首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Spatial variability in T-tubule and electrical remodeling of left ventricular epicardium in mouse hearts with transgenic Gαq overexpression-induced pathological hypertrophy
【24h】

Spatial variability in T-tubule and electrical remodeling of left ventricular epicardium in mouse hearts with transgenic Gαq overexpression-induced pathological hypertrophy

机译:转基因Gαq过表达诱导的病理性肥大小鼠心脏T管的空间变异性和左心室心电重构

获取原文
获取原文并翻译 | 示例
       

摘要

Pathological left ventricular hypertrophy (LVH) is consistently associated with prolongation of the ventricular action potentials. A number of previous studies, employing various experimental models of hypertrophy, have revealed marked differences in the effects of hypertrophy on action potential duration (APD) between myocytes from endocardial and epicardial layers of the LV free wall. It is not known, however, whether pathological LVH is also accompanied by redistribution of APD among myocytes from the same layer in the LV free wall. In the experiments here, LV epicardial action potential remodeling was examined in a mouse model of decompensated LVH, produced by cardiac-restricted transgenic Gαq overexpression. Confocal linescanning-based optical recordings of propagated action potentials from individual in situ cardiomyocytes across the outer layer of the anterior LV epicardium demonstrated spatially non-uniform action potential prolongation in transgenic hearts, giving rise to alterations in spatial dispersion of epicardial repolarization. Local density and distribution of anti-Cx43 mmune reactivity in Gαq hearts were unchanged compared to wild-type hearts, suggesting preservation of intercellular coupling. Confocal microscopy also revealed heterogeneous disorganization of T-tubules in epicardial cardiomyocytes in situ. These data provide evidence of the existence of significant electrical and structural heterogeneity within the LV epicardial layer of hearts with transgenic Gαq overexpression-induced hypertrophy, and further support the notion that a small portion of electrically well connected LV tissue can maintain dispersion of action potential duration through heterogeneity in the activities of sarcolemmal ionic currents that control repolarization. It remains to be examined whether other experimental models of pathological LVH, including pressure overload LVH, similarly exhibit alterations in T-tubule organization and/or dispersion of repolarization within distinct layers of LV myocardium.
机译:病理性左心室肥大(LVH)与心室动作电位的延长一致。先前采用多种肥大实验模型进行的许多研究表明,肥大对左心室游离壁心内膜层和心外膜层的心肌细胞之间动作电位持续时间(APD)的影响存在明显差异。然而,尚不清楚病理性LVH是否还会伴随着LVD在LV自由壁同一层的肌细胞之间重新分布。在此处的实验中,在失代偿的LVH小鼠模型中检查了LV心外膜动作电位重塑,该模型由心脏限制性转基因Gαq过表达产生。基于共聚焦线扫描的光学记录显示了来自单个原位心肌细胞跨前LV心外膜外层传播的动作电位在转基因心脏中的空间不均匀动作电位延长,导致心外膜复极的空间分散性改变。与野生型心脏相比,Gαq心脏中抗Cx43免疫反应性的局部密度和分布没有变化,表明保留了细胞间偶联。共聚焦显微镜还显示了心外膜心肌细胞中原位T管的异质组织。这些数据提供了证据,表明在具有转基因Gαq过表达诱导的肥大的心脏的左心外膜层中存在明显的电和结构异质性,并进一步支持了这样的观点,即小部分电连接良好的LV组织可以维持动作电位持续时间的分散通过控制复极的肌膜离子电流活动中的异质性。病理LVH的其他实验模型,包括压力超负荷LVH,是否同样表现出T管结构的改变和/或LV心肌不同层内复极化的分散,还有待检查。

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