Sato Takashi, Ohkusa Tomoko, Honjo Haruo, Suzuki Shinsuke, Yoshida Masa-aki, Ishiguro Yuko S, Nakagawa Harumichi, Yamazaki Masatoshi, Yano Masafumi, Kodama Itsuo, Matsuzaki Masunori
Division of Cardiology, Department of Medicine and Clinical Science, Yamaguchi University Graduate School of Medicine, 1-1-1, Minami-kogushi, Ube, Yamaguchi 755-8505, Japan.
Am J Physiol Heart Circ Physiol. 2008 Mar;294(3):H1164-73. doi: 10.1152/ajpheart.00960.2007. Epub 2007 Dec 7.
Heart failure is known to predispose to life-threatening ventricular tachyarrhythmias even before compromising the systemic circulation, but the underlying mechanism is not well understood. The aim of this study was to clarify the connexin43 (Cx43) gap junction remodeling and its potential role in the pathogenesis of arrhythmias during the development of heart failure. We investigated stage-dependent changes in Cx43 expression in UM-X7.1 cardiomyopathic hamster hearts and associated alterations in the electrophysiological properties using a high-resolution optical mapping system. UM-X7.1 hamsters developed left ventricular (LV) hypertrophy by ages 6 approximately 10 wk and showed a moderate reduction in LV contractility at age 20 wk. Appreciable interstitial fibrosis was recognized at these stages. LV mRNA and protein levels of Cx43 in UM-X7.1 were unaffected at age 10 wk but significantly reduced at 20 wk. The expression level of Ser255-phosphorylated Cx43 in UM-X7.1 at age 20 wk was significantly greater than that in control golden hamsters at the same age. In UM-X7.1 at age 10 wk, almost normal LV conduction was preserved, whereas the dispersion of action potential duration was significantly increased. UM-X7.1 at age 20 wk showed significant reduction of cardiac space constant, significant decrease in conduction velocity, marked distortion of activation fronts, and pronounced increase in action potential duration dispersion. Programmed stimulation resulted in sustained ventricular tachycardia or fibrillation in UM-X7.1. LV activation during polymorphic ventricular tachycardia was characterized by multiple phase singularities or wavebreaks. During the development of heart failure in the cardiomyopathic hamster, alterations of Cx43 expression and phosphorylation in concert with interstitial fibrosis may create serious arrhythmogenic substrate through an inhibition of cell-to-cell coupling.
已知心力衰竭甚至在损害体循环之前就易引发危及生命的室性快速心律失常,但其潜在机制尚未完全明确。本研究旨在阐明连接蛋白43(Cx43)间隙连接重塑及其在心力衰竭发展过程中对心律失常发病机制的潜在作用。我们使用高分辨率光学标测系统研究了UM-X7.1心肌病仓鼠心脏中Cx43表达的阶段依赖性变化以及电生理特性的相关改变。UM-X7.1仓鼠在6至10周龄时出现左心室(LV)肥厚,并在20周龄时左心室收缩力出现中度下降。在这些阶段可观察到明显的间质纤维化。UM-X7.1中LV的Cx43 mRNA和蛋白水平在10周龄时未受影响,但在20周龄时显著降低。20周龄的UM-X7.1中Ser255磷酸化Cx43的表达水平显著高于同龄对照金黄仓鼠。在10周龄的UM-X7.1中,LV传导几乎保持正常,而动作电位时程离散度显著增加。20周龄的UM-X7.1显示心脏空间常数显著降低、传导速度显著减慢、激活前沿明显扭曲以及动作电位时程离散度显著增加。程控刺激导致UM-X7.1出现持续性室性心动过速或颤动。多形性室性心动过速期间LV激活的特征为多个相位奇点或波裂。在心肌病仓鼠心力衰竭发展过程中,Cx43表达和磷酸化的改变与间质纤维化共同作用,可能通过抑制细胞间偶联形成严重的致心律失常基质。