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首页> 外文期刊>Pflügers Archiv European Journal of Physiology >Connexins and gap junctions in the EDHF phenomenon and conducted vasomotor responses
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Connexins and gap junctions in the EDHF phenomenon and conducted vasomotor responses

机译:EDHF现象和传导血管舒缩反应中的连接蛋白和间隙连接

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It is becoming increasingly evident that electrical signaling via gap junctions plays a central role in the physiological control of vascular tone via two related mechanisms (1) the endothelium-derived hyperpolarizing factor (EDHF) phenomenon, in which radial transmission of hyperpolarization from the endothelium to subjacent smooth muscle promotes relaxation, and (2) responses that propagate longitudinally, in which electrical signaling within the intimal and medial layers of the arteriolar wall orchestrates mechanical behavior over biologically large distances. In the EDHF phenomenon, the transmitted endothelial hyperpolarization is initiated by the activation of Ca2+-activated K+ channels channels by InsP3-induced Ca2+ release from the endoplasmic reticulum and/or store-operated Ca2+ entry triggered by the depletion of such stores. Pharmacological inhibitors of direct cell-cell coupling may thus attenuate EDHF-type smooth muscle hyperpolarizations and relaxations, confirming the participation of electrotonic signaling via myoendothelial and homocellular smooth muscle gap junctions. In contrast to isolated vessels, surprisingly little experimental evidence argues in favor of myoendothelial coupling acting as the EDHF mechanism in arterioles in vivo. However, it now seems established that the endothelium plays the leading role in the spatial propagation of arteriolar responses and that these involve poorly understood regenerative mechanisms. The present review will focus on the complex interactions between the diverse cellular signaling mechanisms that contribute to these phenomena.
机译:越来越明显的是,通过间隙连接的电信号传导通过两种相关机制在血管紧张的生理控制中起着重要作用(1)内皮源性超极化因子(EDHF)现象,其中超极化从内皮细胞径向传递至下方的平滑肌促进松弛,以及(2)纵向传播的响应,其中小动脉壁内膜和内膜层内的电信号在生物学上较长的距离内协调机械行为。在EDHF现象中,由InsP 3 诱导的Ca 2 + 激活的K + 通道通道的激活引发内皮的超极化。 Ca 2 + 从内质网释放和/或由此类存储的耗尽触发存储操作的Ca 2 + 进入。直接细胞间偶联的药理抑制剂因此可以减弱EDHF型平滑肌的超极化作用和松弛,从而证实了通过肌内皮和同细胞平滑肌间隙连接参与的电声信号。与孤立的血管相反,令人惊讶的是,几乎没有实验证据证明在体内小动脉中内皮内皮偶联起EDHF机制的作用。然而,现在似乎已经确定,内皮在小动脉反应的空间传播中起主要作用,并且这些反应涉及鲜为人知的再生机制。本综述将集中在促成这些现象的各种细胞信号传导机制之间的复杂相互作用。

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