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豚鼠胃环形肌中钠去除所产生的去极化。

Depolarization produced by sodium removal in the circular muscle of the guinea-pig stomach.

作者信息

Sakamoto Y, Tomita T

出版信息

J Physiol. 1982 May;326:329-39. doi: 10.1113/jphysiol.1982.sp014196.

Abstract
  1. Reducing the Na concentration to less than 20 mM depolarized the circular muscle of the guinea-pig stomach and contracture developed. The rate of depolarization varied between preparations. In some, all electrical activity disappeared within 2-3 min in Na-free solution, accompanied by depolarization, but in other preparations a sinusoidal rhythmic activity remained for various lengths of time up to 10 min. 2. When Ca was removed after the depolarization in Na-free solution was fully developed, the membrane partly repolarized and the contracture was abolished. Addition of 2 mM-Mn in the presence of Ca had the same effect. 3. After complete block of electrical activity in Ca-free and Na-free solution, readmission of only Ca (2.5-50 mM) produced sinusoidal rhythmic activity. This activity, observed in the absence of Na, was abolished when the membrane was hyperpolarized by applying inward current. 4. The membrane depolarized in Na-free solution was repolarized by readmission of only 5 mM-Na. This repolarization was greater and faster when the exposure to Na-free solution was prolonged. 5. The possibility was considered that an electrogenic Na-Ca exchange may be involved in the generation of the first component of the slow wave, and that removal of Na blocked the repolarizing phase of this component. In the absence of Na, Ca can evoke rhythmic activity and the underlying mechanism may be the same as that of the second component of slow wave, i.e. an increase in Ca conductance.
摘要
  1. 将钠离子浓度降至20 mM以下会使豚鼠胃环形肌去极化并出现挛缩。不同标本的去极化速率有所不同。在一些标本中,无钠溶液中2 - 3分钟内所有电活动消失,同时伴有去极化,但在其他标本中,正弦节律活动会持续不同时长直至10分钟。2. 在无钠溶液中去极化充分发展后去除钙离子,膜部分复极化,挛缩消失。在有钙离子存在的情况下添加2 mM - 锰也有相同效果。3. 在无钙无钠溶液中电活动完全阻断后,仅重新加入钙离子(2.5 - 50 mM)会产生正弦节律活动。在无钠情况下观察到的这种活动,当通过施加内向电流使膜超极化时会消失。4. 仅重新加入5 mM - 钠离子可使在无钠溶液中去极化的膜复极化。当延长暴露于无钠溶液的时间时,这种复极化更明显且更快。5. 人们认为电致钠 - 钙交换可能参与慢波第一成分的产生,并且去除钠离子会阻断该成分的复极化阶段。在无钠情况下,钙离子可诱发节律活动,其潜在机制可能与慢波第二成分相同,即钙电导增加。

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The slow wave in the circular muscle of the guinea-pig stomach.豚鼠胃环形肌中的慢波
J Physiol. 1975 Dec;253(2):505-16. doi: 10.1113/jphysiol.1975.sp011203.

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