Suppr超能文献

缺血性脊髓白质中去极化诱导的Ca2+释放涉及ryanodine受体的L型Ca2+通道激活。

Depolarization-induced Ca2+ release in ischemic spinal cord white matter involves L-type Ca2+ channel activation of ryanodine receptors.

作者信息

Ouardouz Mohamed, Nikolaeva Maria A, Coderre Elaine, Zamponi Gerald W, McRory John E, Trapp Bruce D, Yin Xinghua, Wang Weili, Woulfe John, Stys Peter K

机构信息

Ottawa Health Research Institute, Division of Neuroscience, University of Ottawa, Ottawa, Ontario K1Y 4K9, Canada.

出版信息

Neuron. 2003 Sep 25;40(1):53-63. doi: 10.1016/j.neuron.2003.08.016.

Abstract

The mechanisms of Ca(2+) release from intracellular stores in CNS white matter remain undefined. In rat dorsal columns, electrophysiological recordings showed that in vitro ischemia caused severe injury, which persisted after removal of extracellular Ca(2+); Ca(2+) imaging confirmed that an axoplasmic Ca(2+) rise persisted in Ca(2+)-free perfusate. However, depletion of Ca(2+) stores or reduction of ischemic depolarization (low Na(+), TTX) were protective, but only in Ca(2+)-free bath. Ryanodine or blockers of L-type Ca(2+) channel voltage sensors (nimodipine, diltiazem, but not Cd(2+)) were also protective in zero Ca(2+), but their effects were not additive with ryanodine. Immunoprecipitation revealed an association between L-type Ca(2+) channels and RyRs, and immunohistochemistry confirmed colocalization of Ca(2+) channels and RyR clusters on axons. Similar to "excitation-contraction coupling" in skeletal muscle, these results indicate a functional coupling whereby depolarization sensed by L-type Ca(2+) channels activates RyRs, thus releasing damaging amounts of Ca(2+) under pathological conditions in white matter.

摘要

中枢神经系统白质中细胞内钙库释放钙离子的机制尚不清楚。在大鼠背柱中,电生理记录显示体外缺血会导致严重损伤,在去除细胞外钙离子后这种损伤仍然存在;钙离子成像证实,在无钙灌注液中轴浆钙离子浓度持续升高。然而,钙库耗竭或缺血性去极化减弱(低钠、河豚毒素)具有保护作用,但仅在无钙浴中有效。在零钙条件下,ryanodine或L型钙离子通道电压传感器阻滞剂(尼莫地平、地尔硫䓬,但不是镉离子)也具有保护作用,但其作用与ryanodine无叠加效应。免疫沉淀显示L型钙离子通道与兰尼碱受体(RyRs)之间存在关联,免疫组织化学证实钙离子通道与轴突上的RyR簇共定位。与骨骼肌中的“兴奋 - 收缩偶联”类似,这些结果表明存在一种功能偶联,即L型钙离子通道感知的去极化激活RyRs,从而在白质病理条件下释放有害量的钙离子。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验