that's one way. And the other thing is weight any any weight loss program. So intermittent fasting, caloric restriction, you know, even GLP-1 receptor agonist and all the classes of GLP1, anything that is going to make you lose weight, lose fat, visceral fat'sone of the first to go. And in fact, people on on these these weight loss programs or even on exercise training
passing you can kind of exhale it out um and it's actually displaced from the receptor cells and the air leaves your nose but dogs don't want to do that they don't want to get rid of the odorpicture in front of them with every exhale so they exhale mostly out the side slits of their nose so that means
disease than postmenopausal breast cancer that younger women diagnosed with breast cancer more often have hormone receptor negative cancer that young women with breast cancer have a worse prognosis than older women with breastcancer unlike most diseases in medicine um and that the therapy that we've now
an ancient Gene uh that allows animals to R around and take their calories with them plants don't have a fat insulin receptor Gene so and we can design these interventions on computers we can testthem out with uh biological simulators uh all of these different aspects of U health and Medicine
We do the same things over and over, and when we do the same things over and over, we don't challenge our brains to build new neurotransmitter receptors , which means we can't build a new thought.And that's why we get stuck.
This one really looks good. receptors , including things that extend into the infrared and the ultraviolet.
So you want to fill your plate up with as many nutrient-dense foods. the receptor is that would normally allow insulin to bind to it.
cycling it and it's really that simple just your body because it builds up a resistance to it all right your body your receptor sites downregulate so let's get into some more power tips here all right so one of the things that everybody's probably heard about now is this issue with blue light and again I've been talking about this for 5 years
The largest subclass of the human genome is a factory receptor subclass. Olfactory receptors are not just in your nose. They're throughout your body.
and the intestine or the kidney, muscle, and brain. Eighty percent of the calories, or 96 calories, are gonna hit the liver, four times the substrate as with glucose. dopamine receptors . When your dopamine receptors are down regulated, 'cause dopamine is the reward transmitter, when your receptors are down regulated, you need more dopamine to
So the way the drugs appear to work in the mind is that they bind to your serotonin-- one particular serotonin receptor that's very common in the cortex, and they start a cascade of effects. That's what neuroscientists say when they really don't know what's happening for a while.
She had a very small tumor. It expressed the estrogen receptor , so it was the good kind to have. Because it means it could be treated with hormone therapy.
and behavioral differences the first one is that um the dog has hundreds of millions more old factory receptor cells than we do so all know es have receptor cells which are just the cells which the odorant molecules hook into and which may prompt the neuron the cell to Fire
And most people think of the Victorians as being uptight. They named the receptor , the keyhole, they named it the nicotinic acetylcholine receptor .
Oh, I should say one thing that made Takamine unique was that unlike most scientists of the time, he didn't mind patenting his processes. They know the receptor , they know the region of the brain.
Oh, I should say one thing that made Takamine unique was that unlike most scientists of the time, he didn't mind patenting his processes. It's a receptor that's involved in how we feel benzodiazepines drugs, like Valium.
This is the system I've been studying most of the time. This is receptor . And just for comparison, you have something like this, which is actually a relatively small protein. It's three amino acids, just put together.
So it's a small molecule coming from the outside, that will be the top outside of the cell binding to the protein into the receptor , and then it activates. So that happens on the microsecond time scale.
cancer unlike most diseases in medicine um and that the therapy that we've now derived for hormone receptor negative breast cancer is totally different than than the rest of breast cancer so this concept of bodal distribution and an age difference can actually uh lead us to
have many more receptors that are capable of detecting and informing our brains about many more different molecules
is keep your receptors open.
another system of receptors that you might be more familiar with that are called endorphins and there a it's a
are no cannabinoid receptors in that part of the brain stem so nothing with the heart nothing with the lungs which
their nicotinic acetylcholine receptors and in the exact same way so that they're able to attach a sugar molecule
co-evolved uh receptors the other way you can potentially become immune to a
So they have glucose receptors and they can sense the blood sugar, much the same way you do with a skin test when you take a drop of blood.
and the intestine or the kidney, muscle, and brain. Eighty percent of the calories, or 96 calories, are gonna hit the liver, four times the substrate as with glucose. Down regulation of dopamine receptors is addiction. That's what causes addiction. Over on the right, you see a control brain, you see an obese brain, same thing, down regulation of
and the intestine or the kidney, muscle, and brain. Eighty percent of the calories, or 96 calories, are gonna hit the liver, four times the substrate as with glucose. occupy those fewer receptors .
And you've got receptors in your skin, your muscles, your joints, and your organs that live for this moment -- that have been waiting for some kind of threat so that they can do
Soybeans affect primarily the beta estrogen receptor , not the alpha receptor .
It's got all these receptor types in it, and it's this unbelievably useful organ, but we just don't use it for anything.
and it fits really nicely into that receptor site, and it blocks the adenosine.
The caffeine locks into those receptor sites.
what's happening is the receptor the cannabinoid receptors here are signaling to the brain it's like the emergency broadcast system we're in trouble help
You want to be somewhere in the milliseconds time scale because that's when really the bigger things happen. That's when the whole receptor has time to change shape and activate. Because all we want to see is what happens if something binds on the extracellular side, what happens on the intercellular side.
And it adheres to our own estrogen receptor sites.
Well in fact we have 16 different receptor molecules in the brain that recognize serotonin and so those turn on and off on the light/dark cycle.
designed to specifically target certain receptors and affect cells in a very targeted fashion. Or a best way to think
We'd found the olfactory receptors and knew something about them, and there was just much more
or the cells that have the receptors aren't there, but there's still an olfactory nerve that pokes out of your brain through your skull.
is I think that all of our receptors that we care about, like our eyes, our nose, our mouth, our ears, all these receptors
is covered in thousands of little photo receptors that encode all of the visual information, and then send it through the optic nerve
Cannabinoids will affect the serotonin receptors , so it's very smart to talk to your physician
And because you don't have pain receptors , you just don't know it.
It's just that we have receptors for this part and not for the rest of it.
You have 200 million scent receptors in here.
They can also trigger specific receptors , like G-coupled protein receptors in immune cells, to have diverse effects, but the results of which
They're picked up by receptors on the dendrite of the next nerve cell, which can then increase or decrease the likelihood of an electrical signal in that next nerve cell.
You have a different distribution of sensory receptors across the surface of your body.
Your thoughts are not chemical, your thoughts are not electrical, your thoughts are structural. Your brain is literally building new neurotransmitter receptors every millisecond. And in doing that, you have the ability to build new connections, and having the ability to build new connections gives you the ability to have a new thought.