Science Friday - Is There Science Behind The ‘Nervous System Reset’?
Episode Date: March 11, 2026On social media, the vagus nerve often gets billed as the gateway to nervous system nirvana: It’s your ticket to better rest, relaxation, and health if you “stimulate” it correctly. Where did th...is idea come from, and what does the research say? Host Flora Lichtman talks with neurosurgeon Kevin Tracey, a pioneer of a field called bioelectronic medicine, which uses techniques to stimulate the nervous system with electricity. Back in the 1990s, he was the first to discover that the vagus nerve regulates the immune system and inflammation. Guest: Dr. Kevin Tracey is a neurosurgeon, and president and CEO of the Feinstein Institutes for Medical Research at Northwell Health. He is the author of The Great Nerve. Transcripts for each episode are available within 1-3 days at sciencefriday.com. Subscribe to this podcast. Plus, to stay updated on all things science, sign up for Science Friday's newsletters.
Transcript
Discussion (0)
Hey, it's Flor Lickman, and you're listening to Science Friday.
Today, turning our attention to a social media darling.
What happens in the Vegas nerve does not stay in the Vegas nerve.
It controls your heart rate, your lungs, your diaphragm, your breathing.
The Vegas nerve.
It gets billed online as the gateway to nervous system, nirvana.
Your ticket to better rest, relaxation, and overall health.
All you need to do is coddle it correctly, which,
According to wellness, TikTok can be done in a surprising number of ways.
If you stimulate the vagus nerve and you can do that by gargling some water.
This is a vagus nerve ear massage.
You can also learn to cough in an effective way.
If this sounds like any other overhyped wellness trend, there's actually a lot of science to unspool.
Here with us today is neurosurgeon Dr. Kevin Tracy, one of the pioneers of a field called
bioelectric medicine.
techniques to stimulate the nervous system using electricity.
Back in the 90s, he was the first to discover that the vagus nerve regulates the immune system and inflammation.
He's been on that Vegas train from the very first stop.
Dr. Kevin Tracy is president and CEO of the Feinstein Institutes for Medical Research at Northwell Health.
Hey, Kevin, welcome to the show.
Thank you for having me on, Flores. It's great to be here.
Let's start with the 101 I need.
What is the Vegas nerve?
Where is it? How should I picture it?
The vagus nerve, we call it the vagus nerve.
You actually have two, starts in your brain at about the level of your ears.
One on each side.
It travels down your neck, across your chest, and into your abdomen.
And all along the way, it sends off branches to organs that you don't think about all day long,
like your heart and your lungs and your pancreas and your spleen.
And what's really important is the fact that you actually actually,
have more than two vagus nerves because inside each of these two nerves is a hundred thousand fibers
and each and every one of those fibers is a specific nerve that carries specific instructions if you
will either from the body to the brain or from the brain to the body and these instructions are
absolutely critical to maintaining the healthy balanced functioning of your organs and in fact
of your health.
You discovered this link between inflammation and the vagus nerve back in the late 90s.
Tell me the story.
How did that happen?
How did you get interested in it?
And what did you find?
I got interested in questions about inflammation during the time that I was training to be a neurosurgeon.
And it turns out that what my colleagues and I discovered was that there were molecules
made by white blood cells.
Today we call cytokines.
And these cytokines are really important in driving inflammation forward, causing inflammation.
The cytokine storm. We all heard about this. We all heard about this. That's right, during COVID. And
cytokine storm back in the 90s was a relatively new concept. And it led to the possibility of treating
inflammation by making drugs that blocked cytokines. And today you see those drugs advertised on the
nightly news and during football games. And they're.
called biologics and go by other names. And as good as those drugs are, they're very powerful
and they can actually cause immunosuppression. And so in thinking about ways that we could make
drugs that would slow down inflammation for conditions like rheumatoid arthritis, we envision
making molecules that would treat the inflammation without causing the immunosuppression.
So like you could block the cytokines but prevent the.
whole immune system from shutting down. Exactly. That was the hope. And one of the early molecules
we made, we had named it 1493. And this molecule was very good at blocking inflammation,
didn't cause immunosuppression. What we discovered completely unexpectedly is that vanishingly small
amounts of this molecule in the brains of these animals turned off inflammation in their body.
and this was a real shocker. This was a head scratcher. And the question was, how did it work? And after many
months and then ultimately years of work, what we had accidentally discovered was that the molecule in the brain was turning on
signals that traveled in the vagus nerve to the immune system to turn off cytokine storm. And that changed everything.
