Nilius B, Viana F, Droogmans G
Laboratorium voor Fysiologie, KU Leuven, Belgium.
Annu Rev Physiol. 1997;59:145-70. doi: 10.1146/annurev.physiol.59.1.145.
The functional impact of ion channels in vascular endothelial cells (ECs) is still a matter of controversy. This review describes different types of ion channels in ECs and their role in electrogenesis, Ca2+ signaling, vessel permeability, cell-cell communication, mechano-sensor functions, and pH and volume regulation. One major function of ion channels in ECs is the control of Ca2+ influx either by a direct modulation of the Ca2+ influx pathway or by indirect modulation of K+ and Cl- channels, thereby clamping the membrane at a sufficiently negative potential to provide the necessary driving force for a sustained Ca2+ influx. We discuss various mechanisms of Ca2+ influx stimulation: those that activate nonselective, Ca(2+)-permeable cation channels or those that activate Ca(2+)-selective channels, exclusively or partially operated by the filling state of intracellular Ca2+ stores. We also describe the role of various Ca(2+)- and shear stress-activated K+ channels and different types of Cl- channels for the regulation of the membrane potential.
离子通道在血管内皮细胞(ECs)中的功能影响仍存在争议。本综述描述了内皮细胞中不同类型的离子通道及其在电发生、Ca2+信号传导、血管通透性、细胞间通讯、机械传感功能以及pH和体积调节中的作用。内皮细胞中离子通道的一个主要功能是通过直接调节Ca2+内流途径或间接调节K+和Cl-通道来控制Ca2+内流,从而将膜钳制在足够负的电位,为持续的Ca2+内流提供必要的驱动力。我们讨论了Ca2+内流刺激的各种机制:那些激活非选择性、Ca(2+)-可渗透阳离子通道的机制,或那些激活Ca(2+)-选择性通道的机制,这些通道完全或部分由细胞内Ca2+储存的充盈状态操作。我们还描述了各种Ca(2+)-和剪切应力激活的K+通道以及不同类型的Cl-通道对膜电位调节的作用。