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谷氨酸诱导培养的大鼠海马神经元线粒体去极化及钙稳态紊乱。

Glutamate-induced mitochondrial depolarisation and perturbation of calcium homeostasis in cultured rat hippocampal neurones.

作者信息

Vergun O, Keelan J, Khodorov B I, Duchen M R

机构信息

Department of Physiology, University College London, Gower Street, London WC1E 6BT, UK.

出版信息

J Physiol. 1999 Sep 1;519 Pt 2(Pt 2):451-66. doi: 10.1111/j.1469-7793.1999.0451m.x.

Abstract
  1. The objective of this study was to clarify the relationships between loss of mitochondrial potential and the perturbation of neuronal Ca2+ homeostasis induced by a toxic glutamate challenge. Digital fluorescence imaging techniques were employed to monitor simultaneously changes in cytoplasmic Ca2+ concentration ([Ca2+]i) and mitochondrial potential (DeltaPsim) in individual hippocampal neurones in culture coloaded with fura-2 AM or fura-2FF AM and rhodamine 123 (Rh 123). 2. In most cells (96 %) at 6-7 days in vitro (DIV) and in a small proportion of cells (29 %) at 11-17 DIV the [Ca2+]i increase induced by exposure to 100 microM glutamate for 10 min was associated with a small mitochondrial depolarisation, followed by mitochondrial repolarisation, and a degree of recovery of [Ca2+]i following glutamate washout. In the majority of neurones at 11-17 DIV (71 %), exposure to glutamate for 10 min induced a profound mono- or biphasic mitochondrial depolarisation, which was clearly correlated with a sustained [Ca2+]i plateau despite the removal of glutamate. 3. Addition of glutamate receptor antagonists (15 microM MK-801 plus 75 microM 6-cyano-7-nitroquinoxaline-2, 3-dione (CNQX)) to the washout solution did not affect the post-glutamate [Ca2+]i plateau in neurones exhibiting a profound mitochondrial depolarisation but greatly improved [Ca2+]i recovery in those neurones undergoing only a small mitochondrial depolarisation, suggesting that the release of endogenous glutamate delays [Ca2+]i recovery in the postglutamate period. 4. Cyclosporin A (500 nM) or N-methyl Val-4-cyclosporin A (200 nM) delayed or even prevented the development of the second phase of mitochondrial depolarisation in cells at 11-17 DIV and increased the proportion of neurones exhibiting a small monophasic mitochondrial depolarisation and [Ca2+]i recovery upon glutamate removal. 5. We have thus described a striking correlation between mitochondrial depolarisation and the failure of cells to restore [Ca2+]i following a toxic glutamate challenge. These data suggest that mitochondrial dysfunction plays a major role in the deregulation of [Ca2+]i associated with glutamate toxicity.
摘要
  1. 本研究的目的是阐明线粒体电位丧失与毒性谷氨酸刺激诱导的神经元钙稳态紊乱之间的关系。采用数字荧光成像技术,同时监测培养的单个海马神经元中细胞质钙浓度([Ca2+]i)和线粒体电位(ΔΨm)的变化,这些神经元共负载了fura-2 AM或fura-2FF AM以及罗丹明123(Rh 123)。2. 在体外培养6 - 7天的大多数细胞(96%)以及11 - 17天的一小部分细胞(29%)中,暴露于100μM谷氨酸10分钟所诱导的[Ca2+]i增加与轻微的线粒体去极化相关,随后是线粒体复极化,并且在谷氨酸洗脱后[Ca2+]i有一定程度的恢复。在11 - 17天的大多数神经元(71%)中,暴露于谷氨酸10分钟会诱导深刻的单相或双相线粒体去极化,尽管去除了谷氨酸,但这与持续的[Ca2+]i平台期明显相关。3. 在洗脱溶液中添加谷氨酸受体拮抗剂(15μM MK - 801加75μM 6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮(CNQX))对表现出深刻线粒体去极化的神经元的谷氨酸后[Ca2+]i平台期没有影响,但极大地改善了仅经历轻微线粒体去极化的神经元的[Ca2+]i恢复,这表明内源性谷氨酸的释放会延迟谷氨酸后时期的[Ca2+]i恢复。4. 环孢素A(500 nM)或N - 甲基缬氨酸 - 4 - 环孢素A(200 nM)延迟甚至阻止了11 - 17天细胞中线粒体去极化第二阶段的发展,并增加了在谷氨酸去除后表现出轻微单相线粒体去极化和[Ca2+]i恢复的神经元比例。5. 因此,我们描述了线粒体去极化与细胞在毒性谷氨酸刺激后未能恢复[Ca2+]i之间的显著相关性。这些数据表明线粒体功能障碍在与谷氨酸毒性相关的[Ca2+]i失调中起主要作用。

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