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Catalog Number:
21489
CAS Number:
57105-50-7
N- (3-indolilacetil)-L-fenilalanina
Synonym(s):
Ácido 2-[(1 H -indol-3-carbonil)amino]-3-fenilpropiónico
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Product Information

N-(3-Indolylacetyl)-L-phenylalanine is a unique amino acid derivative that has garnered attention for its potential applications in pharmaceutical and biochemical research. This compound is recognized for its structural similarity to natural amino acids, which allows it to interact effectively with biological systems. Its indole moiety contributes to its ability to modulate various biological pathways, making it a valuable tool in drug development and therapeutic research.

Researchers have explored N-(3-Indolylacetyl)-L-phenylalanine for its role in enhancing the efficacy of certain treatments, particularly in neuropharmacology and cancer research. Its potential to influence neurotransmitter systems and promote cell signaling pathways positions it as a promising candidate for developing novel therapeutic agents. Additionally, its unique properties may offer advantages over similar compounds, such as improved bioavailability and specificity in targeting biological receptors. This makes it an attractive option for professionals seeking innovative solutions in their research and development endeavors.

Synonyms
Ácido 2-[(1 H -indol-3-carbonil)amino]-3-fenilpropiónico
CAS Number
57105-50-7
Molecular Formula
C19H18N2O3
Molecular Weight
322.36
MDL Number
MFCD00075336
PubChem ID
4255608
Conditions
Conservar entre 0 y 8 °C.
General Information
Synonyms
Ácido 2-[(1 H -indol-3-carbonil)amino]-3-fenilpropiónico
CAS Number
57105-50-7
Molecular Formula
C19H18N2O3
Molecular Weight
322.36
MDL Number
MFCD00075336
PubChem ID
4255608
Conditions
Conservar entre 0 y 8 °C.
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N-(3-Indolylacetyl)-L-phenylalanine is widely utilized in research focused on:

  • Pharmaceutical Development: This compound is explored for its potential therapeutic effects, particularly in developing treatments for neurological disorders and cancer due to its unique structural properties.
  • Biochemical Research: It serves as a valuable tool in studying protein interactions and enzyme activities, helping researchers understand complex biological processes.
  • Drug Design: The compound's ability to mimic natural substrates makes it a candidate for designing new drugs that target specific biological pathways, enhancing efficacy and reducing side effects.
  • Natural Product Synthesis: It is used in synthesizing various natural products, providing a pathway for creating compounds with medicinal properties, which can be crucial for drug discovery.
  • Food and Nutraceuticals: Its potential health benefits are being investigated for incorporation into functional foods and dietary supplements, appealing to health-conscious consumers.

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