High purity NMDA// ...

High purity NMDA// N-Methyl-D-aspartic CAS no. 6384-92-5

High purity NMDA// N-Methyl-D-aspartic CAS no. 6384-92-5

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10 Gram

Negotiable

  • Min.Order :10 Gram
  • Purity: 99%
  • Payment Terms : T/T,

Keywords

NMDA N-Methyl-D-aspartic nootropic

Quick Details

  • Appearance:white powder
  • Application:increase intracellular calcium
  • PackAge:aluminum foil bag
  • ProductionCapacity:100|Kilogram|Month
  • Storage:cool and dry place
  • Transportation:EMS,DHL,HK post,EUB,ETK,NL post,Germany post

Superiority:

1.high quality:

quality is life. quality is the most important element for all goods. we have a lab doing research in wuhan china. hplc and nmr is available if needed.

2.reasonable price:

we provide high quality products with competitive price in china. all customers are welcomed to send us inquiries and get quotation.

3.low moq:

no worry about the low moq, our moq is 1 gram or even lower.

4.good service.

fast response. we promise to reply within 24 hours including holidays and send quotation sheet and other documents within 48 hours.

5. fast shipping and secure courier.

we promise to send out products and provide tracking number within 3 working days. and we send via different couriers based on different destination countries. we usually use nl post, hk post, germany post, eub, etk, etc.

 

Details:

Name:N-Methyl-D-aspartic
CAS No.: 6384-92-5
olecular formular:C5H9NO4
Details of N-Methyl-D-aspartic

 

NMDA is a synthetic agonist of the NMDA receptor that mimics the binding action of the endogenous ligand glutamate. The NMDA receptor is a voltage-gated ion channel closely involved in memory, in spatial learning and perturbing the normal behavior of this receptor system with NMDA exposure has facilitated elucidation of NMDA receptor-mediated activities.

 

NMDA is a glutamate-like excitatory substance and is a particularly potent excitant. NMDA binds to NMDA-receptor and interacts with it. This interaction causes a conformational change in the receptor or associated membrane molecules, which opened pores to allow extracellular sodium ions to flow down their electrochemical gradient and depolarise the cell. However, NMDA is proved to be a poor substrate for the uptake transporters, suggesting that the excitatory effect could not be an indirect consequence of glutamate uptake. Besides that, NMDA is found to increase intracellular calcium, both of which generate oxygen radicals, subsequently inducing neuronal death. 

 

 

 

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