Fmoc-His(Boc)-OH·CHA: An Essential Building Block for Advanced Peptide Synthesis
Unlock complex peptide sequences with this high-purity, protected histidine derivative for Fmoc SPPS.
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Fmoc-His(Boc)-OH cyclohexylamine salt
Fmoc-His(Boc)-OH·CHA is a critical protected amino acid derivative, specifically a derivative of L-histidine, widely employed in solid-phase peptide synthesis (SPPS). Its protected nature, utilizing the Fmoc group on the alpha-amino and Boc group on the imidazole ring, allows for controlled and stepwise addition of amino acids, ensuring the integrity and desired sequence of the final peptide product. This compound is crucial for researchers and manufacturers involved in creating peptides for therapeutic, diagnostic, and research applications.
- Discover the intricacies of Fmoc-His(Boc)-OH·CHA synthesis and its role in creating complex peptide sequences, a key aspect for advancing peptide-based research.
- Explore reliable Fmoc-His(Boc)-OH·CHA supplier options to ensure consistent quality for your peptide synthesis projects.
- Understand the factors influencing Fmoc-His(Boc)-OH·CHA price, aiding in cost-effective planning for large-scale production.
- Learn about the diverse Fmoc-His(Boc)-OH·CHA applications beyond basic synthesis, highlighting its versatility in biochemical research.
Product Advantages
Enhanced Peptide Purity
The high purity of Fmoc-His(Boc)-OH·CHA for Fmoc SPPS directly contributes to cleaner reaction products, minimizing side reactions and simplifying purification processes in your peptide synthesis.
Facilitates Complex Peptide Construction
This histidine derivative is an essential building block, enabling the controlled and efficient construction of complex peptide sequences required for advanced pharmaceutical research.
Reliable Amino Acid Protection
With established Fmoc and Boc protection strategies, this compound ensures the stability of the histidine side chain and alpha-amino group throughout the solid-phase peptide synthesis cycle.
Key Applications
Peptide Synthesis
As a protected amino acid, it is fundamental for constructing specific peptide chains in solid-phase peptide synthesis, crucial for research and drug development.
Fmoc SPPS
This derivative is specifically designed for the Fmoc strategy in SPPS, offering excellent compatibility and performance in this widely used peptide synthesis method.
Pharmaceutical Research
Used extensively in creating peptide-based drugs and therapeutics, aiding in drug discovery and development processes where precise molecular structures are vital.
Biotechnology
Supports various biotechnological applications, including the synthesis of peptides for diagnostics, biomaterials, and scientific research tools.
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