...
首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Myocardial Ca2+ handling and cell-to-cell coupling, key factors in prevention of sudden cardiac death.
【24h】

Myocardial Ca2+ handling and cell-to-cell coupling, key factors in prevention of sudden cardiac death.

机译:心肌CA2 +处理和细胞对细胞偶联,预防心脏死亡的关键因素。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Using whole-heart preparations, we tested our hypothesis that Ca(2+) handling is closely related to cell-to-cell coupling at the gap junctions and that both are critical for the development and particularly the termination of ventricular fibrillation (VF) and hence the prevention of sudden arrhythmic death. Intracellular free calcium concentration ([Ca(2+)](i)), ECG, and left ventricular pressure were continuously monitored in isolated guinea pig hearts before and during development of low K(+)-induced sustained VF and during its conversion into sinus rhythm facilitated by stobadine. We also examined myocardial ultrastructure to detect cell-to-cell coupling alterations. We demonstrated that VF occurrence was preceded by a 55.9% +/- 6.2% increase in diastolic [Ca(2+)](i), which was associated with subcellular alterations indicating Ca(2+) overload of the cardiomyocytes and disorders in coupling among the cells. Moreover, VF itself further increased [Ca(2+)](i) by 58.2% +/- 3.4% and deteriorated subcellular and cell-to-cell coupling abnormalities that were heterogeneously distributed throughout the myocardium. In contrast, termination of VF and its conversion into sinus rhythm was marked by restoration of basal [Ca(2+)](i), resulting in recovery of intercellular coupling linked with synchronous contraction. Furthermore, we have shown that hearts exhibiting lower SERCA2a (sarcoplasmic reticulum Ca(2+)-ATPase) activity and abnormal intercellular coupling (as in older guinea pigs) are more prone to develop Ca(2+) overload associated with cell-to-cell uncoupling than hearts with higher SERCA2a activity (as in young guinea pigs). Consequently, young animals are better able to terminate VF spontaneously. These findings indicate the crucial role of Ca(2+) handling in relation to cell-to-cell coupling in both the occurrence and termination of malignant arrhythmia.
机译:使用全心脏制剂,我们测试了我们的假设,即Ca(2+)处理与间隙连接处的细胞到细胞耦合密切相关,并且两者对开发和尤其是心室纤维状(VF)的终止至关重要。因此,预防突然的心律失常死亡。在低K(+)诱导的持续VF和转化过程中,在分离的豚鼠心脏中连续监测细胞内游离钙浓度([Ca(2 +)](I)),ECG和左心室压力在分离的豚鼠心脏中进行连续监测Stobadine促进了窦性心律。我们还检查了心肌超微结构以检测细胞到细胞耦合改变。我们证明VF发生的舒张[Ca(2 +)](I)增加了55.9%+/- 6.2%,其与表明CA(2+)的心肌细胞和耦合疾病疾病的亚细胞改变相关在细胞中。此外,VF本身进一步增加了[Ca(2 +)](I)的58.2%+/- 3.4%,劣化的亚细胞和细胞至细胞偶联异质,所述细胞和细胞对细胞偶联异质分布在整个心肌中。相反,通过恢复基础[Ca(2 +)](I),标志着VF的终止及其转化为窦性心律,导致与同步收缩连接的细胞间偶联的回收率。此外,我们已经表明,表现出低筛选的心脏(Sarcoplasmic网状蛋白Ca(2 +) - ATP酶)活性和异细胞间偶联(如旧的豚鼠)更容易发生与细胞相关的Ca(2+)过载 - 细胞解耦比具有更高的Serca2a活性的心(如幼豚鼠)。因此,幼小动物更好地能够自发地终止VF。这些发现表明Ca(2+)处理在恶性心律失常的发生和终止中的细胞对细胞偶联方面的Ca(2+)处理的关键作用。

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