Dhein S
Institut für Pharmakologie, Universität zu Köln, Germany.
Trends Pharmacol Sci. 1998 Jun;19(6):229-41. doi: 10.1016/s0165-6147(98)01192-4.
Intercellular communication provides the basis for the intact functioning of tissue and for various organs and tissue types in an organism to work together. It is the crucial difference between isolated cells and intact tissue. Cells communicate in various ways with each other; these include the release of chemical transmitters, hormones and mediators as well as direct electrical and chemical intercellular communication via gap junction channels. The gap junction coupling is important for the organization of the tissue as an electrical syncytium and for accurate development. Pharmacological modulation of these channels could be important in the fields of arrhythmogenesis, vasomotion and cell differentiation. In this review, Stefan Dhein outlines the structure, synthesis and function of gap junction channels. Since their physiology and pharmacology are best investigated in the cardiovascular system, the second part of the article focuses on the role of gap junctions in the heart and vasculature, with special emphasis on the regulation of the channels by physiological stimuli such as ions, pH mediators and transjunctional voltage as well as their pharmacological modulation.
细胞间通讯为组织的完整功能以及生物体中各种器官和组织类型协同工作提供了基础。这是孤立细胞与完整组织之间的关键区别。细胞通过多种方式相互通讯;这些方式包括释放化学递质、激素和介质,以及通过缝隙连接通道进行直接的电和化学细胞间通讯。缝隙连接耦联对于组织作为电合体的组织形成和精确发育很重要。这些通道的药理学调节在心律失常发生、血管运动和细胞分化等领域可能很重要。在这篇综述中,斯特凡·德因概述了缝隙连接通道的结构、合成和功能。由于它们的生理学和药理学在心血管系统中研究得最为深入,文章的第二部分重点关注缝隙连接在心脏和血管系统中的作用,特别强调离子、pH介质和跨连接电压等生理刺激对通道的调节以及它们的药理学调节。