So basically, you found that this molecule turned on the vagus nerve and the vagus nerve turned all.
inflammation in the body and other parts of the body.
Exactly right.
This discovery indicated to us that the vagus nerve was like the brakes on your car.
And when you're barreling down the hill, you turn the brakes on in order to slow down
the car.
In this case, when you turn on the vagus nerve, you can slow down inflammation.
And so from that discovery, we said, well, if that's true, we don't need to put this
drug in the brains of people.
we should be able to put an electrode on the vagus nerve, which we knew even in the 1990s could be
safely done in humans.
Because we knew this from epilepsy, right?
Exactly right.
Vegas nerve stimulation therapy was approved by the FDA back in the 1990s for the treatment
of epilepsy.
And so by targeting now the fibers in the vagus nerve that turn off inflammation, we can make new
kinds of vagus nerve stimulators that are now FDA approved.
to treat patients with rheumatoid arthritis.
Interestingly, even if the patients don't respond to the biologics
and the other currently available drugs, which is actually quite remarkable.
So these are approved.
This is now an approved use of vagus nerve stimulation for rheumatoid arthritis.
Exactly right.
Very important point.
Last summer, the FDA approved a new device made by a company called SetPoint Medical
that I co-founded.
And this device is about the size of a multivitamin,
and it's implanted on the vagus nerve in the left neck.
And turning on this device for one minute a day,
it actually activates what we call the inflammatory reflex in the vagus nerve.
And this is like hitting the brakes in your car
to slow down the inflammation in patients with rheumatoid arthritis.
Do we understand the mechanism?
I mean, I know we understand the effect,
but do we understand why this works?
I like to say that we understand the mechanism of the vagus nerve control of cytokines
better than we understand how many drugs actually work.
Really?
Really.
And the reason for that is because we can study it in exquisite detail,
and we've been studying it for going on 15 or 20 years now.
What we've learned is that there are neurons that start in the brainstem
that send their fibers down the vagus nerve through the neck and all the way down into the abdomen.
These neurons carry electrical signals, which when they get into the area of the spleen are converted
into chemical signals.
And these chemicals go by names like noropenephrine and acetylcholine.
And we can study the effects of these chemicals on the immune cells in the spleen
and prove exactly how they regulate the production of cytokines,
which are actually turned off by the presence of these chemicals.
So what happens is the electrical signals start in the brain,
travel down the vagus nerve,
and are converted to chemical signals,
which turn off the activity of the white blood cells.
I love this level of detail.
It's so satisfying.
I have the best job in the world chasing questions like this.
After the break, we're going to fact-check your feed.
What about everything we see on social media,
about nervous system resets and all these other ways to stimulate the vagus nerve,
what should we be paying attention to?
That's after this.
Maybe we can drill down on this a little bit.
We had tons of people call us,
and people were curious about all of these purported ways to, quote,
stimulate the vagus nerve from, you know, gargling to humming,
to devices you wear on your neck.
We had a caller who had vagus nerve-directed treatment for traumatic brain injury.
And so they had me listening to,
music that somehow would
stimulate my vagus nerve
and the music kind of faded in and out
and it almost immediately made me
incredibly nauseous.
There's real science here and then there's people
selling things and then it's
let the buyer beware, right? So
the real science behind the brain
neuroplasticity is fascinating.
There's fantastic work out of Texas
using implanted vagus nerve stimulators
which enhance neuroplastic
neuroplasticity in the brain through mechanisms that are still being worked out. And when you
enhance neuroplasticity and pair it with various psychological interventions or apps in people with
PTSD, you can get remarkable clinical effects. But it's not one size fits all. You know, there's a
difference between carefully controlled scientific studies and large populations that are randomized
and well controlled. And somebody who makes some new device and claims it works in five or ten
people and then starts advertising it. And that's where the whole thing gets confusing.
The neuroplasticity is fascinating, though. I mean, is that why people think it might be useful
for depression or why we see, you know, results for people?
What happened during the epilepsy studies is that, and this goes back to the 80s and 90s,
that patients, about half of them benefit from the device. We don't know the mechanism for epilepsy.
We don't know the mechanism for depression.
And we do know the mechanisms for inflammation.
That's the separation.
So in the epilepsy patients, the half that weren't getting benefit, the doctor said, well, take it out.
And the patient said, a lot of the patients said, no, you're not taking it out.
And they said, why?
And they say, because it makes me feel happy.
What about the breathing techniques?
Well, that's the 200,000 fibers.
So when you breathe in, right, you expand your lungs.
and there are pressure sensors and gas sensors in your lungs,
those activate vagus nerve sensory signals
that travel up into your brain.
