Laurita Kenneth R, Rosenbaum David S
The Heart and Vascular Research Center, MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio 44109-1998, USA.
J Mol Cell Cardiol. 2008 Jan;44(1):31-43. doi: 10.1016/j.yjmcc.2007.10.012. Epub 2007 Oct 25.
The close relationship between life-threatening ventricular arrhythmias and contractile dysfunction in the heart implicates intracellular calcium cycling as an important underlying mechanism of arrhythmogenesis. Despite this close association, however, the mechanisms of arrhythmogenesis attributable to impaired calcium cycling are not fully appreciated or understood. In this report we review some of the current thinking regarding arrhythmia mechanisms associated with either abnormal impulse initiation (i.e. arrhythmia triggers) or impulse propagation (i.e. arrhythmia substrates). In all cases, the mechanisms are primarily related to dysfunction of calcium regulatory proteins associated with the sarcomere. These findings highlight the broad scope of arrhythmias associated with abnormal calcium cycling, and provide a basis for a causal relationship between cardiac electrical instability and contractile dysfunction. Moreover, calcium cycling proteins may provide much needed targets for novel antiarrhythmic therapies.
危及生命的室性心律失常与心脏收缩功能障碍之间的密切关系表明,细胞内钙循环是心律失常发生的重要潜在机制。然而,尽管存在这种密切关联,但钙循环受损导致心律失常的机制尚未得到充分认识或理解。在本报告中,我们回顾了一些关于与异常冲动起始(即心律失常触发因素)或冲动传导(即心律失常基质)相关的心律失常机制的当前观点。在所有情况下,这些机制主要与肌节相关的钙调节蛋白功能障碍有关。这些发现突出了与异常钙循环相关的心律失常的广泛范围,并为心脏电不稳定与收缩功能障碍之间的因果关系提供了依据。此外,钙循环蛋白可能为新型抗心律失常治疗提供急需的靶点。