首页> 外文期刊>American Journal of Physiology >EDHF is not K+ but may be due to spread of current from the endothelium in guinea pig arterioles.
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EDHF is not K+ but may be due to spread of current from the endothelium in guinea pig arterioles.

机译:EDHF不是K +,但可能是由于豚鼠小动脉中内皮细胞的电流扩散所致。

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摘要

Endothelium-derived hyperpolarizing factor (EDHF)-attributed hyperpolarizations and relaxations were recorded simultaneously from submucosal arterioles of guinea pigs with the use of intracellular microelectrodes and a video-based system, respectively. Membrane currents were recorded from electrically short segments of arterioles under single-electrode voltage clamp. Substance P evoked an outward current with a current-voltage relationship that was well described by the Goldman-Hodgkin-Katz equation for a K+ current, consistent with the involvement of intermediate- and small-conductance Ca2+-activated K+ channels. 1-Ethyl-2-benzimidazolinone relaxed the arterioles and evoked hyperpolarizations that were blocked by charybdotoxin, but not by iberiotoxin. Application of K+ induced depolarization under conditions in which EDHF evoked hyperpolarization. The Ba2+-sensitive component of the K+-induced current was inwardly rectifying, in contrast to the outwardly rectifying current evoked by substance P. EDHF-attributed hyperpolarizations in dye-identified smooth muscle cells were indistinguishable from those recorded from dye-identified endothelial cells in the same arterioles. These results provide evidence that EDHF is not K+ but may involve electrotonic spread of hyperpolarization from the endothelial cells to the smooth muscle cells.
机译:分别使用细胞内微电极和基于视频的系统,同时从豚鼠粘膜下小动脉同时记录了内皮源性超极化因子(EDHF)引起的超极化和弛豫。在单电极电压钳下记录短电流的小动脉膜电流。物质P诱发了具有电流-电压关系的外向电流,该电流与电压之间的关系已由Goldman-Hodgkin-Katz方程很好地描述了K +电流,这与中,小电导Ca2 +激活的K +通道的参与一致。 1-乙基-2-苯并咪唑啉酮使小动脉松弛并引起超极化,这种超极化被charybdotoxin阻止,但未被iberiotoxin阻止。在EDHF引起超极化的条件下,K +引起的去极化作用。与物质P诱发的向外整流电流相反,K +感应电流的Ba2 +敏感成分向内整流。在染料鉴定的平滑肌细胞中,EDHF归因的超极化与在染料鉴定的内皮细胞中所记录的没有区别。相同的小动脉。这些结果提供了证据,证明EDHF不是K +,但可能涉及超极化从内皮细胞到平滑肌细胞的电声扩散。

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