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Catalog Number:
47028
Fmoc-Phe(3-COOAll)-OH
Purity:
≥ 99.5% (Chiral HPLC)
Documents
$130.00 /100MG
Pack Size Availability Price
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Product Information

Fmoc-Phe(3-COOAll)-OH is a versatile amino acid derivative widely utilized in peptide synthesis and drug development. This compound features a phenylalanine residue protected by the Fmoc (9-fluorenylmethoxycarbonyl) group, which is crucial for selective deprotection during solid-phase peptide synthesis. The presence of the 3-COOAll (3-allyloxycarbonyl) moiety enhances its utility in various coupling reactions, making it an ideal choice for researchers focused on synthesizing complex peptides with specific functionalities.

Researchers and industry professionals can leverage Fmoc-Phe(3-COOAll)-OH in the development of therapeutic peptides, particularly in oncology and immunology, where precise modifications are essential for efficacy. Its unique structure allows for improved solubility and stability in biological environments, facilitating the design of more effective drug candidates. Additionally, the compound's compatibility with various coupling reagents and its ability to undergo selective reactions make it a valuable tool in the arsenal of peptide chemists.

Purity
≥ 99.5% (Chiral HPLC)
Molecular Formula
C28H25NO6
Molecular Weight
471.5
Appearance
White powder
Optical Rotation
[ॅ]D20 = -28 +/- 1 ° (C=1 in DMF)
Conditions
Store at RT
General Information
Purity
≥ 99.5% (Chiral HPLC)
Molecular Formula
C28H25NO6
Molecular Weight
471.5
Appearance
White powder
Optical Rotation
[ॅ]D20 = -28 +/- 1 ° (C=1 in DMF)
Conditions
Store at RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Fmoc-Phe(3-COOAll)-OH 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 specific sequences for studying protein interactions and functions.
  • Drug Development: In pharmaceutical research, it is used to design and optimize peptide-based drugs, which can lead to more effective treatments with fewer side effects.
  • Bioconjugation: Its unique functional groups facilitate the attachment of peptides to various biomolecules, enhancing the development of targeted therapies and diagnostic tools.
  • Research in Cancer Therapy: This compound is explored in the creation of targeted cancer therapies, where specific peptides can bind to cancer cells, improving treatment efficacy.
  • Material Science: Fmoc-Phe(3-COOAll)-OH is also applied in the development of smart materials that respond to biological stimuli, useful in drug delivery systems.

Citations