Tryptamine
98%
Reagent
Code: #111303
Alias
Tryptamine; 3-(2-Aminoethyl)indole
CAS Number
61-54-1
blur_circular Chemical Specifications
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Molecular Information
Weight
160.22 g/mol
Formula
C₁₀H₁₂N₂
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Registry Numbers
EC Number
200-510-5
MDL Number
MFCD00005661
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Physical Properties
Melting Point
113-116 °C(lit.)
Boiling Point
137 °C0.15 mm Hg(lit.)
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Storage & Handling
Storage
2~8°C
description Product Description
Tryptamine is primarily used in research settings to study its effects on the central nervous system, particularly its interaction with serotonin receptors. It serves as a foundational structure for synthesizing various psychoactive compounds, including neurotransmitters and hallucinogens. In biochemistry, it is utilized to explore the mechanisms of neurotransmission and the biochemical pathways involving indoleamines. Additionally, tryptamine derivatives are investigated for their potential therapeutic applications in treating neurological disorders, such as depression and anxiety, due to their ability to modulate brain chemistry. Its role in the development of novel pharmaceuticals continues to be a significant area of interest.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Purity (%) | 98-100% |
Melting Point (°C) | 113-118 |
Water by Karl Fischer (%) | 0-2% |
Appearance | Off-white Powder |
Infrared Spectrum | Conforms To Structure |
Solubility in Methanol | Almost transparent |
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Tryptamine
Tryptamine is primarily used in research settings to study its effects on the central nervous system, particularly its interaction with serotonin receptors. It serves as a foundational structure for synthesizing various psychoactive compounds, including neurotransmitters and hallucinogens. In biochemistry, it is utilized to explore the mechanisms of neurotransmission and the biochemical pathways involving indoleamines. Additionally, tryptamine derivatives are investigated for their potential therapeutic applications in treating neurological disorders, such as depression and anxiety, due to their ability to modulate brain chemistry. Its role in the development of novel pharmaceuticals continues to be a significant area of interest.
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