The Versatility of D-Asparagine Monohydrate: From Pharmaceutical Intermediates to Research Applications
D-Asparagine Monohydrate (CAS 2058-58-4) is a compound of remarkable versatility, finding significant utility across multiple sectors, most notably as a crucial pharmaceutical intermediate and a valuable tool in scientific research. Its unique chemical structure and stereochemistry contribute to its broad applicability, making it an indispensable compound for many advanced applications. NINGBO INNO PHARMCHEM CO.,LTD. is proud to supply this high-quality amino acid derivative, enabling innovation in both industry and academia.
Pivotal Role in Pharmaceutical Intermediate Synthesis
As a key amino acid derivative, D-Asparagine Monohydrate is frequently employed in the synthesis of complex pharmaceutical intermediates. The precise chiral nature of the D-enantiomer is often essential for creating stereospecific drugs that exhibit targeted biological activity and minimize unwanted side effects. Pharmaceutical companies utilize D-Asparagine Monohydrate as a chiral building block to construct active pharmaceutical ingredients (APIs) for a wide range of therapeutic areas. Its high purity (≥99.0%) and well-defined chemical properties ensure reliable and reproducible results in multi-step synthesis processes. By incorporating D-Asparagine Monohydrate into their production lines, manufacturers can achieve greater control over the stereochemistry of their final products, contributing to the development of safer and more effective medicines. The consistent quality provided by NINGBO INNO PHARMCHEM CO.,LTD. is vital for maintaining the integrity of these sensitive pharmaceutical manufacturing processes.
Applications in Scientific Research and Development
Beyond its industrial applications, D-Asparagine Monohydrate serves as a valuable reagent in scientific research. Its properties are explored in various fields, including biochemistry, cell biology, and neuroscience. Researchers study its involvement in metabolic pathways, enzyme kinetics, and cellular signaling. As a non-proteinogenic amino acid, its distinct biological effects are of particular interest in understanding fundamental life processes. For example, studies may investigate its role in neurotransmission or its potential as a biomarker for certain physiological conditions. The compound's specific structure also makes it useful in chiral synthesis research, where it can be used to develop new stereoselective catalysts or separation methods. The availability of D-Asparagine Monohydrate from reliable suppliers like NINGBO INNO PHARMCHEM CO.,LTD. empowers researchers to conduct in-depth investigations, leading to new scientific insights and technological advancements.
Quality and Reliability from NINGBO INNO PHARMCHEM CO.,LTD.
NINGBO INNO PHARMCHEM CO.,LTD. is committed to providing D-Asparagine Monohydrate that meets the highest standards of quality and purity. Our advanced manufacturing processes and stringent quality control systems ensure that the product is consistently reliable for both pharmaceutical intermediate synthesis and demanding research applications. We understand the critical nature of the chemical intermediates we supply and strive to be a trusted partner for our clients. By choosing NINGBO INNO PHARMCHEM CO.,LTD., you ensure access to a versatile compound that fuels innovation and contributes to advancements in medicine and science. We encourage you to connect with us to learn more about how our D-Asparagine Monohydrate can support your specific needs.
Perspectives & Insights
Agile Reader One
“Pharmaceutical companies utilize D-Asparagine Monohydrate as a chiral building block to construct active pharmaceutical ingredients (APIs) for a wide range of therapeutic areas.”
Logic Vision Labs
“0%) and well-defined chemical properties ensure reliable and reproducible results in multi-step synthesis processes.”
Molecule Origin 88
“By incorporating D-Asparagine Monohydrate into their production lines, manufacturers can achieve greater control over the stereochemistry of their final products, contributing to the development of safer and more effective medicines.”