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Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks

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Sertifika
Çin SICHUAN HONGRI PAHRM-TECH CO., LTD Sertifikalar
Çin SICHUAN HONGRI PAHRM-TECH CO., LTD Sertifikalar

Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks

Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks
Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks

Büyük resim :  Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks En iyi fiyat

Ürün ayrıntıları:
Menşe yeri: Çin
Marka adı: Enlai Biotech
Sertifika: ISO 9001 COA HPLC NMR
Ödeme & teslimat koşulları:
Min sipariş miktarı: Müzakere
Fiyat: Anlaşılabilir
Ambalaj bilgileri: İçinde: Dışarıda Çift PE Çantası: Kağıt Davul
Teslim süresi: Stokta var
Ödeme koşulları: T/T
Yetenek temini: Ayda 100 kilogram
Detaylı ürün tanımı
Ürün adı: Fmoc-β-Ala-Ile-OH Paketleme Detayları: Yok
MW: 353.46 Dış görünüş: ÇİN
HPLC: %99 Depolamak: oda sıcaklığı

Fmoc-β-Ala-Ile-OH Impurities Standards For Peptide Building Blocks

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

Name Fmoc-β-Ala-Ile-OH
CAS NO NA
Molecular Weight 353.46
Appearance White Powder
HPLC Purity 99%+
Synonyms Fmoc-beta-Ala-Ile-OH
Key Applications
1. Solid-Phase Peptide Synthesis (SPPS)
  • Used as a dipeptide building block in peptide synthesis
  • Fully compatible with the Fmoc strategy
  • The β-alanine unit:
    • Introduces flexibility
    • Reduces steric hindrance
  • The isoleucine residue (Ile):
    • Is bulky and hydrophobic
    • Can make coupling more challenging → this dipeptide helps improve efficiency

2. Peptide Drug Design
  • β-Ala acts as a flexible spacer
  • Ile provides strong hydrophobic interaction

Used for:

  • Enhancing binding affinity (especially hydrophobic pockets)
  • Modulating peptide conformation
  • Improving metabolic stability

3. Linker / Spacer Applications
  • Acts as a flexible yet hydrophobic linker
  • Common in:
    • Peptide conjugates
    • Drug delivery systems
    • Modified therapeutic peptides

Compared to Glycine-based linkers, it is:

  • Longer (β-Ala)
  • More hydrophobic (Ile)

4. Structure & Conformation Control
  • β-Ala disrupts regular secondary structures
  • Ile tends to promote hydrophobic packing

Applications:

  • Fine-tuning peptide folding
  • Designing protease-resistant sequences

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