Merck
CN

G0355000

谷氨酸

European Pharmacopoeia (EP) Reference Standard

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别名:
L-谷氨酸, (S)-2-氨基戊二酸, Glu
线性分子式:
HO2CCH2CH2CH(NH2)CO2H
CAS号:
分子量:
147.13
Beilstein:
1723801
MDL编号:
PubChem化学物质编号:
NACRES:
NA.24

等级

pharmaceutical primary standard

API family

glutamic acid

manufacturer/tradename

EDQM

mp

205 °C (dec.) (lit.)

application(s)

pharmaceutical (small molecule)

格式

neat

储存温度

2-8°C

SMILES string

N[C@@H](CCC(O)=O)C(O)=O

InChI

1S/C5H9NO4/c6-3(5(9)10)1-2-4(7)8/h3H,1-2,6H2,(H,7,8)(H,9,10)/t3-/m0/s1

InChI key

WHUUTDBJXJRKMK-VKHMYHEASA-N

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一般描述

本品按现行药典规定交付。所有为支持本产品而提供的信息,包括SDS和任何产品信息单均由药典颁发机构制定并发布。如需进一步信息和支持,请访问现行药典网站。

应用

谷氨酸EP参考标准品的预期用途是欧洲药典规定的实验室测试。

生化/生理作用

一种兴奋性氨基酸神经递质,为谷氨酸盐受体所有亚型(代谢型红藻氨酸、NMDA 和 AMPA)的激动剂。

包装

本品按照现行药典要求提供。有关当前单位数量,请见EDQM 参考目录

其他说明

可能适用相应的销售限制。

储存分类代码

11 - Combustible Solids

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable


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Dania Vecchia et al.
Neurobiology of disease, 69, 225-234 (2014-06-08)
Familial hemiplegic migraine type 1 (FHM1), a monogenic subtype of migraine with aura, is caused by gain-of-function mutations in CaV2.1 (P/Q-type) calcium channels. In FHM1 knockin mice, excitatory neurotransmission at cortical pyramidal cell synapses is enhanced, but inhibitory neurotransmission at
R Dave et al.
Amino acids, 24(3), 245-261 (2003-04-23)
Gamma-fluorinated analogues of glutamic acid and glutamine are compounds of biological interest. Syntheses of such compounds are extensively reviewed in this article. 4-fluoroglutamic acid was prepared as a mixture of racemic diastereomers by Michael reaction, inverse-Michael reaction or by electrophilic
Marijke De Bock et al.
Biochimica et biophysica acta, 1843(10), 2211-2232 (2014-04-29)
For decades, studies have been focusing on the neuronal abnormalities that accompany neurodegenerative disorders. Yet, glial cells are emerging as important players in numerous neurological diseases. Astrocytes, the main type of glia in the central nervous system , form extensive
Daniel Meyer et al.
Neuron, 82(2), 430-443 (2014-04-20)
Subsynaptic structures such as bouton, active zone, postsynaptic density (PSD) and dendritic spine, are highly correlated in their dimensions and also correlate with synapse strength. Why this is so and how such correlations are maintained during synaptic plasticity remains poorly
Miquel Bosch et al.
Neuron, 82(2), 444-459 (2014-04-20)
Synapses store information by long-lasting modifications of their structure and molecular composition, but the precise chronology of these changes has not been studied at single-synapse resolution in real time. Here we describe the spatiotemporal reorganization of postsynaptic substructures during long-term

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