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钙超载豚鼠心室肌中异常的细胞间偶联。

Aberrant cell-to-cell coupling in Ca2+-overloaded guinea pig ventricular muscles.

作者信息

Kurebayashi Nagomi, Nishizawa Hiroto, Nakazato Yuji, Kurihara Hidetake, Matsushita Satoshi, Daida Hiroyuki, Ogawa Yasuo

机构信息

Department of Pharmacology, Juntendo University School of Medicine, Tokyo, Japan.

出版信息

Am J Physiol Cell Physiol. 2008 Jun;294(6):C1419-29. doi: 10.1152/ajpcell.00413.2007. Epub 2008 Apr 2.

Abstract

To investigate how intercellular coupling can be changed during Ca2+ overloading of ventricular muscle, we studied Ca2+ signals in individual cells and the histochemistry of the major gap junction channel, connexin43 (Cx43), using multicellular preparations. Papillary muscles were obtained from guinea pig ventricles and loaded with rhod-2. Sequential Ca2+ images of surface cells were obtained with a confocal microscope. In intact muscles, all cells showed simultaneous Ca2+ transients in response to field stimulation over a field of view of 0.3 x 0.3 mm2. In severely Ca2+-overloaded muscles, obtained by high-frequency stimulation in nonflowing Krebs solution, cells became less responsive to stimulation. Furthermore, nonsimultaneous but serial onsets of Ca2+ transients were often detected, suggesting a propagation delay of action potentials. The time lag of the onset between two aligned cells was sometimes as long as 100 ms. Similar lags were also observed in muscles with gap junction channels inhibited by heptanol. To investigate whether the phosphorylation state of Cx43 is affected in Ca2+-overloaded muscles, the distributions of phosphorylated and nonphosphorylated Cx43 were determined using specific antibodies. Most of the Cx43 was phosphorylated in the nonoverloaded muscles, whereas nonphosphorylated Cx43 was significantly elevated in severely Ca2+-overloaded muscles. Our results suggest that the propagation delay of action potential within a small area, a few square millimeters, can be a cause of abnormal conduction and a microreentry in Ca2+-overloaded heart. Inactivation of Na+ channels and inhibition of gap junctional communication may underlie the cell-to-cell propagation delay.

摘要

为了研究在心室肌钙超载期间细胞间偶联如何变化,我们使用多细胞标本研究了单个细胞中的钙信号以及主要缝隙连接通道连接蛋白43(Cx43)的组织化学。从豚鼠心室获取乳头肌并加载罗丹明-2。用共聚焦显微镜获取表面细胞的连续钙图像。在完整的肌肉中,在0.3×0.3平方毫米的视野范围内,所有细胞在受到场刺激时均显示同步的钙瞬变。在通过在无流动的 Krebs 溶液中高频刺激获得的严重钙超载肌肉中,细胞对刺激的反应性降低。此外,经常检测到钙瞬变的非同步但连续发作,这表明动作电位的传播延迟。两个对齐细胞之间发作的时间滞后有时长达100毫秒。在庚醇抑制缝隙连接通道的肌肉中也观察到类似的滞后现象。为了研究在钙超载肌肉中Cx43的磷酸化状态是否受到影响,使用特异性抗体确定了磷酸化和非磷酸化Cx43的分布。在未超载的肌肉中,大多数Cx43被磷酸化,而在严重钙超载的肌肉中,非磷酸化的Cx43显著升高。我们的结果表明,在几平方毫米的小区域内动作电位的传播延迟可能是钙超载心脏中异常传导和微折返的原因。钠通道失活和缝隙连接通讯抑制可能是细胞间传播延迟的基础。

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