Fmoc-D-3-Chlorophenylalanine: High-Purity Amino Acid for Peptide Synthesis and Drug Development

Discover Fmoc-D-3-Chlorophenylalanine, a critical component for advanced peptide synthesis and pharmaceutical research. Unlock new possibilities in drug discovery and development with this high-purity building block, expertly manufactured to meet stringent industry standards. We are a reliable supplier, offering competitive pricing for bulk purchases.

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Key Advantages of Our Product

Superior Purity for Uncompromised Results

Our Fmoc-D-3-Chlorophenylalanine is guaranteed to meet high purity standards, crucial for complex peptide synthesis and pharmaceutical applications. This ensures predictable outcomes in your research and development processes.

Versatile Applications in Research

This compound is invaluable for Structure-Activity Relationship (SAR) studies, peptide-based drug development, and bioconjugation. Its unique structural features allow for precise modifications and enhanced biological activity, making it a key ingredient for innovation.

Cost-Effective Sourcing and Bulk Availability

As a leading supplier, we offer competitive pricing and bulk purchase options for Fmoc-D-3-Chlorophenylalanine. Secure your supply chain and manage costs effectively by partnering with us for your procurement needs.

Core Application Areas

Peptide Synthesis

Fmoc-D-3-Chlorophenylalanine serves as a protected amino acid building block in Solid-Phase Peptide Synthesis (SPPS), enabling precise assembly of complex peptide sequences for therapeutic or research purposes.

Drug Development

Its incorporation into peptide structures can enhance pharmacological properties, making it a vital component in the discovery and development of novel peptide-based therapeutics.

Medicinal Chemistry Research

Researchers use this compound for Structure-Activity Relationship (SAR) studies, understanding how structural modifications, like the chlorine atom, affect biological activity and efficacy.

Biochemical & Biophysical Studies

It is instrumental in studies investigating protein-protein interactions, enzyme mechanisms, and peptide folding, providing critical insights into biological processes.