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Catalog Number:
47030
Fmoc-N-Me-Phe(3-COOtBu)-OH
Purity:
≥ 99,5 % (HPLC chirale)
Documents
$240.00 /100 mg
Taille
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Product Information

Fmoc-N-Me-Phe(3-COOtBu)-OH is a versatile amino acid derivative widely utilized in peptide synthesis and drug development. This compound features a 9-fluorenylmethoxycarbonyl (Fmoc) protecting group, which is essential for the selective protection of amino groups during the synthesis of peptides. Its unique structure, including the N-methyl and tert-butyl ester functionalities, enhances its stability and solubility, making it an ideal choice for researchers in the field of medicinal chemistry and biochemistry.

This compound is particularly valuable in the synthesis of complex peptides, allowing for the introduction of various functional groups while maintaining high purity and yield. Its applications extend to the development of pharmaceuticals, where it can be used to create peptide-based drugs with improved bioavailability and efficacy. Additionally, Fmoc-N-Me-Phe(3-COOtBu)-OH serves as a key intermediate in the production of peptide libraries for drug discovery, enabling researchers to explore a wide range of therapeutic options.

Purity
≥ 99,5 % (HPLC chirale)
Molecular Formula
C 30 H 316
Molecular Weight
501.57
Appearance
Poudre blanche
Optical Rotation
[α] D 20 = -44 ± 1 ° (C = 1 dans DMF)
Conditions
Conserver entre 2 et 8 °C
General Information
Purity
≥ 99,5 % (HPLC chirale)
Molecular Formula
C 30 H 316
Molecular Weight
501.57
Appearance
Poudre blanche
Optical Rotation
[α] D 20 = -44 ± 1 ° (C = 1 dans DMF)
Conditions
Conserver entre 2 et 8 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Fmoc-N-Me-Phe(3-COOtBu)-OH is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a key building block in solid-phase peptide synthesis, allowing researchers to create complex peptides efficiently.
  • Drug Development: Its unique structure enables the design of peptide-based drugs, particularly in targeting specific biological pathways, enhancing therapeutic efficacy.
  • Bioconjugation: The compound can be used to attach peptides to other molecules, such as antibodies or nanoparticles, improving drug delivery systems.
  • Research in Neuroscience: It is utilized in the study of neuropeptides, aiding in the understanding of neurological functions and potential treatments for disorders.
  • Custom Peptide Libraries: Researchers leverage this compound to create diverse peptide libraries for screening and identifying novel bioactive compounds.

Citations