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体外培养的大鼠小脑浦肯野细胞中AMPA受体介导的细胞内钙稳态改变:与暗细胞变性的相关性

AMPA receptor-mediated alterations of intracellular calcium homeostasis in rat cerebellar Purkinje cells in vitro: correlates to dark cell degeneration.

作者信息

Strahlendorf J C, Brandon T, Miles R, Strahlendorf H K

机构信息

Department of Physiology, Texas Tech University Health Sciences Center, Lubbock 79430, USA.

出版信息

Neurochem Res. 1998 Nov;23(11):1355-62. doi: 10.1023/a:1020742404945.

Abstract

In the rat cerebellar slice preparation in vitro, excessive DL-amino-3-hydroxy-5-methyl-isoxazole-4-propionic acid (AMPA)-receptor activation elicits a characteristic type of excitotoxicity of Purkinje cells (PCs) known as dark cell degeneration (DCD). DCD models neurotoxicity of PCs and hippocampal pyramidal neurons in vivo following hyperexcitable states. The intent of this study was to: a) determine whether AMPA-induced neurotoxicity of PCs is correlated with temporally and spatially restricted rises in intracellular Ca2+ and b) whether GYKI 52466 and nominal external Ca2+, conditions that reduced expression of AMPA-elicited DCD, altered the induced Ca2+ patterns. Employing the Ca2+-sensitive dye Fluo-3 and a confocal laser scanning microscope, we evaluated changes in intracellular Ca2+ within PCs in a cerebellar slice preparation. AMPA application alone (30 microM for 30 min) caused a significant initial rise in perinuclear and cytoplasmic Ca2+ that returned to control levels during the latter part of the AMPA exposure period. Following removal of AMPA (expression period), perinuclear and cytoplasmic Ca2+ displayed a significant delayed rise peaking transiently 60 min after AMPA removal. The efficacy of GYKI 52466 and nominal external Ca2+ conditions to attenuate AMPA-induced DCD was correlated to reductions in AMPA-induced transient elevations in perinuclear and cytoplasmic Ca2+ levels during the expression phase and to a lesser extent during the exposure period. The present data suggest that during the expression phase, the delayed perinuclear and cytoplasmic Ca2+ transient may be the harbinger of impending loss of Ca2+ homeostasis and cell damage.

摘要

在体外大鼠小脑切片制备中,过量的DL - 氨基 - 3 - 羟基 - 5 - 甲基 - 异恶唑 - 4 - 丙酸(AMPA)受体激活引发一种特征性的浦肯野细胞(PCs)兴奋性毒性,称为暗细胞变性(DCD)。DCD模拟了体内过度兴奋状态后PCs和海马锥体细胞的神经毒性。本研究的目的是:a)确定AMPA诱导的PCs神经毒性是否与细胞内Ca2+在时间和空间上的受限升高相关,以及b)GYKI 52466和名义上的细胞外Ca2+(降低AMPA引发的DCD表达的条件)是否改变诱导的Ca2+模式。使用Ca2+敏感染料Fluo - 3和共聚焦激光扫描显微镜,我们评估了小脑切片制备中PCs内细胞内Ca2+的变化。单独应用AMPA(30 microM,30分钟)导致核周和细胞质Ca2+显著初始升高,在AMPA暴露期后期恢复到对照水平。去除AMPA(表达期)后,核周和细胞质Ca2+显示出显著的延迟升高,在去除AMPA后60分钟短暂达到峰值。GYKI 52466和名义上的细胞外Ca2+条件减轻AMPA诱导的DCD的功效与表达期核周和细胞质Ca2+水平的AMPA诱导的短暂升高的降低相关,在暴露期相关性较小。目前的数据表明,在表达期,延迟的核周和细胞质Ca2+瞬变可能是即将失去Ca2+稳态和细胞损伤的先兆。

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