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Catalog Number:
29673
CAS Number:
222725-35-1
Fmoc- N- (allyl)-glycine
Purity:
≥ 99 % (HPLC)
Documents
$141.41 /100 mg
Taille
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Product Information

Fmoc-N-(allyl)-glycine is a versatile amino acid derivative widely utilized in peptide synthesis and drug development. This compound features a fluorenylmethoxycarbonyl (Fmoc) protecting group, which is essential for the selective protection of amino groups during the synthesis of peptides. Its unique allyl side chain enhances its reactivity and allows for further functionalization, making it an attractive choice for researchers looking to create complex peptide structures.

In the pharmaceutical industry, Fmoc-N-(allyl)-glycine is particularly valuable for the development of bioactive peptides and therapeutic agents. Its ability to undergo various coupling reactions facilitates the construction of diverse peptide libraries, which can be screened for potential drug candidates. Additionally, its stability under standard reaction conditions ensures reliable performance in synthetic applications. Researchers appreciate its ease of use and the ability to achieve high yields in peptide synthesis, making it a preferred choice for both academic and industrial applications.

CAS Number
222725-35-1
Purity
≥ 99 % (HPLC)
Molecular Formula
C 20 H 194
Molecular Weight
337.38
MDL Number
MFCD17976766
PubChem ID
10640670
Melting Point
76-90 °C
Appearance
Poudre blanche à blanc cassé
Conditions
Conserver à 0-8°C
General Information
CAS Number
222725-35-1
Purity
≥ 99 % (HPLC)
Molecular Formula
C 20 H 194
Molecular Weight
337.38
MDL Number
MFCD17976766
PubChem ID
10640670
Melting Point
76-90 °C
Appearance
Poudre blanche à blanc cassé
Conditions
Conserver à 0-8°C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Fmoc-N-(allyl)-glycine is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a key building block in the synthesis of peptides, allowing researchers to create complex structures with specific functionalities.
  • Drug Development: Its unique properties make it valuable in the pharmaceutical industry for developing new drugs, particularly in targeting specific biological pathways.
  • Bioconjugation: The allyl group can be used for bioconjugation applications, facilitating the attachment of biomolecules to surfaces or other molecules, which is crucial in diagnostics and therapeutic development.
  • Research in Neuroscience: Fmoc-N-(allyl)-glycine is explored in neuroscience studies for its potential role in modulating neurotransmitter systems, contributing to the understanding of brain functions and disorders.
  • Material Science: Its chemical properties allow for the development of novel materials with specific mechanical or chemical characteristics, useful in various industrial applications.

Citations