Acetylcholinesterase
Acetylcholinesterase is the enzyme that breaks down acetylcholine at nerve synapses, and compounds affecting it are central to research into Alzheimer’s disease and myasthenia gravis. Reference standards support enzyme inhibition assays, drug metabolism and impurity profiling, and neurotoxicology research into organophosphates. Working with a specialized supplier means each standard arrives with confirmed identity, documented purity, and a certificate of analysis, with related impurities, metabolites, and deuterated variants available from one place rather than several vendors. These standards also support neurotoxicology research into organophosphates.
Showing 1–16 of 91 results
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(-)-Eseroline Fumarate Salt
CAS Number: 70310-73-5
Molecular Formula: C13H18N2O . (C4H4O4)
Catalogue Number: RCLS2L141754
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(2E)-Dehydrodonepezil (Donepezil Impurity)
CAS Number: 145546-80-1
Molecular Formula: C24H27NO3
Catalogue Number: RCLS2L127497
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(alphaS)-N,N,alpha-Trimethyl-3-(4-nitrophenoxy)benzenemethanamine
CAS Number: 1346242-32-7
Molecular Formula: C16 H18 N2 O3
Catalogue Number: RCLS2L185075
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(BetaS)-Beta-[(1,1-tert-Butyloxycarbonyl)amino]-4-hydroxy-benzenepropanoic Acid Methyl Ester
CAS Number: 474295-85-7
Molecular Formula: C15H21NO5
Catalogue Number: RCLS2L116198
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(S)-1-(3-Methoxyphenyl)-N,N-(dimethyl-d4)ethanamine
CAS Number: N/A
Molecular Formula: C11 D4 H13 N O
Catalogue Number: RCLS2L160481
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(S)-Rivastigmine
CAS Number: 123441-03-2
Molecular Formula: C14 H22 N2 O2
Catalogue Number: RCLS2L177851
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1-(Phenylmethyl)-4-piperidinamine
CAS Number: 50541-93-0
Molecular Formula: C12H18N2
Catalogue Number: RCLS2L173671
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1-Benzyl-4-[(5-benzyloxy-6-methoxy-1-indanone)-2-ylidenyl]methylpiperidine
CAS Number: 120013-75-4
Molecular Formula: C30 H31 N O3
Catalogue Number: RCLS2L109765
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1-Deoxo-1,2-dehydro-N-desbenzyl-N-tert-butyloxycarbonyl Donepezil
CAS Number: 1346600-41-6
Molecular Formula: C22H31NO4
Catalogue Number: RCLS2L127870
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1-Methyl-pyridinium Chloride
CAS Number: 7680-73-1
Molecular Formula: C6H8ClN
Catalogue Number: RCLS2L163952
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1,2-Acenaphthylenedione
CAS Number: 82-86-0
Molecular Formula: C12H6O2
Catalogue Number: RCLS2L100287
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1,5-Bis(4-Allyldimethylammoniumphenyl)pentan-3-one, Dibromide
CAS Number: 402-40-4
Molecular Formula: C27 H38 N2 O . 2 Br
Catalogue Number: RCLS2L111366
Accurate Acetylcholinesterase Standards for Every Stage of Research
Accurate acetylcholinesterase reference standards are required wherever enzyme inhibition is being measured, whether for early drug discovery, impurity characterization, or ongoing quality control of an approved therapy. Inconsistent or poorly characterized material introduces variability that can undermine an entire study and delay decisions that depend on it.
Clinivex supplies a comprehensive range of acetylcholinesterase reference standards and related inhibitor compounds, each backed by a certificate of analysis and supported by a technical team experienced in sourcing niche and hard-to-find materials. Our portfolio spans inhibitors, impurities, and metabolites, so labs studying enzyme activity from multiple angles can source everything from one place.
As an ISO 9001:2015 and GMP certified supplier trusted by laboratories and pharmaceutical companies across the USA and Canada, we prioritize accuracy, documentation, and fast delivery on every order we ship. Our team can also advise on suitable alternatives when a specific compound is out of stock or discontinued.
Receptor-level data from acetylcholine receptors completes the other half of this signaling pathway, since acetylcholinesterase activity and receptor binding are frequently studied together. Acetylcholinesterase inhibitors, including certain organophosphates, are also a recurring subject in forensic and toxicological research, where exposure and poisoning cases are investigated.
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Frequently Asked Questions
It is used to study enzyme inhibition, particularly for drugs targeting neurodegenerative conditions like Alzheimer’s disease, and to evaluate how compounds such as organophosphates affect cholinergic signaling and nerve function.
Organophosphates bind to and inhibit acetylcholinesterase, allowing acetylcholine to accumulate at synapses, which is the basis for their toxicity in both pesticide exposure and nerve agent poisoning.
Excessive inhibition allows acetylcholine to build up at synapses, overstimulating muscles and glands, which is the underlying mechanism behind organophosphate poisoning.
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