Boc-D-2-Amino-5-phenyl-pentanoic Acid DCHA Salt: Premium Supplier for Peptide Synthesis & Drug Development

Discover high-purity Boc-D-2-Amino-5-phenyl-pentanoic acid DCHA salt, a crucial intermediate for cutting-edge peptide synthesis and pharmaceutical research. Partner with a trusted manufacturer and supplier in China for your advanced chemical needs.

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Key Advantages for Your Research and Production

Exceptional Purity and Consistency

Our Boc-D-2-Amino-5-phenyl-pentanoic acid DCHA salt is characterized by its high purity (≥97.0%), ensuring reliable results in sensitive peptide synthesis and biochemical applications. Trust us for consistent quality batch after batch, a hallmark of a reputable manufacturer.

Versatile Application in Pharmaceutical R&D

This compound is a cornerstone for researchers developing novel therapeutic agents. Its structure makes it ideal for synthesizing peptides with specific biological activities, aiding in the discovery of new treatments for various diseases.

Streamlined Sourcing and Procurement

As a prominent supplier in China, we simplify the procurement process for essential chemical intermediates. Request a quote for Boc-D-2-Amino-5-phenyl-pentanoic acid DCHA salt and experience efficient service from inquiry to delivery.

Core Application Areas

Peptide Synthesis

Utilized as a protected amino acid building block to construct complex peptide sequences for therapeutic and research purposes. Buy high-quality reagents from a dedicated supplier.

Drug Development

Essential intermediate in the synthesis of active pharmaceutical ingredients (APIs) and novel drug candidates, contributing to advancements in medicinal chemistry.

Biochemical Research

Employed in studies investigating protein interactions, enzyme mechanisms, and metabolic pathways, supporting fundamental biological research.

Custom Synthesis Projects

A versatile starting material for custom chemical synthesis, enabling the creation of specialized molecules for targeted research applications. Inquire about our custom synthesis capabilities.