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Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research Coupling Efficiency

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Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research Coupling Efficiency

Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research Coupling Efficiency
Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research Coupling Efficiency

Grote Afbeelding :  Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research Coupling Efficiency Beste prijs

Productdetails:
Plaats van herkomst: China
Merknaam: Enlai Biotech
Certificering: ISO 9001 COA HPLC NMR
Betalen & Verzenden Algemene voorwaarden:
Min. bestelaantal: Onderhandeling
Prijs: Onderhandelbaar
Verpakking Details: Binnen: dubbele PE -tas buiten: papier drum
Levertijd: op voorraad
Betalingscondities: T/T
Levering vermogen: 100 kilogram per maand
Gedetailleerde productomschrijving
Productnaam: Fmoc-β-Ala-Phe-OH CAS-NR: NA
MW: 387.43 verschijning: CHINA
HPLC: 99% Opslag: kamertemperatuur

Fmoc-β-Ala-Phe-OH SPPS Amino Acid Impurity Research

High-purity Fmoc-β-Ala-Phe-OH for Impurity Research and peptide development.

Name Fmoc-β-Ala-Phe-OH
CAS NO NA
Molecular Weight 387.43
Appearance White Powder
HPLC Purity 99%+
Synonyms Fmoc-beta-Ala-Phe-OH
Key Applications
1. Solid-Phase Peptide Synthesis (SPPS)

This is the primary application.

  • Used as a dipeptide building block in peptide chain elongation
  • Compatible with the Fmoc strategy (base-labile protecting group)
  • The β-alanine unit:
    • Introduces extra flexibility
    • Reduces steric hindrance
    • Improves coupling efficiency in certain sequences

2. Peptide Drug Design

This structure is useful in medicinal chemistry:

  • β-Ala acts as a flexible linker
  • Phe (phenylalanine) provides hydrophobic and aromatic interactions

Typical purposes:

  • Optimization of receptor binding (especially GPCR-related peptides)
  • Improving biological activity and selectivity
  • Modulating metabolic stability

3. Linker / Spacer Component

Widely used as a spacer unit in complex systems:

  • PEGylation
  • Peptide–small molecule conjugates
  • Drug delivery systems

β-Ala offers a longer and more flexible spacer than Glycine

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