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猪气管平滑肌细胞内钙振荡的调节

Regulation of intracellular calcium oscillations in porcine tracheal smooth muscle cells.

作者信息

Prakash Y S, Kannan M S, Sieck G C

机构信息

Department of Anesthesiology, Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

Am J Physiol. 1997 Mar;272(3 Pt 1):C966-75. doi: 10.1152/ajpcell.1997.272.3.C966.

Abstract

Using real-time confocal microscopy, we examined the dynamic intracellular Ca2+ concentration ([Ca2+]i) response of porcine tracheal smooth muscle (TSM) cells to acetylcholine (ACh). Exposure to ACh caused regenerative, propagating [Ca2+]i oscillations. The amplitude and fall time of the [Ca2+]i oscillations were inversely correlated to basal [Ca2+]i, whereas the frequency and rise time were directly correlated to basal [Ca2+]i. ACh-induced [Ca2+]i oscillations were initiated in the absence of extracellular Ca2+ and after membrane depolarization with KCl, suggesting that 1) [Ca2+]i oscillations primarily arise by release from internal stores such as the sarcoplasmic reticulum (SR), and 2) Ca2+ influx is necessary for maintenance of oscillations. Exposure to both caffeine and ryanodine inhibited ongoing ACh-induced [Ca2+]i oscillations, suggesting a role for caffeine-sensitive ryanodine receptor (RyR) SR Ca2+ channels. Inhibition of SR Ca2+ reuptake by thapsigargin increased basal [Ca2+]i and decreased [Ca2+]i oscillation amplitude, suggesting that Ca2+ reuptake is also essential. The present results suggest that [Ca2+]i oscillations in porcine TSM cells involve repetitive Ca2+ release and reuptake from RyR channels, perhaps through a Ca2+ -induced Ca2+ release mechanism.

摘要

利用实时共聚焦显微镜,我们检测了猪气管平滑肌(TSM)细胞对乙酰胆碱(ACh)的动态细胞内钙离子浓度([Ca2+]i)反应。暴露于ACh会引起再生性、传播性的[Ca2+]i振荡。[Ca2+]i振荡的幅度和下降时间与基础[Ca2+]i呈负相关,而频率和上升时间与基础[Ca2+]i呈正相关。ACh诱导的[Ca2+]i振荡在细胞外无Ca2+以及用KCl使细胞膜去极化后仍会启动,这表明:1)[Ca2+]i振荡主要源于从诸如肌浆网(SR)等内部储存库的释放;2)Ca2+内流对于维持振荡是必要的。暴露于咖啡因和ryanodine均会抑制正在进行的ACh诱导的[Ca2+]i振荡,这表明咖啡因敏感的ryanodine受体(RyR)SR Ca2+通道发挥了作用。毒胡萝卜素抑制SR Ca2+再摄取会增加基础[Ca2+]i并降低[Ca2+]i振荡幅度,这表明Ca2+再摄取也至关重要。目前的结果表明,猪TSM细胞中的[Ca2+]i振荡涉及从RyR通道重复释放和再摄取Ca2+,可能是通过Ca2+诱导的Ca2+释放机制。

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