N-Boc-O-Benzyl-D-serine

Product Name

N-Boc-O-Benzyl-D-serine

CAS No. 47173-80-8
MF C15H21NO5
MW 295.33
Purity 98.0%
Appearance White to Off-White powder
Packing 1kg/bag,25kg/drum
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N-Boc-O-Benzyl-D-serine

Additional information

Product Name

N-Boc-O-Benzyl-D-serine

CAS Number

47173-80-8

Molecular Formula

C15H21NO5

Molecular Weight

295.33

Purity

98.0%

Appearance

White to Off-White powder

Packing

1kg/bag,25kg/drum

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Intermediates

Product Introduction:

N-Boc-O-Benzyl-D-serine is a specialized amino acid derivative used primarily in biochemical research and pharmaceutical development. It is a protected form of D-serine, where the amino and hydroxyl groups are chemically modified to include a Boc (tert-butoxycarbonyl) protecting group and a benzyl ester group. This modification enhances its stability and solubility, making it useful for various synthetic and analytical applications. D-serine itself is an important neurotransmitter and co-agonist at NMDA receptors in the brain, involved in cognitive processes and synaptic plasticity. By employing the Boc and benzyl groups, N-Boc-O-Benzyl-D-serine facilitates the study of D-serine’s biological activities and its potential therapeutic applications. It is commonly utilized in the synthesis of peptides, development of novel pharmaceuticals, and investigations into neurological disorders. Its stability and reactivity make it a valuable compound for researchers exploring the role of serine in brain function and drug development.

Features:

(1) High purity: N-Boc-O-Benzyl-D-serine can obtain high-purity products through refining production processes. High purity means better bioavailability and fewer adverse reactions.

(2) Safety: High safety, few adverse reactions.

(3) Stability: N-Boc-O-Benzyl-D-serine has good stability and can maintain its activity and effect under different environments and storage conditions.

Application Areas:

N-Boc-O-Benzyl-D-serine is used in biochemical research and pharmaceutical development, particularly in peptide synthesis and studies of D-serine’s biological functions. It is relevant for investigating neurological disorders, developing new therapeutic agents, and exploring the role of serine in cognitive processes and synaptic plasticity.

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