
are actually deficient in this neurotransmitter in GABA.
He gets depleted because of stress, because of poor diets,
because of leaky guts, because of vitamin mineral deficiencies.
And if you don't have enough GABA around, you have more anxiety,
you have more stressed, you have more depression, and you can't sleep.
Because GABA is really important in all the stages of helping you sleep better.
It helps you with inducing of sleep, helps you with maintenance of sleep as well.
And so if you're gabbit efficient, you're going to have a hard time falling asleep.
You're going to have a hard time staying asleep.
And so it's really important when you think about sleep to think about how much of how we've,
it's really important to think about how we've put it sort of on this sort of like
underneath the ground is something that's important and put up the pedestal of like being
productive, you know, as being the most important thing that we do every day.
But you're so much more productive and you're so much more.
ready to conquer your day, if you want to say it that way, if you've gotten better sleep in the
process. And so I emphasize sleep a lot with my patients, and I'm really leveraging the GABA system
to do that in various ways with meditation, with breath work, especially near bedtime, and trying
to turn off the sympathetic nervous system. So getting off your bright lights, getting off your
TVs and your screens, even if you have blue blockers and yellow blockers or whatever on you,
if you're still watching John Wick 3 before you go to bed,
you're still not going to be ready for bed, man.
Like, I don't care what blue bockers you're wearing.
So I really want all of my patients and people that I work with
to take at least 30 minutes off the screens before they go to bed.
And it is a very difficult thing for a lot of people,
like scrolling right before they go to bed.
And then as soon as they wake up in the morning,
like that the first thing they do is scroll on their phone to see what's going on, right?
And this is how exactly not to do it in general.
The more parasympathetic you can get,
the better you're going to sleep.
The more relaxation you can get before you can go to sleep,
the better you're going to sleep,
and the better your sleep scores are going to be.
And so, you know, people have a hard time.
I get it.
I know in my life, people in my life, you know,
for a long time, it was once the kids go to bed,
that's when the glass of wine comes out.
That's when the beer comes out.
Like that's when, and you think it's great.
It does, you know, alcohol is working on the GABA system.
It's helping relax you.
But the problem with alcohol is that it trashes your sleep.
Yeah.
What it does, it binds to the GABA receptor very tightly, and it depletes you with GABA very quickly.
And then GABA is always in balance with another neurotransmitter called glutamate.
Glutamates are primary excitatory neurotransmitter.
And in the brain, it is converted into GABA using vitamin B6 and magnesium.
And if you deplete your GABA very quickly with alcohol, for example,
that's why you wake up two hours later with a massive headache,
because you have all this glutamine, glutamate, excuse me, in the brain.
and that's your neurotransmit that makes you awake and on and ready.
And MSG syndrome right here, by going to a Chinese restaurant and having a bunch of MSG
and getting headaches, that's from glutamate toxicity as well, or a lack of GABA to balance it out.
And so anxiety, stress, insomnia, these are all related to glutamate imbalances where you have
too much glutamate, you know, some element of toxicity compared to the GABA in the brain.
And so the key is to understand this is what's happening.
be able to try to support the system in various ways to help support the GABA system and to
balance the glutamate and GABA levels are optimized. Making sure your vitamin B6 and your magnesium
levels are optimized. Making sure your gut is optimized. If you have a leaky gut, that's also going
to mess up your GABA levels. Oh yeah. For a number of different reasons, it's going to mess them up
because of the signaling in your gut itself. But your small intestines fuel is actually glutamine,
which is the amino acid where glutamate is made from. And so you're going to have a
like a lack of supply to get the glutamate in the brain and then all these other kinds of things. And then
then your blood brain barrier is going to get leaky too, and then that's not going to be cool.
You get more inflammation.
And this is why people take GABA supplements.
Like, they shouldn't work.
GABA supplements, GABA's too big of a molecule to get across the blood brain barrier.
But if you take GABA and it works for you, it can be almost diagnostic that your
blood brain barrier is not doing what's supposed to do.
And so the way we formulated introscriptions was ways to get things across into the brain,
hopefully because your blood brain barrier is intact and that helps support the GABA system
in a very comprehensive way so that you're not depleting GABA.
while you're also enhancing the GABA system.
And that's kind of like the secret sauce at transcriptions.
We have something called like an obligate pair or oblo pair,
which we've actually patented this actual way of formulating.
This is all Dr. Ted's brain child,
but patented in a way where you're supporting the GABA system
by binding things on the GABA receptor to where GABA would bind,
and also a separate site where you increase the affinity for GABA to bind.
And by doing them in combination,
you decrease the risk of tolerance, withdrawal,
or any other side effects of binding the GABA system too tightly and depleting GABA over time,
which is what alcohol does.
It's what benzodiazepines do.
It's what barbiturates do.
This is what Ambien does.
Yep.
And those drugs as well.
So you brought this up in the last podcast, and you just kind of mentioned it here.
