(S)-2-((Methoxycarbonyl)amino)-3-Methylbutanoic Acid: A Key Pharmaceutical Intermediate

Discover the critical role of (S)-2-((Methoxycarbonyl)amino)-3-Methylbutanoic acid (CAS: 74761-42-5) in advanced pharmaceutical synthesis. As a premier supplier in China, NINGBO INNO PHARMCHEM CO.,LTD. provides high-purity intermediates essential for groundbreaking drug development.

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Advantages of Sourcing from NINGBO INNO PHARMCHEM CO.,LTD.

Uncompromised Quality and Purity

We deliver (S)-2-((Methoxycarbonyl)amino)-3-methylbutanoic acid with guaranteed purity levels, ensuring that your R&D and production processes are supported by the highest quality materials. This commitment makes us a preferred supplier in the fine chemical industry.

Expertise in Pharmaceutical Intermediates

Leveraging extensive experience, we specialize in providing essential pharmaceutical intermediates like CAS 74761-42-5. Our in-depth knowledge helps drive efficient drug synthesis and formulation for our clients worldwide.

Streamlined Procurement and Supply Chain

As a reliable China manufacturer and supplier, we simplify your procurement process for this vital intermediate. We focus on consistent supply, competitive pricing, and efficient logistics to meet your purchase demands.

Key Applications of N-Methoxycarbonyl-L-valine

Pharmaceutical Synthesis

This N-methoxycarbonyl-L-valine is a critical chiral building block for synthesizing complex APIs, including antivirals like Ledipasvir and Daclatasvir, supporting novel drug development.

Medicinal Chemistry Research

Researchers utilize this compound in medicinal chemistry to explore new therapeutic agents and optimize drug candidates. Its defined structure is key for SAR studies.

Amino Acid and Peptide Chemistry

As a protected amino acid derivative, it is fundamental in peptide synthesis and the creation of specialized amino acid-based compounds for various bio-applications.

Custom Chemical Manufacturing

Companies seeking specific esterified amino acid derivatives can rely on our custom synthesis capabilities, ensuring access to precisely tailored chemical intermediates.