Sourcing High-Purity Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric Acid: A Manufacturer's Guide
For professionals in pharmaceutical research and development, the quality of chemical building blocks directly impacts the success of their projects. Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric acid, identified by CAS number 270065-86-6, is one such critical intermediate. Understanding its properties and reliable sourcing is paramount for efficient synthesis and drug discovery.
The Significance of Purity in Chemical Intermediates
Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric acid is a protected amino acid derivative that serves as a versatile building block in organic synthesis. Its structure, featuring a Boc-protected amine, a carboxylic acid group, and a meta-cyanophenyl moiety, makes it highly valuable for constructing complex molecules. In medicinal chemistry, even minor impurities can lead to altered reaction pathways, reduced yields, or the formation of undesired byproducts, potentially compromising the efficacy and safety of the final drug candidate. Therefore, sourcing this compound from a reputable manufacturer that guarantees high purity is not just a preference, but a necessity.
Key Applications and Why They Demand Quality
This amino acid derivative finds its primary utility in:
- Pharmaceutical Synthesis: As a key intermediate in the synthesis of Active Pharmaceutical Ingredients (APIs). The precise stereochemistry and functional groups are vital for building target molecules with specific biological activities.
- Medicinal Chemistry: Used in the design and synthesis of novel therapeutic agents. Researchers rely on its structural features to explore new chemical spaces and optimize drug properties.
- Peptide Synthesis: While not a standard amino acid, its derivatized form can be incorporated into modified peptides or used in the synthesis of peptide mimics.
For any of these applications, especially those aiming for regulatory approval, the traceability and consistency of the chemical intermediate are non-negotiable. When you buy Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric acid, ensure your supplier can provide comprehensive documentation, including Certificates of Analysis (CoA).
Choosing a Reliable Supplier and Manufacturer
When looking to purchase Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric acid, consider the following:
- Manufacturing Capabilities: Does the supplier have robust manufacturing processes that ensure consistent quality and scalability? A manufacturer based in China often offers competitive pricing structures.
- Quality Control: What are their quality assurance protocols? Look for suppliers that perform rigorous testing for purity, identity, and stereochemical integrity.
- Technical Support: Can they provide technical data, answer questions about synthesis, and assist with custom requirements?
- Supply Chain Stability: For ongoing projects, a stable and reliable supply chain is crucial. Partnering with an established supplier mitigates risks of production interruptions.
As NINGBO INNO PHARMCHEM CO.,LTD., we pride ourselves on being a leading manufacturer and supplier of high-quality chemical intermediates. We understand the demands of the pharmaceutical industry and are dedicated to providing research and development professionals with the essential building blocks they need. Whether you are looking to buy small quantities for initial research or large batches for scale-up, we can meet your requirements with competitive pricing and assured quality. Contact us today to inquire about Boc-(S)-3-Amino-4-(3-cyano-phenyl)-butyric acid and explore how we can support your innovative projects.
Perspectives & Insights
Future Origin 2025
“Therefore, sourcing this compound from a reputable manufacturer that guarantees high purity is not just a preference, but a necessity.”
Core Analyst 01
“Key Applications and Why They Demand Quality This amino acid derivative finds its primary utility in: Pharmaceutical Synthesis: As a key intermediate in the synthesis of Active Pharmaceutical Ingredients (APIs).”
Silicon Seeker One
“The precise stereochemistry and functional groups are vital for building target molecules with specific biological activities.”