Acetylcholine D4 Chloride salt

Product Name Acetylcholine D4 Chloride salt
CAT No. CS-O-15405
CAS No. 344298-94-8
Category Stable Isotopes
Stock Enquire
Mol. Wt. Not Available
Mol. For. Not Available
Hazardous This is not a Hazardous Compound
COA View Sample COA
MSDS View Sample MSDS
Canonical Smiles CC(=O)OCC[N+](C)(C)C.[Cl-]
InchIKey JUGOREOARAHOCO-NXMSQKFDSA-M
Inchl InChI=1S/C7H16NO2.ClH/c1-7(9)10-6-5-8(2,3)4;/h5-6H2,1-4H3;1H/q+1;/p-1/i5D2,6D2;
IUPAC (2-acetyloxy-1,1,2,2-tetradeuterioethyl)-trimethylazanium;chloride
Controlled No
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Acetylcholine D4 Chloride salt is a synthetic organic compound that belongs to the class of neurotransmitters known as acetylcholines. It is used mainly in research as a chemical tool to investigate the activity of acetylcholine receptors in the central and peripheral nervous systems. Acetylcholine D4 Chloride salt is a potent agonist for both muscarinic and nicotinic acetylcholine receptors, which are important for the regulation of many physiological processes in the body, including muscle movement, memory and learning, and autonomic nervous system functions such as heart rate and blood pressure. The chemical structure of Acetylcholine D4 Chloride salt is similar to that of naturally occurring acetylcholine, but with a deuterium substitution at the fourth carbon position. This modification allows researchers to differentiate between the effects of acetylcholine and Acetylcholine D4 Chloride salt on receptor activity and signaling pathways. Acetylcholine D4 Chloride salt is typically administered by injection or topical application to neurons or tissue samples in vitro, and its effects are measured using electrophysiological or biochemical assays. Despite its importance in research, Acetylcholine D4 Chloride salt is not approved for clinical use in humans due to its potential toxicity and side effects, including increased heart rate, sweating, and gastrointestinal disturbances. However, its selective agonist activity and ability to modulate acetylcholine receptor signaling make it a valuable tool for investigating the complex mechanisms underlying synaptic transmission and neuromuscular function.

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