Hall J E, Gourdie R G
Department of Physiology and Biophysics, University of California Irvine 92717, USA.
Microsc Res Tech. 1995 Aug 1;31(5):446-51. doi: 10.1002/jemt.1070310513.
In the heart, gap junctions electrically couple myocytes together. Electron- and light-microscope-based analyses have revealed that cardiac gap junctions show a variety of organizational patterns. At the level of gap-junctional channel aggregates, freeze fracture has demonstrated diverse channel packing arrangements in the membranes of different myocardial tissues. Ultrastructural and immunohistochemical studies have shown variation and specialization in the 3-dimensional spatial distribution of gap junctional contacts between different types of myocardial cells. Here, we estimate the access resistance of various configurations of gap junctions using physical principles and explore how certain of these specializations in gap-junctional organization may influence access resistance, a potentially important determinant of electrical conductance between coupled myocardial cells.
在心脏中,缝隙连接将心肌细胞电偶联在一起。基于电子显微镜和光学显微镜的分析表明,心脏缝隙连接呈现出多种组织模式。在缝隙连接通道聚集体水平,冷冻蚀刻已证明不同心肌组织膜中存在多种通道堆积排列。超微结构和免疫组织化学研究表明,不同类型心肌细胞之间缝隙连接接触的三维空间分布存在差异和特异性。在此,我们利用物理原理估算了各种缝隙连接构型的接入电阻,并探讨了缝隙连接组织中的某些特异性如何可能影响接入电阻,而接入电阻是偶联心肌细胞之间电导的一个潜在重要决定因素。