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首页> 外文期刊>American Journal of Physiology >KATP channel conductance of descending vasa recta pericytes.
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KATP channel conductance of descending vasa recta pericytes.

机译:降脉管直肠周细胞的KATP通道电导。

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Using nystatin-perforated patch-clamp and whole cell recording, we tested the hypothesis that K(ATP) channels contribute to resting conductance of rat descending vasa recta (DVR) pericytes and are modulated by vasoconstrictors. The K(ATP) blocker glybenclamide (Glb; 10 microM) depolarized pericytes and inhibited outward currents of cells held at -40 mV. K(ATP) openers pinacidil (Pnc; 10 microM) and P-1075 (1 microM) hyperpolarized pericytes and transiently augmented outward currents. All effects of Pnc and P-1075 were fully reversed by Glb. Inward currents of pericytes held at -60 mV in symmetrical 140 mM K(+) were markedly augmented by Pnc and fully reversed by Glb. Ramp depolarizations in symmetrical K(+), performed in Pnc and Pnc + Glb, yielded a Pnc-induced, Glb-sensitive K(ATP) difference current that lacked rectification and reversed at 0 mV. Immunostaining identified both K(IR)6.1, K(IR)6.2 inward rectifier subunits and sulfonurea receptor subtype 2B. ANG II (1 and 10 nM) and endothelin-1 (10 nM) but not vasopressin (100 nM) significantly lowered holding current at -40 mV and abolished Pnc-stimulated outward currents. We conclude that DVR pericytes express K(ATP) channels that make a significant contribution to basal K(+) conductance and are inhibited by ANG II and endothelin-1.
机译:使用制霉菌素穿孔的膜片钳和全细胞记录,我们测试了K(ATP)通道有助于大鼠降落直肠(DVR)周细胞静息电导并受血管收缩剂调节的假说。 K(ATP)阻断剂糖苷(Glb; 10 microM)使周细胞去极化并抑制保持在-40 mV的细胞的外向电流。 K(ATP)开瓶器吡那地尔(Pnc; 10 microM)和P-1075(1 microM)超极化周细胞并短暂增加外向电流。 Glb完全抵消了Pnc和P-1075的所有作用。在Pnc的作用下,对称的140 mM K(+)中保持在-60 mV的周细胞的内向电流显着增加,Pnc完全逆转。在Pnc和Pnc + Glb中进行的对称K(+)的斜坡去极化产生了Pnc诱导的,对Glb敏感的K(ATP)差电流,该电流缺乏整流功能并在0 mV时反转。免疫染色鉴定了K(IR)6.1,K(IR)6.2内向整流子亚基和磺脲受体2B亚型。 ANG II(1和10 nM)和内皮素1(10 nM)而非血管加压素(100 nM)显着降低了-40 mV的保持电流,并消除了Pnc刺激的向外电流。我们得出的结论是,DVR周细胞表达的K(ATP)通道对基础K(+)电导有重大贡献,并被ANG II和内皮素1抑制。

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