Trans-3-Phenyl-L-proline (CAS 118758-48-8): A Key Chiral Building Block for Pharmaceutical Synthesis
Discover the critical role of Trans-3-Phenyl-L-proline (CAS 118758-48-8) in advancing pharmaceutical research. As a leading manufacturer and supplier in China, we provide high-purity compounds essential for innovative drug discovery and development. Explore how our reliable supply chain and commitment to quality can support your R&D needs.
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Trans-3-Phenyl-L-proline
As a trusted manufacturer and supplier of high-purity pharmaceutical intermediates, we offer Trans-3-Phenyl-L-proline (CAS 118758-48-8). This chiral amino acid derivative is indispensable for complex organic synthesis and the development of novel therapeutic agents. Our commitment to quality ensures consistent product specifications for your critical applications.
- High Purity Trans-3-Phenyl-L-proline: Essential for reliable drug discovery processes.
- Chiral Building Block: Critical for stereoselective synthesis in pharmaceuticals.
- Trusted Manufacturer in China: Ensuring consistent supply and competitive pricing.
- Bulk Pharmaceutical Intermediates: Available for large-scale synthesis and manufacturing.
Advantages of Sourcing from Us
Uncompromised Quality and Purity
Our Trans-3-Phenyl-L-proline boasts a purity of 97%+, meeting stringent pharmaceutical R&D requirements. We are a dedicated supplier for researchers and procurement managers looking for reliable chemical building blocks.
Expertise in Chiral Synthesis
Leverage our expertise in chiral chemistry. We provide essential amino acid derivatives like Trans-3-Phenyl-L-proline, crucial for developing stereospecific drugs and understanding biological pathways.
Reliable Supply Chain and Support
As a leading manufacturer and supplier in China, we ensure timely delivery and responsive customer support. Contact us for pricing and bulk purchase inquiries for your pharmaceutical intermediate needs.
Key Applications in Pharmaceutical Research
Pharmaceutical Synthesis
Trans-3-Phenyl-L-proline serves as a vital intermediate in the synthesis of complex pharmaceutical molecules, enabling the creation of new drug candidates.
Organic Chemistry Research
Its unique chiral structure makes it valuable for academic and industrial research in advanced organic chemistry, supporting the development of novel synthetic methodologies.
Drug Discovery & Development
Researchers utilize this compound as a building block in the design and synthesis of potential therapeutic agents, aiding in the quest for new treatments.
Peptide Synthesis
As an amino acid derivative, it can be incorporated into peptides, allowing for the study of modified protein structures and their biological functions.