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蛛网膜下腔出血犬模型中血管痉挛性肌细胞中BK通道功能的保留。

Preserved BK channel function in vasospastic myocytes from a dog model of subarachnoid hemorrhage.

作者信息

Jahromi Babak S, Aihara Yasuo, Ai Jinglu, Zhang Zhen-Du, Weyer George, Nikitina Elena, Yassari Reza, Houamed Khaled M, Macdonald R Loch

机构信息

Department of Surgery, University of Chicago Medical Center and Pritzker School of Medicine, Chicago, IL, USA.

出版信息

J Vasc Res. 2008;45(5):402-15. doi: 10.1159/000124864. Epub 2008 Apr 10.

Abstract

Cerebral vasospasm after subarachnoid hemorrhage (SAH) is due to contraction of smooth muscle cells in the cerebral arteries. The mechanism of this contraction, however, is not well understood. Smooth muscle contraction is regulated in part by membrane potential, which is determined by K+ conductance in smooth muscle. Voltage-gated (Kv) and large-conductance, Ca2+-activated K+ (BK) channels dominate arterial smooth muscle K+ conductance. Vasospastic smooth muscle cells are depolarized relative to normal cells, but whether this is due to altered Kv or BK channel function has not been determined. This study determined if BK channels are altered during vasospasm after SAH in dogs. We first characterized BK channels in basilar-artery smooth muscle using whole-cell patch clamping and single-channel recordings. Next, we compared BK channel function between normal and vasospastic cells. There were no significant differences between normal and vasospastic cells in BK current density, kinetics, Ca2+ and voltage sensitivity, single-channel conductance or apparent Ca2+ affinity. Basilar-artery myocytes had no, small- or intermediate-conductance, Ca2+-activated K+ channels. The lack of difference in BK channels between vasospastic and control cells suggests alteration(s) in other K+ channels or other ionic conductances may underlie the membrane depolarization and vasoconstriction observed during vasospasm after SAH.

摘要

蛛网膜下腔出血(SAH)后的脑血管痉挛是由于脑动脉平滑肌细胞收缩所致。然而,这种收缩的机制尚未完全明确。平滑肌收缩部分受膜电位调节,而膜电位由平滑肌中的钾离子电导决定。电压门控钾离子(Kv)通道和大电导钙激活钾离子(BK)通道在动脉平滑肌钾离子电导中起主导作用。血管痉挛性平滑肌细胞相对于正常细胞发生去极化,但这是否归因于Kv或BK通道功能改变尚不确定。本研究确定了犬SAH后血管痉挛期间BK通道是否发生改变。我们首先使用全细胞膜片钳和单通道记录对基底动脉平滑肌中的BK通道进行了表征。接下来,我们比较了正常细胞和血管痉挛性细胞之间的BK通道功能。在BK电流密度、动力学、钙和电压敏感性、单通道电导或表观钙亲和力方面,正常细胞和血管痉挛性细胞之间没有显著差异。基底动脉肌细胞不存在小电导或中电导钙激活钾离子通道。血管痉挛性细胞和对照细胞之间BK通道缺乏差异表明,其他钾离子通道或其他离子电导的改变可能是SAH后血管痉挛期间观察到的膜去极化和血管收缩的基础。

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