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氰化物对美西螈胆囊上皮细胞膜电位影响的机制。

Mechanism of the effect of cyanide on cell membrane potentials in Necturus gall-bladder epithelium.

作者信息

Bello-Reuss E, Grady T P, Reuss L

出版信息

J Physiol. 1981 May;314:343-57. doi: 10.1113/jphysiol.1981.sp013712.

Abstract
  1. Addition of sodium cyanide to the mucosal or the serosal medium bathing the isolated gall-bladder of Necturus maculosus causes hyperpolarization of both apical and basolateral membrane of the epithelial cells. The effect of cyanide is practically immediate, reversible (if exposure is brief), and long-lasting (greater than 30 min). 2. The hyperpolarization is accompanied by: (a) reduction of the equivalent resistance of the cell membranes, as shown by cable analysis and input resistance measurements, and (b) increase of the potassium selectivity of both cell membranes, as evidenced by the effects of external substitutions of potassium for sodium on cell membrane potentials. We conclude that the cyanide-induced hyperpolarization is caused mainly or exclusively by an increase of the potassium permeability of the cell membranes. 3. Addition of the calcium ionophore A23187 (5 microM) to the mucosal medium in the presence of 1 mM-calcium caused similar effects to those produced by cyanide. After either cyanide or A23187, addition of the other agent did not cause further membrane potential changes. 4. Quinine (100 microM, mucosal medium) reduced the potassium permeability of the apical membrane both under control conditions and during exposure to cyanide. 5. We suggest that the cyanide-induced increase of the potassium permeability of the cell membrane is mediated by an elevation of intracellular calcium ion activity, attributable to release from mitochondrial sources.
摘要
  1. 向浸泡在斑泥螈离体胆囊的黏膜或浆膜培养基中添加氰化钠,会导致上皮细胞顶端和基底外侧膜超极化。氰化物的作用几乎是即时的、可逆的(如果暴露时间短暂)且持久的(超过30分钟)。2. 超极化伴随着:(a) 细胞膜等效电阻降低,这通过电缆分析和输入电阻测量得以显示;(b) 两种细胞膜对钾离子的选择性增加,这由外部用钾离子替代钠离子对细胞膜电位的影响所证明。我们得出结论,氰化物诱导的超极化主要或完全是由细胞膜钾离子通透性增加引起的。3. 在存在1 mM钙的情况下,向黏膜培养基中添加钙离子载体A23187(5 microM)会产生与氰化物相似的效果。在添加氰化物或A23187之后,再添加另一种试剂不会引起进一步的膜电位变化。4. 奎宁(100 microM,黏膜培养基)在对照条件下以及暴露于氰化物期间均降低了顶端膜的钾离子通透性。5. 我们认为,氰化物诱导的细胞膜钾离子通透性增加是由细胞内钙离子活性升高介导的,这归因于线粒体来源的释放。

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