Boc-(R)-3-Amino-4-(3-thienyl)-butyric Acid: High-Purity Building Block for Peptide Synthesis & Drug Discovery

Discover the critical role of Boc-(R)-3-Amino-4-(3-thienyl)-butyric acid, a high-purity chemical intermediate essential for advanced peptide synthesis and pharmaceutical research. As a leading supplier in China, we offer this vital building block to support your innovative drug development projects.

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Key Advantages for Your Research & Procurement

Exceptional Purity for Reliable Synthesis

Ensure the integrity of your synthesized compounds with our Boc-(R)-3-Amino-4-(3-thienyl)-butyric acid, guaranteed at 97% purity. This high standard is critical for researchers focused on precise peptide synthesis and the development of high-quality pharmaceutical intermediates.

Streamlined Peptide Synthesis

The N-Boc protection on this amino acid derivative significantly aids in selective modifications during peptide synthesis. Researchers and formulators can buy this product to improve reaction yields and simplify purification processes, making it a cost-effective solution.

Dependable Manufacturing Partner

As a dedicated supplier from China, we offer consistent availability and competitive prices for Boc-(R)-3-Amino-4-(3-thienyl)-butyric acid. Procurement managers can confidently purchase this essential chemical building block, ensuring supply chain stability for their R&D projects.

Core Applications in Scientific Advancement

Peptide Synthesis

Boc-(R)-3-Amino-4-(3-thienyl)-butyric acid is extensively used as a protected amino acid for incorporating unique structural motifs into peptides, crucial for peptide-based drug development.

Pharmaceutical Intermediates

Serve as a vital chiral building block in the multi-step synthesis of active pharmaceutical ingredients (APIs), enabling the development of novel therapeutics.

Organic Synthesis & Chemical Research

Its distinct thienyl and chiral centers make it valuable for a range of custom organic synthesis projects and academic research exploring new chemical entities.

Drug Discovery & Development

Researchers often buy this compound for its potential application in creating targeted therapies and understanding structure-activity relationships in new drug candidates.