Bu Guixue, Adams Heather, Berbari Edward J, Rubart Michael
Department of Biomedical Engineering, Purdue School of Engineering and Technology, Indianapolis, Indiana 46202, USA.
Biophys J. 2009 Mar 18;96(6):2532-46. doi: 10.1016/j.bpj.2008.12.3896.
Previous studies have speculated, based on indirect evidence, that the action potential at the transverse (t)-tubules is longer than at the surface membrane in mammalian ventricular cardiomyocytes. To date, no technique has enabled recording of electrical activity selectively at the t-tubules to directly examine this hypothesis. We used confocal line-scan imaging in conjunction with the fast response voltage-sensitive dyes ANNINE-6 and ANNINE-6plus to resolve action potential-related changes in fractional dye fluorescence (DeltaF/F) at the t-tubule and surface membranes of in situ mouse ventricular cardiomyocytes. Peak DeltaF/F during action potential phase 0 depolarization averaged -21% for both dyes. The shape and time course of optical action potentials measured with the water-soluble ANNINE-6plus were indistinguishable from those of action potentials recorded with intracellular microelectrodes in the absence of the dye. In contrast, optical action potentials measured with the water-insoluble ANNINE-6 were significantly prolonged compared to the electrical recordings obtained from dye-free hearts, suggesting electrophysiological effects of ANNINE-6 and/or its solvents. With either dye, the kinetics of action potential-dependent changes in DeltaF/F during repolarization were found to be similar at the t-tubular and surface membranes. This study provides what to our knowledge are the first direct measurements of t-tubule electrical activity in ventricular cardiomyocytes, which support the concept that action potential duration is uniform throughout the sarcolemma of individual cells.
以往的研究基于间接证据推测,在哺乳动物心室心肌细胞中,横管(t管)处的动作电位比表面膜处的动作电位持续时间更长。迄今为止,尚无技术能够选择性地记录t管处的电活动以直接检验这一假说。我们结合使用共聚焦线扫描成像技术以及快速响应电压敏感染料ANNINE-6和ANNINE-6plus,来解析原位小鼠心室心肌细胞t管和表面膜处与动作电位相关的染料荧光分数变化(ΔF/F)。两种染料在动作电位0期去极化期间的峰值ΔF/F平均为-21%。用水溶性的ANNINE-6plus测量的光学动作电位的形状和时间进程与在无染料情况下用细胞内微电极记录的动作电位无法区分。相比之下,用水不溶性的ANNINE-6测量的光学动作电位与从无染料心脏获得的电记录相比显著延长,这表明ANNINE-6和/或其溶剂具有电生理效应。使用任何一种染料时,在复极化期间,t管和表面膜处与动作电位相关的ΔF/F变化动力学相似。据我们所知,本研究首次直接测量了心室心肌细胞中t管的电活动,支持了动作电位持续时间在单个细胞的整个肌膜上是一致的这一概念。