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大鼠C神经纤维中的生电电位:锂和铊的一些作用

The electrogenic potential in rat C nerve fibres: some effects of lithium and thallium.

作者信息

Smith I C

出版信息

J Physiol. 1979 Sep;294:135-44. doi: 10.1113/jphysiol.1979.sp012920.

Abstract
  1. Subsequent to bathing a desheathed vagus nerve in a K-free medium Li (5-50 mM) generates a hyperpolarizing response in the same manner as does K except that Li is 23 times less potent than K. Preincubation with small concentrations of either Li or K inhibits a subsequent K response.2. The Li response is less phasic than the K response. In the presence of a cardiac glycoside Li has no effect whereas K depolarizes the preparation. Thus Li is presumed to generate a relatively pure ouabain-sensitive electrogenic response.3. If a Li response is always terminated with 50 mM-Li, but various concentrations are used during the first half, the total response has a constant area despite the wide range of activation during the first half. This implies that the electrogenic pump ratio is constant over this range of activation.4. Thallium (1 mM) also generates a ouabain-sensitive response, but even short exposures (5 min) produces a strong and lasting inhibition of subsequent potassium responses. On a slower time scale Tl also inhibits the electrogenic post-tetanic hyperpolarization. After exposure to Tl a test action potential shows that the afterpotential is also decreased.5. If action potentials are produced during an electrogenic response the hyperpolarizing afterpotential reverses polarity. It is supposed that this is due to a short-circuiting of the electrogenic potential during this time.
摘要
  1. 在无钾培养基中对去鞘迷走神经进行浴灌时,锂(5 - 50 mM)会产生超极化反应,其方式与钾相同,只是锂的效力比钾低23倍。用低浓度的锂或钾进行预孵育会抑制随后的钾反应。

  2. 锂反应的相位性比钾反应弱。在存在强心苷的情况下,锂无作用,而钾会使标本去极化。因此,推测锂产生的是相对纯粹的哇巴因敏感的生电反应。

  3. 如果锂反应总是用50 mM - 锂终止,但在前半段使用不同浓度,尽管前半段激活范围很广,但总反应面积恒定。这意味着在这个激活范围内生电泵比率是恒定的。

  4. 铊(1 mM)也会产生哇巴因敏感反应,但即使短时间暴露(5分钟)也会对随后的钾反应产生强烈且持久的抑制。在较慢的时间尺度上,铊也会抑制强直后超极化。暴露于铊后,测试动作电位显示后电位也降低。

  5. 如果在生电反应期间产生动作电位,超极化后电位会反转极性。推测这是由于此时生电电位发生短路。

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本文引用的文献

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After-potentials in mammalian non-myelinated nerve fibres.哺乳动物无髓神经纤维的后电位。
J Physiol. 1958 Dec 30;144(3):442-62. doi: 10.1113/jphysiol.1958.sp006112.
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The electrical effects of an ionic pump.
J Theor Biol. 1965 Sep;9(2):253-62. doi: 10.1016/0022-5193(65)90111-6.

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