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钙波在细胞间传播并同步大鼠心室肌细胞的交替钙释放吗?

Do calcium waves propagate between cells and synchronize alternating calcium release in rat ventricular myocytes?

机构信息

Unit of Cardiac Physiology, Core Technology Facility, University of Manchester, 46 Grafton Street, Manchester M13 9NT, UK.

出版信息

J Physiol. 2012 Dec 15;590(24):6353-61. doi: 10.1113/jphysiol.2012.245241. Epub 2012 Oct 22.

Abstract

The aim was to investigate the propagation of Ca(2+) waves between cells and determine whether this synchronizes alternating Ca(2+) release between cells. Experiments were carried out on electrically coupled cell pairs; spontaneous Ca(2+) waves were produced by elevating external Ca(2+). There was a significant difference in the ability of these waves to propagate between cells depending on the orientation of the pairs. Although almost all pairs connected by side-to-side contacts showed propagating Ca(2+) release, this was very uncommon in end-to-end cell pairs. Confocal studies showed that there was a gap at the intercalated disc consisting of cell membranes and a region of cytoplasm devoid of sarcoplasmic reticulum. This gap was 2.3 μm in length and is suggested to interfere with Ca(2+) wave propagation. The gap measured was much smaller between side-to-side contacts: 1.5 μm and so much less likely to interfere with propagation. Subsequent experiments investigated the synchronization between cells of Ca(2+) alternans produced by small depolarizing pulses. Although this alternation results from beat-to-beat alternation of intracellular Ca(2+) wave propagation, there was no evidence that propagation of Ca(2+) waves between cells contributed to synchronization of this alternans.

摘要

目的是研究细胞间 Ca(2+)波的传播,并确定这种传播是否能使细胞间交替的 Ca(2+)释放同步。实验在电耦合的细胞对中进行;通过升高细胞外 Ca(2+)来产生自发的 Ca(2+)波。这些波在细胞间传播的能力取决于细胞对的取向,存在显著差异。尽管几乎所有通过侧-侧接触连接的细胞对都显示出传播的 Ca(2+)释放,但在端-端细胞对中这种情况非常罕见。共聚焦研究表明,闰盘处存在一个间隙,由细胞膜和缺乏肌浆网的细胞质区域组成。这个间隙长 2.3μm,据推测会干扰 Ca(2+)波的传播。在侧-侧接触中测量到的间隙要小得多:1.5μm,因此不太可能干扰传播。随后的实验研究了由小去极化脉冲产生的 Ca(2+)交替在细胞间的同步。尽管这种交替是由于细胞内 Ca(2+)波传播的逐拍交替引起的,但没有证据表明细胞间 Ca(2+)波的传播有助于这种交替的同步。

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