BOC-D-4,4′-Biphenylalanine CAS 128779-47-5: Comprehensive User Guide
Table of Contents
1. Product Overview & Specifications
BOC-D-4,4′-Biphenylalanine (CAS 128779-47-5) is a protected amino acid derivative widely used in peptide synthesis and pharmaceutical research. Its unique biphenyl structure enhances stability and binding affinity in molecular designs.
| Parameter | Specification |
|---|---|
| Molecular Formula | C₂₀H₂₃NO₄ |
| Molecular Weight | 341.41 g/mol |
| Purity | ≥98% (HPLC) |
| Appearance | White crystalline powder |
| Storage | 2-8°C, protected from light |
2. Applications & Use Cases
Key Applications:
- Peptide Drug Development: Enhances peptide stability in protease-rich environments.
- Kinase Inhibitor Design: Biphenyl moiety improves target binding in oncology research.
- Bioconjugation: Used as a linker in antibody-drug conjugates (ADCs).
Performance Advantages:
- Superior in vivo stability compared to non-aromatic analogs.
- Enables precise stereochemical control in chiral molecule synthesis.
3. Client Success Stories
Case Study 1: Oncology Therapeutics (Shanghai) Co., Ltd.
- Challenge: Improve half-life of PD-1 inhibitor peptide.
- Solution: Incorporated BOC-D-4,4′-Biphenylalanine at N-terminus.
- Result: 3.2x longer serum stability vs. original compound.
Case Study 2: Advanced Materials Research Institute (Singapore)
- Challenge: Develop self-assembling peptides for conductive nanomaterials.
- Solution: Utilized biphenylalanine’s π-π stacking capability.
- Result: Achieved 15nm conductive nanowires with 98% uniformity.
4. Technical Comparison
| Feature | BOC-D-4,4′-Biphenylalanine | Standard BOC-L-Phenylalanine |
|---|---|---|
| Aromatic Surface Area | 184 Ų | 98 Ų |
| Solubility in DMF | 82 mg/mL | 120 mg/mL |
| Coupling Efficiency | 94% (HATU) | 88% (HATU) |
5. Contact for Custom Solutions
Request bulk pricing, COA, or custom modifications:
- Email: info@vivalr.com
- Tel: (86) 15866781826
Technical Support: Our peptide chemists provide free consultation on:
- SPPS optimization strategies
- Biphenylalanine incorporation techniques
- Analytical method development (HPLC/MS)
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