Huelsing D J, Spitzer K W, Cordeiro J M, Pollard A E
Department of Biomedical Engineering, Tulane University, New Orleans, Louisiana 70125, USA.
Am J Physiol. 1998 Apr;274(4):H1163-73. doi: 10.1152/ajpheart.1998.274.4.H1163.
Conduction at the Purkinje-ventricular junction (PVJ) demonstrates unidirectional block under both physiological and pathophysiological conditions. Although this block is typically attributed to multidimensional electrotonic interactions, we examined possible membrane-level contributions using single, isolated rabbit Purkinje (P) and ventricular (V) myocytes coupled by an electronic circuit. When we varied the junctional resistance (Rj) between paired V myocytes, conduction block occurred at lower Rj values during conduction from the smaller to larger myocyte (115 +/- 59 M omega) than from the larger to smaller myocyte (201 +/- 51 M omega). In Purkinje-ventricular myocyte pairs, however, block occurred at lower Rj values during P-to-V conduction (85 +/- 39 M omega) than during V-to-P conduction (912 +/- 175 M omega), although there was little difference in the mean cell size. Companion computer simulations, performed to examine how the early platea currents affected conduction, showed that P-to-V block occurred at lower Rj values when the transient outward current was increased or the calcium current was decreased in the model P cell. These results suggest that intrinsic differences in phase 1 repolarization can contribute to unidirectional block at the PVJ.
在生理和病理生理条件下,浦肯野纤维-心室连接(PVJ)处的传导均表现为单向阻滞。尽管这种阻滞通常归因于多维电紧张相互作用,但我们使用通过电子电路耦合的单个分离兔浦肯野(P)和心室(V)肌细胞,研究了可能的膜水平贡献。当我们改变配对V肌细胞之间的连接电阻(Rj)时,在从较小肌细胞向较大肌细胞传导过程中,传导阻滞发生时的Rj值(115±59 MΩ)低于从较大肌细胞向较小肌细胞传导时(201±51 MΩ)。然而,在浦肯野-心室肌细胞对中,P向V传导过程中传导阻滞发生时的Rj值(85±39 MΩ)低于V向P传导时(912±175 MΩ),尽管平均细胞大小差异不大。为研究早期平台电流如何影响传导而进行的配套计算机模拟显示,当模型P细胞中的瞬时外向电流增加或钙电流减少时,P向V阻滞在较低的Rj值时发生。这些结果表明,1期复极化的内在差异可能导致PVJ处的单向阻滞。