首页> 外文期刊>The Journal of Physiology >Alterations in action potential profile enhance excitation-contraction coupling in rat cardiac myocytes.
【24h】

Alterations in action potential profile enhance excitation-contraction coupling in rat cardiac myocytes.

机译:动作电位分布的改变增强了大鼠心肌细胞的兴奋-收缩偶联。

获取原文
获取原文并翻译 | 示例
           

摘要

Action potential (AP) prolongation typically occurs in heart disease due to reductions in transient outward potassium currents (Ito), and is associated with increased Ca2+ transients. We investigated the underlying mechanisms responsible for enhanced Ca2+ transients in normal isolated rat ventricular myocytes in response to the AP changes that occur following myocardial infarction. Normal myocytes stimulated with a train of long post-myocardial infarction (MI) APs showed a 2.2-fold elevation of the peak Ca2+ transient and a 2.7-fold augmentation of fractional cell shortening, relative to myocytes stimulated with a short control AP. The steady-state Ca2+ load of the sarcoplasmic reticulum (SR) was increased 2.0-fold when myocytes were stimulated with trains of long post-MI APs (111 +/- 21.6 micromol l(-1)) compared with short control APs (56 +/- 7.2 micromol l(-1)). Under conditions of equal SR Ca2+ load, long post-MI APs still resulted in a 1.7-fold increase in peak [Ca2+]i and a 3.8-fold increase in fractional cell shortening relative to short control APs, establishing that changes in the triggering of SR Ca2+ release are largely responsible for elevated Ca2+ transients following AP prolongation. Fractional SR Ca2+ release calculated from the measured SR Ca2+ load and the integrated SR Ca2+ fluxes was 24 +/- 3 and 11 +/- 2 % following post-MI and control APs, respectively. The fractional release (FR) of Ca2+ from the SR divided by the integrated L-type Ca2+ flux (FR/[integral]FCa,L) was increased 1.2-fold by post-MI APs compared with control APs. Similar increases in excitation-contraction (E-C) coupling gains were observed establishing enhanced E-C coupling efficiency. Our findings demonstrate that AP prolongation alone can markedly enhance E-C coupling in normal myocytes through increases in the L-type Ca2+ current (ICa,L) trigger combined with modest enhancements in Ca2+ release efficiency. We propose that such changes in AP profile in diseased myocardium may contribute significantly to alterations in E-C coupling independent of other biochemical or genetic changes.
机译:动作电位(AP)延长通常发生在心脏病中,这是由于瞬时向外钾电流(Ito)减少所致,并且与Ca2 +瞬时增加有关。我们调查了在正常的离体大鼠心室心肌细胞中,响应于心肌梗塞后发生的AP变化,Ca2 +瞬变增强的潜在机制。相对于用短对照AP刺激的心肌细胞,用一连串长时间的心肌梗塞(MI)AP刺激的正常心肌细胞显示,Ca2 +瞬时峰值升高2.2倍,分数缩短的增加是2.7倍。与短时对照APs相比,当用长MI-AP后(111 +/- 21.6 micromol l(-1))训练时刺激肌细胞时,肌浆网(SR)的稳态Ca2 +负荷增加了2.0倍。 +/- 7.2微摩尔l(-1))。在相同的SR Ca2 +负载条件下,相对于短期对照AP,较长的MI后AP仍会导致[Ca2 +] i峰增加1.7倍,分数细胞缩短缩短3.8倍,从而确定了触发SR Ca2 +释放是AP延长后Ca2 +瞬变升高的主要原因。 MI后和对照AP后,根据测得的SR Ca2 +负荷和SRCa2 +积分通量计算出的SR Ca2 +分数释放分别为24 +/- 3和11 +/- 2%。与对照组相比,MI后的AP将SR释放的Ca2 +的分数释放(FR)除以积分的L型Ca2 +通量(FR / [FCFC,L])增加了1.2倍。观察到类似的激励-收缩(E-C)耦合增益增加,建立了增强的E-C耦合效率。我们的发现表明,单独的AP延长可以通过L型Ca2 +电流(ICa,L)触发信号的增加与Ca2 +释放效率的适度提高相结合,显着增强正常心肌细胞中的E-C偶联。我们建议,患心肌心肌中AP分布的这种变化可能会显着地影响E-C偶联的变化,而与其他生化或遗传变化无关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号