乙醇对大鼠脑片和突触体中谷氨酸水平、摄取和释放的局部影响。

Substance and alcohol actions/misuse Pub Date : 1983-01-01
E Keller, J T Cummins, K von Hungen
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引用次数: 0

摘要

慢性乙醇处理可减少K+刺激的内源性谷氨酸释放,增加大鼠额叶皮质谷氨酸水平。这种处理也增加纹状体和海马切片的(3H)-谷氨酸摄取。皮质切片和突触体均未见摄取改变。乙醇戒断增加了K+刺激的皮质和海马体谷氨酸释放以及皮质、纹状体和海马体谷氨酸水平。戒断动物纹状体(3H)-谷氨酸摄取增加。因此,在影响和影响程度方面观察到区域差异。由于体外和急性乙醇处理对摄取或释放没有影响,这些变化可能是由于激活的反馈机制,试图补偿乙醇对脑系统的作用,而不是直接影响膜结构。综合水平释放数据表明,乙醇对皮层和纹状体中的谷氨酸分布有影响。综合摄取和释放数据表明谷氨酸突触活性降低与成瘾状态之间存在相关性,谷氨酸突触活性升高与戒断状态之间存在相关性。
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Regional effects of ethanol on glutamate levels, uptake and release in slice and synaptosome preparations from rat brain.

Chronic ethanol treatment effects a decrease in K+-stimulated endogenous glutamate release and an increase in glutamate levels in rat frontal cortex. This treatment also increases (3H)-glutamate uptake in striatal and hippocampal slices. No uptake changes were observed in either cortical slices or synaptosomes. Ethanol withdrawal increases K+-stimulated glutamate release in cortex and hippocampus and glutamate levels in cortex, striatum and hippocampus. (3H)-glutamate uptake is increased in striatum of withdrawn animals. Thus, regional variations were observed with regard to both effect and degree of effect. Because in vitro and acute ethanol treatments had no effect on uptake or release, these changes probably result from activated feedback mechanisms that attempt to compensate for ethanol's action on brain systems rather than direct effects on membrane structure. Combined level-release data suggest an effect of ethanol on glutamate distribution in cortex and striatum. Combined uptake and release data indicate a correlation between diminished glutamate synaptic activity and the addicted state, and between heightened glutamate synaptic activity and the withdrawn state.

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