Cardiovascular disease.

N. Severs
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引用次数: 4

Abstract

Gap junctions play essential roles in the normal function of the heart and arteries, mediating the spread of the electrical impulse that stimulates synchronized contraction of the cardiac chambers, and contributing to co-ordination of function between cells of the arterial wall. Altered gap junctional coupling is implicated in the genesis of arrhythmia, a major cause of death in heart disease. Two abnormalities in myocardial gap junctions distribution at the border zone of infarcts and reduced levels of connexin43 (Cx43; alpha 1)--may lead to heterogeneous wavefront propagation and lowered conduction velocity, key factors that precipitate arrhythmia. In the major arteries, endothelial cells express Cx40 (alpha 5) and Cx37 (alpha 4) and, in some instances, also Cx43, whereas underlying medial smooth muscle cells express only Cx43. Increased Cx43 expression between medial smooth muscle cells is intimately linked to phenotypic transformation to the synthetic state in both early human coronary phenotypic transformation to the synthetic state in both early human coronary atherosclerosis, and in the response of the arterial wall to injury. The accumulating evidence suggests that gap junctions in both their guises--as pathways for cell-to-cell signalling in the vessel wall and as pathways for impulse conduction in the heart--may have key roles in the initial pathogenesis and eventual clinical manifestation of human cardiovascular disease.
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心血管疾病。
间隙连接在心脏和动脉的正常功能中起着至关重要的作用,介导刺激心室同步收缩的电脉冲的传播,并促进动脉壁细胞之间的功能协调。间隙连接偶联的改变与心律失常的发生有关,心律失常是心脏病死亡的主要原因。梗死边界区心肌间隙连接分布异常及连接蛋白43水平降低(Cx43;α 1)——可能导致波前传播不均匀和传导速度降低,这是诱发心律失常的关键因素。在大动脉中,内皮细胞表达Cx40 (α 5)和Cx37 (α 4),在某些情况下也表达Cx43,而下层内侧平滑肌细胞仅表达Cx43。内侧平滑肌细胞中Cx43表达的增加与早期人类冠状动脉表型转化为合成状态以及早期人类冠状动脉粥样硬化对动脉壁损伤的反应密切相关。越来越多的证据表明,两种形式的间隙连接——作为血管壁细胞间信号传导途径和心脏脉冲传导途径——可能在人类心血管疾病的初始发病机制和最终临床表现中发挥关键作用。
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