Once the brain has these incoming signals,
it can send signals back down the vagus nerve to your heart
to speed it up or slow it down
or down other nerves to your lungs or heart or other organs.
So is it really fair to say that I took a breath
and I've stimulated my vagus nerve and I hummed and I stimulated the branch of my vagus nerve to my larynx or I side or I whatever.
These are all technically correct because the vagus nerve has so many functions.
But it's not specific and it's not selective and it's not the same as putting an electrode on the vagus nerve.
You know, it's become almost a cliche at this point that we all need nervous.
resets, isn't overactive or an over-stimulated nervous system causing illness in people?
There is definitely evidence that damage to the vagus nerve occurred in patients who died of COVID.
And in more recent studies, there's a great interest in understanding patients with long COVID
who have evidence of autonomic dysfunction, whether that is being caused.
by damage to their vagus nerve.
Now, if you damage the brakes to your car, you can't stop the car.
And if you damage the vagus nerve, you're going to allow excessive inflammation to occur.
And that is one of the hallmarks of long COVID.
This same sort of analysis has been done in patients with autoimmune diseases like rheumatoid arthritis and other conditions.
It's still an open question in terms of cause and effect.
but the data are really interesting supporting the idea that in some patients, damage to the
vagus nerve or dysfunction, as a better word, of the vagus nerve may somehow contribute upstream
to the problem of too much inflammation.
What's interesting to me, though, is that the euphemism for this, like, overactive nervous
system feels almost opposite to what you're describing, which is, like, damage to your nerves,
you know?
You said it right.
There's too many euphemisms.
and we really do have a semantic problem, right?
And that's because individual nerves, individual neurons, have individual functions.
And so to make a generalization about, I'm going to do this general behavior,
and it's going to affect my vagus nerve in this specific way,
belies the reality that each and every fiber can act specifically and selectively.
I want to talk about what this is.
means for patients, what has it been like for you to go from the sort of basic research discovery
to an FDA approved treatment?
It is incredibly exciting and gratifying to see it progress from a laboratory idea on the
back of a napkin to a clinically approved therapy.
And, you know, when I meet patients who now are walking around with an implanted
vagus nerve stimulator in their neck, and they tell me that they used to be nearly disabled
from rheumatoid arthritis, and now they're living a normal life and not taking in a medication.
It's the most gratifying thing you could ever hope to experience.
It won't be for everybody.
We are still in early days, but what we know right now is that about 80% of people with
rheumatoid arthritis not responding to drug therapy, about 80% of them are significantly better
one year after this. So it's hard to put to words how gratifying that is, professionally and personally.
What other conditions are people investigating vagus nerve treatments for?
There is a long list of conditions being investigated, and the reason for that is actually
because of the fact that vagus nerve stimulation can control inflammation. And inflammation
is either a contributing cause or a root cause. So conditions like cancer, like diabetes,
like obesity, like other autoimmune conditions like inflammatory bowel disease and multiple sclerosis,
and even potentially diseases like heart disease and stroke. I am aware of either laboratory-based
studies or ongoing clinical studies that are exploring the use of one form of vagus nerve
stimulation or another for all of those conditions. You know, treating
disease through a device through electrical stimulation feels really different than like what we're used to, medications and surgery.
Have you found barriers getting people on board with this idea?
Yes and no. You'd be surprised. It turns out that early on the data were so clear for immunologists in particular,
the doctors and scientists who study inflammation. It was so clear that vagus nerve stimulation
in laboratory studies could be effective that it was accepted relatively quickly. And then as the
story moved into clinical testing, patients have embraced this. Many of the drugs that they're
using today, they're extraordinarily expensive, and typically only work about 40 or 50% of the time.
And perhaps most importantly, patients are looking for alternatives.
because the drugs they're taking have serious, serious side effects.
So the patients want options, and I think patient demand ultimately will drive this.
Kevin, thanks so much for being here today.
Thank you for having me on, Flora.
Dr. Kevin Tracy is a neurosurgeon researcher and president and CEO of the Feinstein Institute's for Medical Research at Northwell Health.
He's the author of The Great Nerve, the new science of the vagus nerve, and how to harness its healing reflexes.
This episode was produced by Shoshana Bucksbaum, and I just want to thank everyone who called in for this segment.
We really appreciated your thoughtful questions and stories.
They were so helpful in shaping our approach.
So thank you for that.
And if you have a lead you'd like us to look into, give us a ring.
8774 SciFRI.
8774 SciFRI.
The listener line is always open.
I'm Flora Lichten.
We'll see you tomorrow.
