Amino Acids Nutriti...

Amino Acids Nutrition Drug D-serine CAS  312-84-5 D-serine Powder

Amino Acids Nutrition Drug D-serine CAS 312-84-5 D-serine Powder

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  • Purity: 99%

Keywords

D-serine cas 312-84-5 D-serine powder

Quick Details

  • Appearance:White powder
  • Application:1.D-Serine supplementation can reduce symptoms of cognitive decline. It is also able to reduce symptoms of diseases characterized by reduced N-methyl-D-aspartate (NMDA) signaling, which includes d...
  • PackAge:Aluminum foil bag,fluorinated bottles,carboard drums or as your special request.
  • ProductionCapacity:
  • Storage:Store in cool & dry place. Keep away from strong light Shelf Life2 years when properly stored.
  • Transportation:1) Door to Door Service by DHL/FEDEX/EMS/TNT for package under 45kgs, about 3~7 days delivery. 2) Port to Port Service by Air for package more than 45kgs, about 3~7 days delivery. 3) Port to Port...

Superiority:

1) Provide costomers with "one-stop"packaging service,from research,development,production,export and so on.
2) We have our own R&D and production base,equipped with advanced production equipment and precision testing the Unitef States Pharmacopoeia(USP),the Britis Pharmacopoeia(EP) and other international advanced standards.All products are through the KOSGER,HALAL certification,the ISO quality management system certification and the HACCP certification.
3) More than 12 years of export experience.
4)Competitive price in China market.

Details:

D-Serine, synthesized in the brain by serine racemase from L-serine (its enantiomer), serves as both a neurotransmitter and a gliotransmitter by activating NMDA receptors, making them able to open if they then also bind glutamate.
D-serine is a more potent agonist at the glycine site on the NMDAR than glycine itself. D-serine was only thought to exist in bacteria until relatively recently; it was the second D amino acid discovered to naturally exist in humans, present as a signalling molecule in the brain, soon after the discovery of D-aspartate.
Serine is important in metabolism in that it participates in the biosynthesis of purines and pyrimidines. It is the precursor to several amino acids including glycine and cysteine, and tryptophan in bacteria. It is also the precursor to numerous of other metabolites, including sphingolipids and folate, which is the principal donor of one-carbon fragments in biosynthesis. Serine dehydratase is an enzyme that converts serine to pyruvate.

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