So if somebody's going to vitamin shop or wherever the hell they get their their supplements at,
Amazon, whatever, and they're buying GABA supplements, are you saying that those should not work
for them or they shouldn't work? They shouldn't. If they do, it means the blood brain barrier is likely
not doing its job. Really? But a lot of these supplements also have a combination of things in there. So
they have things like Elthenin, or that they have Kava or Lemonbaum or Ashwaganda. These are all things
that can get across the blood brain barrier and do have an effect on the GABA system in a various ways. So
the GABA itself in there is not doing much. But the other ones could be potentially. So that's what's going on.
And so if you're taking a GABA supplement, GABA by itself, then that's when you're thinking,
well, is this really working?
Is it working?
And why is it working?
Oh, God, my blood-bine barrier is leaky.
And so if that's the case, don't get scared.
It's okay.
It's common.
The most common reason is that you have a leaky gut, and the leaky gut needs to be addressed overall.
And that's a whole other conversation.
But in general, if you can seal up the gut, you're going to seal up the blood brain barrier, too.
And so for me, sleep is a, it's a dance of a lot of nervous.
neurotransmitters. It's not just GABA, of course. You have your melatonin, you have your 5HTP,
and you have your cortisol and making sure your cortisol rhythms are optimized, your melatonin
rhythms are optimized, and et cetera, et cetera. But enhancing the GABA system really is kind of like
the one that rules them all overall as far as being able to maintain sleep and really see
overall a stability in your sleep patterns over time too. So yeah, because, you know, Tro Z has helped
to me, I try to not like depend on it all the time because I got in this thing where I was like,
oh my gosh, I can't, I can't sleep without this. And then I started to not sleep as well. And I think
it was because it was in my mind. So if we're looking at that particular product, how would you take,
is it okay to take it every night or do you recommend like supplementing that too? What's the kind of way to
the best methodology to use trozzi? And do you take tro calm with it at the same time? Because that's
generally what I do. Yeah. So trozy is our comprehensive sleep formula. It has,
eight different ingredients in it that are all very supportive onto the GABA system, the serotonin,
melatonin, the endocannabinoid system with CBD and CBN in there, which are both affecting the GABA
receptors as well. It has something called cortiseptin and the cortiseps mushroom, which is a fantastic
immune system activator along with increasing deep sleep. And so it's very comprehensive in looking at all
stages of sleep and really supporting sleep architecture. Overall, my hope, though, is that people
don't need sleep, to take Trozzi every night, that they can find other ways naturally with a
good sleep routine and like an eye mask and the right temperature in their room and all the things that
you and I know, and obviously that your sleep as a skill podcast hosts, Molly know very well,
once you can dial that stuff in, most people don't need a lot of support, maybe a little bit,
but you usually don't need a lot of support. If you're taking Trozy regularly, like every night
and you stop taking it after a couple weeks, if you're taking it for a couple weeks, for example,
and stop it, you will find that the next night when you stop it, you may not sleep as well,
that's not surprising. There's really no withdrawal that we've seen, and we haven't seen any
dependence on it at all either in the sense that you can stop at any time. You might not sleep
well the night after stopping it if you've had it for a number of days in a row, but that's just
because the neurotransmitter ecosystem needs to kind of figure itself out over a couple days.
But it hasn't been dramatic overall. So what I find is that Trozy and Trocom, you know,
trocom is really for anxiousness and stress and it can be taken during the day,
it doesn't make you feel tired.
They really use more as a PRN,
as an ad needed kind of thing,
as needed kind of thing.
And my hope is that over time,
when I'm working with clients,
they need less and less of trocom,
but they use it when they need it.
Like, you know,
for example, with me,
if I'm traveling,
it's a crazy day,
trocom is fantastic.
If I had a crazy day at work,
and I have to cook dinner,
which is what I have to do
after this podcast,
I'm going to take some trocom.
I'm going to drop it down a little bit
and it's going to smooth through dinner.
It's going to be perfect, right?
Yeah.
And instead of the wine,
it's a great way to kind of,
to just kind of drop that nervous system down a little bit. And it doesn't make you tired. And that's
the beautiful thing about trocom specifically, because you can take it during the day. We like,
we like to say from the boardroom, from the bedroom, Dylan, right? You can take it in the
boardroom to actually do better, make better presentations, engage because you're not overstressed.
