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在小脑原代培养物中,谷氨酸诱导的三磷酸腺苷(ATP)消耗与神经元死亡之间缺乏相关性。

Lack of correlation between glutamate-induced depletion of ATP and neuronal death in primary cultures of cerebellum.

作者信息

Marcaida G, Miñana M D, Grisolía S, Felipo V

机构信息

Instituto de Investigaciones Citológicas de la Fundación Valenciana de Investigaciones Biomédicas, Valencia, Spain.

出版信息

Brain Res. 1995 Oct 16;695(2):146-50. doi: 10.1016/0006-8993(95)00703-s.

Abstract

The aim of this work was to identify, using primary cultures of cerebellar neurons, the receptors involved in glutamate-induced depletion of ATP and to assess whether there is a correlation between glutamate-induced ATP depletion and neuronal death. Glutamate induced a rapid depletion of ATP (40% decrease at 5 min). After 60 min incubation with 1 M glutamate ATP content decreased by 60-70%. Similar effects were induced by glutamate, NMDA and kainate while quisqualate, AMPA or trans-ACPD did not affect significantly ATP content. The EC50 were approximately 6, 25 and 30 microM for glutamate, NMDA and kainate, respectively. DNQX and AP-5, competitive antagonists of kainate and NMDA receptors, respectively, prevented in a dose-dependent manner the glutamate-induced depletion of ATP. These results indicate that glutamate-induced depletion of ATP is mediated by activation of kainate and NMDA receptors. Glutamate-induced neuronal death was prevented by MK-801, calphostin C, H7, carnitine, nitroarginine and W7. However, only MK-801 and W7 prevented glutamate-induced depletion of ATP, while calphostin C, H7, carnitine and nitroarginine did not. This indicates that there is not a direct correlation between ATP depletion and neuronal death.

摘要

这项工作的目的是利用小脑神经元的原代培养物,确定参与谷氨酸诱导的ATP消耗的受体,并评估谷氨酸诱导的ATP消耗与神经元死亡之间是否存在相关性。谷氨酸诱导ATP快速消耗(5分钟时降低40%)。与1 M谷氨酸孵育60分钟后,ATP含量降低了60 - 70%。谷氨酸、NMDA和海人酸诱导了类似的效应,而quisqualate、AMPA或反式-ACPD对ATP含量没有显著影响。谷氨酸、NMDA和海人酸的EC50分别约为6、25和30 microM。分别作为海人酸和NMDA受体竞争性拮抗剂的DNQX和AP-5,以剂量依赖的方式阻止了谷氨酸诱导的ATP消耗。这些结果表明,谷氨酸诱导的ATP消耗是由海人酸和NMDA受体的激活介导的。谷氨酸诱导的神经元死亡可被MK-801、钙磷蛋白C、H7、肉碱、硝基精氨酸和W7阻止。然而,只有MK-801和W7阻止了谷氨酸诱导的ATP消耗,而钙磷蛋白C、H7、肉碱和硝基精氨酸则没有。这表明ATP消耗与神经元死亡之间没有直接相关性。

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