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电压钳制蟾蜍膀胱的瞬态电现象。

Transient electrical phenomenon of the voltage-clamped toad urinary bladder.

作者信息

Gordon L G

机构信息

Department of Physiology, University of Otago, Dunedin, New Zealand.

出版信息

J Physiol. 1990 Feb;421:425-40. doi: 10.1113/jphysiol.1990.sp017953.

Abstract
  1. The effects of changes in voltage on the transepithelial current through the toad urinary bladder have been studied using Ussing chambers. 2. Step changes in voltage produced two transient currents of duration seconds and minutes respectively. 3. Amiloride, which was used to block all active transport, also eliminated the transient nature of the current responses, indicating that the phenomena were cellular in origin. In the presence of amiloride, amphotericin B regenerated the short-circuit current and the transient behaviour. 4. The effects of substituting gluconate for Cl- in the medium were examined. Similar transient responses were observed, indicating that they were not due to changes in a plasma membrane Cl- conductance. 5. The shape and magnitude of the first current transient changed with (i) changes in the mucosal Na+ concentration, (ii) the magnitude of the transepithelial voltage step, (iii) the addition of antidiuretic hormone, (iv) changes in the serosal K+ concentration, or (v) the addition of ouabain. 6. The second current transient was similarly affected by such challenges. 7. In some bladders the voltage step produced current oscillations similar to those obtained after the epithelium had been challenged with a serosal osmotic step (Gordon, 1988). 8. The results suggest that two major processes are initiated by a transepithelial voltage step. The first involves a change in the K+ conductance of the basolateral membrane and the second is associated with the alteration of cellular ion content and Na+ pump rate.
摘要
  1. 利用尤斯灌流小室研究了电压变化对通过蟾蜍膀胱的跨上皮电流的影响。2. 电压的阶跃变化分别产生了持续时间为秒和分钟的两个瞬态电流。3. 用于阻断所有主动转运的氨氯吡脒也消除了电流响应的瞬态特性,表明这些现象起源于细胞。在氨氯吡脒存在的情况下,两性霉素B使短路电流和瞬态行为得以恢复。4. 研究了用葡萄糖酸盐替代培养基中氯离子的影响。观察到类似的瞬态响应,表明它们不是由于质膜氯离子电导的变化所致。5. 第一个电流瞬变的形状和大小随以下因素而变化:(i) 黏膜钠离子浓度的变化;(ii) 跨上皮电压阶跃的大小;(iii) 抗利尿激素的添加;(iv) 浆膜钾离子浓度的变化;或(v) 哇巴因的添加。6. 第二个电流瞬变也受到类似挑战的影响。7. 在一些膀胱中,电压阶跃产生的电流振荡类似于上皮受到浆膜渗透压阶跃刺激后获得的振荡(戈登,1988年)。8. 结果表明,跨上皮电压阶跃引发了两个主要过程。第一个过程涉及基底外侧膜钾离子电导的变化,第二个过程与细胞离子含量和钠离子泵速率的改变有关。

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本文引用的文献

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Junctional complexes in various epithelia.各种上皮组织中的连接复合体。
J Cell Biol. 1963 May;17(2):375-412. doi: 10.1083/jcb.17.2.375.
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Active sodium transport by the isolated toad bladder.离体蟾蜍膀胱的主动钠转运
J Gen Physiol. 1958 Mar 20;41(4):657-68. doi: 10.1085/jgp.41.4.657.

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