...
首页> 外文期刊>Basic Research in Cardiology: Official Journal of the German Association of Cardiovascular Research >The cardiac sodium channel displays differential distribution in the conduction system and transmural heterogeneity in the murine ventricular myocardium.
【24h】

The cardiac sodium channel displays differential distribution in the conduction system and transmural heterogeneity in the murine ventricular myocardium.

机译:心脏钠通道在鼠心室心肌的传导系统和透壁异质性方面表现出差异性分布。

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

Cardiac sodium channels are responsible for conduction in the normal and diseased heart. We aimed to investigate regional and transmural distribution of sodium channel expression and function in the myocardium. Sodium channel Scn5a mRNA and Na(v)1.5 protein distribution was investigated in adult and embryonic mouse heart through immunohistochemistry and in situ hybridization. Functional sodium channel availability in subepicardial and subendocardial myocytes was assessed using patch-clamp technique. Adult and embryonic (ED14.5) mouse heart sections showed low expression of Na(v)1.5 in the HCN4-positive sinoatrial and atrioventricular nodes. In contrast, high expression levels of Na(v)1.5 were observed in the HCN4-positive and Cx43-negative AV or His bundle, bundle branches and Purkinje fibers. In both ventricles, a transmural gradient was observed, with a low Na(v)1.5 labeling intensity in the subepicardium as compared to the subendocardium. Similar Scn5a mRNA expression patterns were observed on in situ hybridization of embryonic and adult tissue. Maximal action potential upstroke velocity was significantly lower in subepicardial myocytes (mean +/- SEM 309 +/- 32 V/s; n = 14) compared to subendocardial myocytes (394 +/- 32 V/s; n = 11; P < 0.05), indicating decreased sodium channel availability in subepicardium compared to subendocardium. Scn5a and Na(v)1.5 show heterogeneous distribution patterns within the cardiac conduction system and across the ventricular wall. This differential distribution of the cardiac sodium channel may have profound consequences for conduction disease phenotypes and arrhythmogenesis in the setting of sodium channel disease.
机译:心脏钠通道负责正常和患病心脏的传导。我们旨在研究心肌通道中钠通道表达和功能的区域和透壁分布。通过免疫组织化学和原位杂交研究成年和胚胎小鼠心脏钠通道Scn5a mRNA和Na(v)1.5蛋白的分布。使用膜片钳技术评估心外膜下和心内膜下心肌细胞中功能性钠通道的可用性。成人和胚胎(ED14.5)小鼠心脏切片显示HCN4阳性窦房和房室结中Na(v)1.5的低表达。相反,在HCN4阳性和Cx43阴性的AV或His束,束支和Purkinje纤维中观察到Na(v)1.5的高表达水平。在两个心室中,观察到透壁梯度,与心内膜下相比,皮下膜中的Na(v)1.5标记强度低。在胚胎和成年组织的原位杂交中观察到相似的Scn5a mRNA表达模式。与心内膜下心肌细胞(394 +/- 32 V / s; n = 11; P <,SEM 309 +/- 32 V / s; n = 14)相比,心外膜下心肌的最大动作电位上升速度明显更低。 0.05),表明与心内膜下相比,皮下膜中钠通道的利用率降低。 Scn5a和Na(v)1.5显示心脏传导系统内和整个心室壁的异质分布模式。心脏钠通道的这种差异分布可能会对钠通道疾病中的传导性疾病表型和心律失常产生深远的影响。

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