And in the bedroom, it's going to help you sleep. It's going to turn off your brain. It's also
going to give you less performance anxiety if that's what you care about in the bedroom. But, but
but I bet you know a question about trocom and trosie together. Yes, I have a
it used that way. So some people will use some trocom with trozzi. But you have to be just careful
with the dosing. You know, what I typically say is you start off at really low doses, like a quarter of each
and see how you feel. And then you can kind of go up from there. If you have more of an issue
falling asleep, trocom is really great for that because it helps quiet the mind. If you have more
issues staying asleep, then troz is a little bit better than trocom for that. And so you can kind
of balance your dosing depending which ones you have the hardest time with overall. If you do wake up in the
middle of night. For example, at like one or two, three o'clock in the morning, I don't recommend
taking Tro Z because it's too long acting. I would recommend, you know, thinking about Trocom at that
case because, again, Trocom is going to calm the mind and all those crazy thoughts that everybody
gets at two o'clock in the morning that keeps them up at night, you know, or keeps them from getting
back to bed, those kinds of things. Okay, sweet. I'm going to ask you one more thing if you got time.
Yeah, yeah, what's up? Okay. So how would someone know or diagnose themselves with like a
GABA disruption problem, that blood-brain barrier issue? What are, is there telltale signs?
Is there a test? What would one need to do to know if that was in fact their issue?
Well, you can take GABA and see if it works for you. That's number one.
Number two is that if you have a leaky gut in general, like if you've been tested, you have a leaky
gut and you're working on that, it's likely that you also have a leaky brain too.
Okay.
Also know that if you get a severe stress, like a severe infection, severe trauma, these also oftentimes will cause a temporary leaky gut and leaky brain.
So severe trauma, stress, severe infection, these all can cause it.
It's common.
It typically doesn't last for very long, but it can cause a perpetuation of those afterwards where you don't fully heal from those kinds of things.
But if you have a lot of brain fog, a lot of concentration problems, like a lot of sort of, you know, even
depression, bipolar, some of the mental health issues, maybe that were new for you that haven't
been an issue until recently. This could be related to a blood brain barrier permeability issue.
You can't really test the blood brain barrier permeability directly is what it comes down to.
It really does, it's more of a clinical diagnosis. And then you can correlate it to other
kind of laboratory testing as well, meaning like leaky gut, for example.
So how would one just really quickly, how would one test for leaky gut then? Is there like a blood test
or something because I know people ask all the time.
Yeah, I usually test people's stool.
Stool of test, okay.
Yeah, you test their stool.
You check for their gut integrity by looking at various markers.
There's one called a zonulin level, for example.
That's the zonulins, like, it's the junction between, it's the protein that connects
the cell, the other cells in the gut itself.
And if that level is elevated oftentimes, it's a leaky gut.
You can also take a look at the types of bacteria, microbiota that are there,
some signs of gut inflammation, things like that.
and also symptomatically, clinically, like how somebody presenting, right?
So those are the main ways you do it is usually through stool testing.
You can get some ideas through like urine, organic acid testing as well,
but that's a little bit more indirect compared to looking at the poop directly and having that fun.
So, you know, collect your shit, set it to a lab that's reputable.
I use Genova's 3DGIFX in mine.
Okay, cool.
That's what I thought.
All right, I'll talk to you about that after I need to get that test done.
All right.
So I know you got to go.
I really am like a fraction of a fraction of the way through, but we're going to make plenty more
of things and people stay tuned for that. We'll keep you updated, but we got some things in the work.
So, man, I love these conversations with you. I always get in a good mood talking to you.
I'm sure that everybody listening gets enthralled with information. You're appreciated more than
you probably know. Tell everybody and I'll link it in the description where to follow you and the best
places to watch your content. Sure. So personally, you can find me on.
mostly on Instagram at Dr. Scott Scher, D-R-S-E-O-T-T-S-H-E-R-R.
Also the company, Troscriptions, also on Instagram at Troscriptions.
Triscptions.com.
We have our methylene blue-blue-containing products are just blue, blue canatine, our gabbergic ones,
our tro-com, our tro-z-cum, which we spoke about today, Traumaum for anxiety and anxiousness and
Tro-Z for sleep.
And then if you're otherwise interested, you know, we have a nonprofit that trains practitioners
on a optimizing health perspective and really trying to shift the focus from disease into health,
and that's health optimization, medicine, and practice, and that's homehop.org.
If you're interested in me and consulting with me directly, you can find me at probably the best
place is my is my is my is my health optimization practice it's home dash s have sorry i'll try that again home
s f dot co and that's where you can learn more about my consulting health optimization practice
um what else am i missing i think those are the main places dylan i think you know i think
it's really great to have you know have this platform to bring people on like me to kind of you know
do some myth busting and and create some context and come from a clinical perspective because
when you work with patients again it's very different than talking to people
on Instagram about what you do for a living and what they should do if you don't see patients
or see clients for a living. So thank you for the opportunity to hang out with you, man.
Absolutely. I don't do the clickbait, but I like to bring facts, brother, and that's why
I bring people like you on where we can really do that. And people will watch just because of the
content, not because you fake the funk. So I appreciate it, man.
All right, everybody. Well, that wraps up another one. I know that this is going to go a long
way with a lot of you and I hope that it resonates. Stay tuned for plenty more to come. Dylan
Jameli and Dr. Scott Scher signing off.
