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Blockade by 18β-glycyrrhetinic acid of intercellular electrical coupling in guinea-pig arterioles

机译:18β-甘草次酸对豚鼠小动脉细胞间电耦合的阻断作用

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摘要

Intercellular electrical communication between smooth muscle and endothelial cells was examined in guinea-pig mesenteric arterioles using the whole-cell patch-clamp method. The time course of the current required to impose a 10 mV voltage clamp step was used to determine the extent of electrical coupling between them. Currents recorded from both smooth muscle and endothelial cells relaxed in a multi-exponential manner, indicating the existence of electrical coupling between cells.18β-Glycyrrhetinic acid, a gap junction blocker, quickly blocked electrical communication at 40 μM, while neither heptanol nor octanol did so at concentrations of up to 1 mM.In the current clamp mode, repetitive spikes, induced by 10 mM Ba2+ solutions, could be recorded from both kinds of cells. After blocking gap junctions, spikes could only be recorded from the smooth muscle cell layer, indicating that they had been conducted through myoendothelial junctions.In endothelial cells, acetylcholine (ACh, 3 μM) induced hyperpolarizing responses, which had two phases (an initial fast and a second slower phase) in the current clamp condition. This ACh response persisted in the presence of 18β-glycyrrhetinic acid, although this compound seemed to make the membrane slightly leaky.After blocking gap junctions, the membrane potential of a single cell in a multicellular preparation could be well clamped. Thus, 18β-glycyrrhetinic acid may be useful in studying the function of both arteriolar smooth muscle and endothelial cells while they remain located within a multicellular preparation.
机译:使用全细胞膜片钳方法检查了豚鼠肠系膜小动脉中平滑肌和内皮细胞之间的细胞间电通讯。施加10 mV电压钳位步骤所需的电流随时间变化的时间用于确定它们之间的电耦合程度。平滑肌和内皮细胞记录的电流以多指数方式松弛,表明细胞之间存在电耦合。间隙连接阻滞剂18β-甘草次酸迅速阻断40μM的电通讯,而庚烷醇和辛醇均没有因此在高达1 mM的浓度下。在当前钳位模式下,可以从两种细胞中记录由10 mM Ba2 +溶液引起的重复性尖峰。阻断间隙连接后,只能从平滑肌细胞层记录尖峰,表明它们是通过肌内皮连接进行的。在内皮细胞中,乙酰胆碱(ACh,3μM)诱导超极化反应,该反应有两个阶段(初始快速和第二个较慢的相位)。在18β-甘草次酸存在的情况下,这种ACh反应仍然存在,尽管该化合物似乎会使膜略微渗漏。在阻断间隙连接后,多细胞制剂中的单细胞膜电位可以被很好地钳制。因此,18β-甘草次酸可用于研究小动脉平滑肌和内皮细胞同时保留在多细胞制剂中的功能。

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