D-Serine CAS 312-84-5: A Comprehensive Guide to its Properties, Applications, and Significance in Neuroscience and Pharma

Exploring the critical role of D-Serine in brain function, drug development, and biochemical research.

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Advantages of D-Serine

Neurotransmitter Modulation

D-Serine acts as a co-agonist of NMDA receptors, significantly influencing glutamatergic neurotransmission and synaptic plasticity, which are fundamental for cognitive functions.

Chiral Drug Synthesis

Its specific chiral structure makes D-Serine a vital intermediate for creating enantiomerically pure drugs, ensuring higher efficacy and selectivity in pharmaceutical applications.

Research Versatility

As a biochemical reagent, D-Serine is instrumental in cell culture, enzymatic assays, and stereoselectivity studies, providing essential data for scientific advancements.

Key Applications

Neuroscience Research

D-Serine is a critical tool for studying the NMDA receptor's function in learning, memory, and neurological disease mechanisms, contributing to advancements in brain science.

Pharmaceutical Intermediates

Its role as a building block for chiral drugs, including those targeting the central nervous system, makes it invaluable in drug discovery and development.

Biochemical Studies

Researchers utilize D-Serine in enzyme stereoselectivity analysis and metabolic pathway investigations, offering insights into biomolecular interactions.

Drug Development Support

D-Serine is integral to the development of therapies for conditions such as Alzheimer's disease and schizophrenia, addressing unmet needs in patient care.

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