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Catalog Number:
11792
CAS Number:
1210-83-9
Acetyl-5-hydroxy-tryptamine
Synonym(s):
Acetyl-serotonine, 3-(2-Acetamidoethyl)-5-hydroxyindole
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Product Information

Acetyl-5-hydroxy-tryptamine, commonly known as 5-Hydroxytryptamine N-acetyl, is a significant biochemical compound that plays a crucial role in various physiological processes. This compound is a derivative of serotonin and is primarily recognized for its applications in neuropharmacology and biochemistry. Researchers utilize Acetyl-5-hydroxy-tryptamine in studies related to mood regulation, sleep cycles, and the modulation of neurotransmitter systems. Its unique structure allows it to interact effectively with serotonin receptors, making it a valuable tool in the exploration of treatments for mood disorders and sleep-related issues.

In addition to its research applications, Acetyl-5-hydroxy-tryptamine has potential uses in the development of pharmaceuticals aimed at enhancing cognitive functions and emotional well-being. Its ability to cross the blood-brain barrier makes it a candidate for further exploration in therapeutic formulations. With its growing relevance in the fields of neuroscience and psychopharmacology, Acetyl-5-hydroxy-tryptamine stands out as a compound of interest for both academic research and industrial applications.

Synonyms
Acetyl-serotonine, 3-(2-Acetamidoethyl)-5-hydroxyindole
CAS Number
1210-83-9
Molecular Formula
C12H14N2O2
Molecular Weight
218.3
MDL Number
MFCD00005656
PubChem ID
903
Conditions
Store at 0-8°C
General Information
Synonyms
Acetyl-serotonine, 3-(2-Acetamidoethyl)-5-hydroxyindole
CAS Number
1210-83-9
Molecular Formula
C12H14N2O2
Molecular Weight
218.3
MDL Number
MFCD00005656
PubChem ID
903
Conditions
Store at 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Acetyl-5-hydroxy-tryptamine is widely utilized in research focused on:

  • Neuroscience Research: This compound is a derivative of serotonin and is often studied for its role in neurotransmission, helping researchers understand mood regulation and potential treatments for depression.
  • Pharmaceutical Development: It serves as a precursor in the synthesis of various pharmaceuticals, particularly those targeting serotonin receptors, which are crucial for developing new antidepressants and anxiolytics.
  • Sleep Studies: Due to its structural similarity to melatonin, it is researched for its effects on sleep patterns and circadian rhythms, providing insights for sleep disorder treatments.
  • Biochemical Assays: Used in laboratory assays to measure serotonin levels, aiding in the diagnosis and understanding of various psychological conditions.
  • Functional Food Development: Investigated for its potential as a dietary supplement to enhance mood and cognitive function, appealing to the growing market for functional foods.

Citations