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Potassium channels and vascular proliferation.

机译:钾通道和血管增生。

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Potassium channels are currently the focus of much attention because of their recently discovered role in the regulation of vascular smooth muscle growth. Dramatic alterations in the expression and activity of K+ channels causing marked changes in the cell's electrical properties accompany enhanced growth of smooth muscle cells (SMCs). These findings indicate that alterations in K+ channel function are important for SMC proliferation. However, the mechanisms by which changes in K+ channel activity influence cellular growth pathways are poorly understood. The emergent electrical properties caused by modulation of K+ channels are associated with marked differences in the spatial and temporal organization of Ca2+ signaling. Thus, changes in K+ channel function may represent a universal mechanism by which Ca2+ signals are targeted towards activation of gene expression and cell growth. As enhanced growth of smooth muscle underlies many cardiovascular diseases and clinical pathologies, the identification of an important role for K+ channels in SMC proliferation indicates a new source of therapeutic targets to regulate proliferative vascular disorders.
机译:由于钾通道最近在调节血管平滑肌生长中的作用,因此钾通道目前是许多关注的焦点。 K +通道表达和活性的戏剧性改变导致细胞电学性质发生明显变化,并伴有平滑肌细胞(SMCs)生长的增强。这些发现表明,K +通道功能的改变对于SMC增殖很重要。但是,对K +通道活性变化影响细胞生长途径的机制了解甚少。由K +通道调制引起的新兴电学特性与Ca2 +信号的时空组织的明显差异有关。因此,K +通道功能的改变可能代表了一种普遍的机制,通过该机制,Ca2 +信号可靶向激活基因表达和细胞生长。由于平滑肌生长的增强是许多心血管疾病和临床病理的基础,因此确定K +通道在SMC增殖中的重要作用表明了调节增殖性血管疾病的治疗靶标的新来源。

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