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Catalog Number:
21341
CAS Number:
68062-88-4
N-acetil-5-benciloxitriptamina
Synonym(s):
3-(N-acetil-2-aminoetil)-5-benciloxiindol
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Product Information

N-Acetyl-5-benzyloxytryptamine is a versatile compound recognized for its significant role in various biochemical applications. This derivative of tryptamine features a unique benzyloxy group that enhances its solubility and bioavailability, making it an excellent candidate for research in neuropharmacology and medicinal chemistry. Its structural similarity to serotonin allows it to interact with serotonin receptors, which has led to investigations into its potential use in mood regulation and sleep modulation.

Researchers have explored N-Acetyl-5-benzyloxytryptamine for its potential therapeutic effects in treating conditions such as depression and anxiety, as well as its applications in the development of novel psychoactive substances. Its unique properties also make it a valuable tool in the synthesis of other complex organic compounds, providing a pathway for the creation of new pharmaceuticals. With its promising applications and benefits, N-Acetyl-5-benzyloxytryptamine stands out as a compound of interest for both academic research and industrial applications.

Synonyms
3-(N-acetil-2-aminoetil)-5-benciloxiindol
CAS Number
68062-88-4
Molecular Formula
C19H20N2O2
Molecular Weight
308.38
MDL Number
MFCD01074489
PubChem ID
563605
Conditions
Conservar entre 0 y 8 °C.
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
General Information
Synonyms
3-(N-acetil-2-aminoetil)-5-benciloxiindol
CAS Number
68062-88-4
Molecular Formula
C19H20N2O2
Molecular Weight
308.38
MDL Number
MFCD01074489
PubChem ID
563605
Conditions
Conservar entre 0 y 8 °C.
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Properties
Additional property information coming soon!
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Applications

N-Acetyl-5-benzyloxytryptamine is widely utilized in research focused on:

  • Neuroscience Research: This compound is studied for its potential effects on serotonin receptors, making it valuable in understanding mood disorders and developing antidepressants.
  • Pharmaceutical Development: It serves as a lead compound for synthesizing new drugs aimed at treating sleep disorders, thanks to its structural similarity to melatonin.
  • Biochemical Studies: Researchers use it to investigate the biochemical pathways of tryptamines, helping to elucidate their roles in various physiological processes.
  • Natural Product Synthesis: The compound is employed in the synthesis of other complex organic molecules, benefiting industries focused on creating novel therapeutic agents.
  • Drug Formulation: Its properties allow it to be incorporated into formulations aimed at enhancing bioavailability and efficacy of active pharmaceutical ingredients.

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