结构:[Li+]
HCID28486

Lithium ion

lithium(1+)

Li+7 g/molCAS 17341-24-1

IDENTITY

结构与身份

标准 SMILES
[Li+]
InChIKey
HBBGRARXTFLTSG-UHFFFAOYSA-N
分子式
Li+
平均分子量
7 g/mol
单同位素质量
7.01600343

COMPUTED

结构计算性质

已同步
极性表面积
0 Ų
氢键供体
0
氢键受体
0
可旋转键
0
重原子
1
形式电荷
1
复杂度
0

PROPERTIES

实验与物化性质

来源:PubChem
Solubility

Violent reaction

Boiling Point

1336

Melting Point

180.5

190 °C

Physical Description

Solid

PHARMACOLOGY

药理信息

来源:PubChem
Pharmacodynamics

Although lithium has been used for over 50 years in treatment of bipolar disorder, the mechanism of action is still unknown. Lithium's therapeutic action may be due to a number of effects, ranging from inhibition of enzymes such as glycogen synthase kinase 3, inositol phosphatases, or modulation of glutamate receptors.

Mechanism of Action

The precise mechanism of action of Li+ as a mood-stabilizing agent is currently unknown. It is possible that Li+ produces its effects by interacting with the transport of monovalent or divalent cations in neurons. An increasing number of scientists have come to the conclusion that the excitatory neurotransmitter glutamate is the key factor in understanding how lithium works. Lithium has been shown to change the inward and outward currents of glutamate receptors (especially GluR3), without a shift in reversal potential. Lithium has been found to exert a dual effect on glutamate receptors, acting to keep the amount of glutamate active between cells at a stable, healthy level, neither too much nor too little. It is postulated that too much glutamate in the space between neurons causes mania, and too little, depression. Another mechanism by which lithium might help to regulate mood include the non-competitive inhibition of an enzyme called inositol monophosphatase. Alternately lithium's action may be enhanced through the deactivation of the GSK-3B enzyme. The regulation of GSK-3B by lithium may affect the circadian clock. GSK-3 is known for phosphorylating and thus inactivating glycogen synthase. GSK-3B has also been implicated in the control of cellular response to damaged DNA. GSK-3 normally phosphorylates beta catenin, which leads to beta catenin degratation. When GSK-3 is inhibited, beta catenin increases and transgenic mice with overexpression of beta catenin express similar behaviour to mice treated with lithium. These results suggest that increase of beta catenin may be a possible pathway for the therapeutic action of lithium.

FDA Pharmacological Classification

8H8Z5UER66

LITHIUM CATION

Established Pharmacologic Class [EPC] - Mood Stabilizer

Lithium cation is a Mood Stabilizer.

ALIASES

名称与别名

27
lithium ionlithium cationLithium(1+)Lithium, ion (Li1+)17341-24-1lithium, ionLITHIUM ION CHROMATOGRAPHY STANDARDLi(+)8H8Z5UER66CHEBI:49713Lithium Monohydride;Lithium ionsLi+Lithium(+)UNII-8H8Z5UER66lithium(I)lithium(I) cationLithium (I) ionLi(+) cationLi(+) ion

REACTIONS

参与反应

15,845
HRID85783

Training data from https://doi.org/10.1039/C8SC04228D (2/10)

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HRID 85783 方程式

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HRID85785

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HRID 85785 方程式

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HRID85797

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HRID 85797 方程式

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HRID85859

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HRID 85859 方程式

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HRID85917

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HRID 85917 方程式

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HRID85921

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HRID 85921 方程式

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HRID85948

Training data from https://doi.org/10.1039/C8SC04228D (2/10)

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HRID 85948 方程式

Training data from https://doi.org/10.1039/C8SC04228D (2/10) · 10.1039/C8SC04228D

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HRID85979

Training data from https://doi.org/10.1039/C8SC04228D (2/10)

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HRID 85979 方程式

Training data from https://doi.org/10.1039/C8SC04228D (2/10) · 10.1039/C8SC04228D

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