What Is the α7 Nicotinic Acetylcholine Receptor?
There are many types of acetylcholine receptors. The α7 nicotinic acetylcholine receptor (let
It
The α7 receptor is found everywhere that matters.
How Your Body Makes Acetylcholine and Where Your Gut Comes In
Your body builds acetylcholine from two ingredients:
The enzyme choline acetyltransferase puts them together: Acetyl-CoA + Choline → Acetylcholine.
Where does the acetate come from? Your gut bacteria, specifically Bifidobacterium, ferment dietary fiber into short-chain fatty acids, primarily acetate.
The acetate crosses into your bloodstream, enters your brain, and gets converted to acetyl-CoA.
No bifidobacteria → no acetate → no acetyl-CoA → no acetylcholine → α7 receptors sit empty.
That
The factors capable of disrupting Bifidobacteria populations could have downstream effects on acetate production, acetylcholine synthesis, and ultimately cholinergic signaling
Section 2
Evidence That the Spike Protein May Interact with Nicotinic Acetylcholine Receptors
This is the part that sounds like science fiction, but is published, peer-reviewed, and confirmed by multiple independent labs.
The Discovery
In April 2020, French neuroscientists noticed something alarming. When they analyzed the genetic sequence of the SARS-CoV-2 spike protein, they found a region, amino acids Y674 through R685, that looked exactly like snake venom.
Specifically, the spike protein contains a structural motif called a three-finger toxin (3FTx), the same architecture used by:
All of these target nicotinic acetylcholine receptors. Because portions of the spike protein share structural and sequence features with known nicotinic receptor ligands, several investigators have proposed that spike protein may interact with nicotinic acetylcholine receptors.
Experimental studies have since provided supportive evidence.
The Confirmation
Multiple labs have now confirmed this is not just a computer prediction and it
What This Means in Plain English
The spike protein (whether you
The difference is dose and duration. A snakebite is acute. Vaccine-produced spike protein can circulate for weeks or months, depending on individual factors. The exposure is lower-intensity, but chronic and chronic low-dose neurotoxin exposure produces different symptoms than acute poisoning.
Instead of paralysis, you might get brain fog, attention deficits, memory problems, anxiety, and autonomic dysfunction. Sound familiar?