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来自未用酶处理的子宫细胞的单通道氯离子和钾离子电流。

Single channel Cl- and K+ currents from cells of uterus not treated with enzymes.

作者信息

Coleman H A, Parkington H C

机构信息

Department of Physiology, Monash University, Clayton, Victoria, Australia.

出版信息

Pflugers Arch. 1987 Nov;410(4-5):560-2. doi: 10.1007/BF00586540.

Abstract

Single channel currents were recorded from uterine smooth muscle cells of pregnant guinea-pigs. The cells were within small bundles of smooth muscle of low input resistance. Giga-ohm seals were formed between the patch clamp electrodes and the membrane of smooth muscle cells that had not been treated with enzymes. In cell-attached mode, outward current steps were observed that had a conductance of 130-170 pS, a reversal potential close to the potassium reversal potential, and the probability of a channel being in the open state increased e-fold per 8-11 mV depolarization. In the cell-free, inside-out patch mode, currents were recorded that had a large conductance, 420 pS, and smaller conductance levels. When the chloride concentration was changed the reversal potential shifted in a manner consistent with the Nernst equation indicating that the channels were permeable to chloride ions.

摘要

从怀孕豚鼠子宫平滑肌细胞记录单通道电流。这些细胞位于低输入电阻的小束平滑肌内。在膜片钳电极与未用酶处理的平滑肌细胞膜之间形成千兆欧封接。在细胞贴附模式下,观察到外向电流阶跃,其电导为130 - 170 pS,反转电位接近钾反转电位,并且通道处于开放状态的概率每8 - 11 mV去极化增加e倍。在无细胞的内面向外膜片模式下,记录到具有大电导(420 pS)和较小电导水平的电流。当改变氯离子浓度时,反转电位以与能斯特方程一致的方式移动,表明这些通道对氯离子有通透性。

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