Boc-His(Bom)-OH: A Key Protected Histidine Derivative for Peptide Synthesis | Manufacturer & Supplier

Discover the critical role of Boc-His(Bom)-OH (CAS: 79950-65-5) in advanced peptide synthesis. As a leading manufacturer and supplier, we provide high-purity intermediates essential for pharmaceutical R&D and complex organic chemistry. Explore its properties and applications, and secure your supply from a trusted source in China.

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Advantages of Sourcing Boc-His(Bom)-OH from Us

Uncompromising Quality and Purity

We guarantee the high purity of our Boc-His(Bom)-OH, meeting the demanding specifications required for pharmaceutical intermediates and advanced research, making us a preferred supplier for discerning clients.

Competitive Pricing and Bulk Availability

As a direct manufacturer, we offer competitive prices for Boc-His(Bom)-OH, making it cost-effective for R&D departments and bulk procurement managers looking to buy high-quality materials.

Consistent Supply Chain and Reliable Delivery

Benefit from our stable manufacturing capabilities and efficient logistics. We ensure a consistent supply of Boc-His(Bom)-OH, allowing you to maintain your project timelines without interruption.

Key Applications of Boc-His(Bom)-OH

Peptide Synthesis

Boc-His(Bom)-OH is an indispensable building block for solid-phase peptide synthesis (SPPS), enabling the incorporation of protected histidine residues into complex peptide sequences with high fidelity.

Pharmaceutical R&D

Its use extends to the development of novel therapeutic peptides and small molecules, where precise control over amino acid functionality is critical for drug discovery and formulation.

Organic Synthesis Intermediates

As a versatile organic intermediate, Boc-His(Bom)-OH is employed in various synthetic pathways for creating complex organic molecules with applications in life sciences and materials research.

Custom Peptide Projects

For researchers and companies undertaking custom peptide projects, sourcing high-quality Boc-His(Bom)-OH ensures the success and reproducibility of their tailored peptide sequences.