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模拟微重力大鼠脑血管平滑肌细胞中 BKCa 通道的激活与细胞凋亡增加有关。

Activation of BKCa channel is associated with increased apoptosis of cerebrovascular smooth muscle cells in simulated microgravity rats.

机构信息

Department of Aerospace Physiology, Fourth Military Medical University, Xi'an 710032, China.

出版信息

Am J Physiol Cell Physiol. 2010 Jun;298(6):C1489-500. doi: 10.1152/ajpcell.00474.2009. Epub 2010 Mar 24.

Abstract

Cerebral arterial remodeling is one of the critical factors in the occurrence of postspaceflight orthostatic intolerance. We hypothesize that large-conductance calcium-activated K(+) (BK(Ca)) channels in vascular smooth muscle cells (VSMCs) may play an important role in regulating cerebrovascular adaptation during microgravity exposure. The aim of this work was to investigate whether activation of BK(Ca) channels is involved in regulation of apoptotic remodeling of cerebral arteries in simulated microgravity rats. In animal studies, Sprague-Dawley rats were subjected to 1-wk hindlimb unweighting to simulate microgravity. Alterations of BK(Ca) channels in cerebral VSMCs were investigated by patch clamp and Western blotting; apoptosis was assessed by electron microscopy and terminal deoxynucleotidyltransferase-mediated dUTP-biotin nick-end labeling (TUNEL). To evaluate the correlation of BK(Ca) channel and apoptosis, channel protein and cell nucleus were double-stained. In cell studies, hSloalpha+beta1 channel was coexpressed into human embryonic kidney 293 (HEK293) cells to observe the effects of BK(Ca) channels on apoptosis. In rats, enhanced activities and expression of BK(Ca) channels were found to be correlated with increased apoptosis in cerebral VSMCs after simulated microgravity. In transfected HEK293 cells, activation of cloned BK(Ca) channel induced apoptosis, whereas inhibition of cloned BK(Ca) channel decreased apoptosis. In conclusion, activation of BK(Ca) channels is associated with increased apoptosis in cerebral VSMCs of simulated microgravity rats.

摘要

脑动脉重塑是航天后立位不耐受发生的关键因素之一。我们假设血管平滑肌细胞(VSMC)中的大电导钙激活钾(BK(Ca))通道可能在微重力暴露期间调节脑血管适应中发挥重要作用。本工作旨在研究 BK(Ca)通道的激活是否参与模拟微重力大鼠脑动脉凋亡重塑的调节。在动物研究中,将 Sprague-Dawley 大鼠进行 1 周的后肢去重以模拟微重力。通过膜片钳和 Western blot 研究了脑 VSMC 中 BK(Ca)通道的变化;通过电子显微镜和末端脱氧核苷酸转移酶介导的 dUTP-生物素缺口末端标记(TUNEL)评估凋亡。为了评估 BK(Ca)通道与凋亡的相关性,对通道蛋白和细胞核进行了双重染色。在细胞研究中,将 hSloalpha+beta1 通道共表达到人胚肾 293(HEK293)细胞中,以观察 BK(Ca)通道对凋亡的影响。在大鼠中,模拟微重力后,发现 BK(Ca)通道的活性和表达增强与脑 VSMC 凋亡增加相关。在转染的 HEK293 细胞中,激活克隆的 BK(Ca)通道诱导凋亡,而抑制克隆的 BK(Ca)通道则减少凋亡。总之,激活 BK(Ca)通道与模拟微重力大鼠脑 VSMC 中凋亡增加有关。

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