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电生泵对感觉神经元冲动活动的抑制作用。

Inhibition of impulse activity in a sensory neuron by an electrogenic pump.

作者信息

Sokolove P G, Cooke I M

出版信息

J Gen Physiol. 1971 Feb;57(2):125-63. doi: 10.1085/jgp.57.2.125.

Abstract

THE CRAYFISH TONIC STRETCH RECEPTOR NEURON MANIFESTS THREE PHENOMENA

(a) Impulse frequency in response to a depolarizing current decays exponentially to half the initial rate with a time constant of about 4 sec. (b) One or more extra impulses superimposed on steady activity result in a lengthening of the interspike interval immediately following the last extra impulse which is proportional to the number of extra impulses. However, above a "threshold' number of impulses the proportionality constant becomes abruptly larger. (c) Following trains of impulses, the resting potential of the cell is hyperpolarized by an amount proportional to impulse number. Such posttetanic hyperpolarization (PTH) decays approximately exponentially with a time constant of 11 sec, but this varies with membrane potential. These effects are attributed to the incremental increase of an inhibitory (hyperpolarizing) current with a long (relative to interspike interval) decay constant. We suggest that this inhibitory current is the result of increased electrogenic Na pumping stimulated by Na entering with each impulse. Evidence is presented that the three effects are reversibly inhibited by conditions which depress active Na transport: (a) Li substituted for Na in the bath; (b) application of strophanthidin; (c) K removal; (d) treatment with cyanide; (e) cooling. We conclude that a single process is responsible for the three responses described above and identify that process as electrogenic Na pumping. Our observations also indicate that electrogenic pumping contributes to this neuron's resting potential.

摘要

小龙虾滋补性牵张感受器神经元呈现出三种现象

(a) 响应去极化电流时的冲动频率以约4秒的时间常数呈指数衰减至初始速率的一半。(b) 叠加在稳定活动上的一个或多个额外冲动会导致紧随最后一个额外冲动之后的峰间间隔延长,其与额外冲动的数量成比例。然而,超过“阈值”冲动数量时,比例常数会突然变大。(c) 在一连串冲动之后,细胞的静息电位会超极化,其幅度与冲动数量成比例。这种强直后超极化(PTH)以11秒的时间常数近似呈指数衰减,但这会随膜电位而变化。这些效应归因于一种抑制性(超极化)电流的增量增加,其具有较长的(相对于峰间间隔)衰减常数。我们认为这种抑制性电流是由每次冲动时进入的Na刺激的生电Na泵活动增加的结果。有证据表明,这三种效应会被抑制主动Na转运的条件可逆地抑制:(a) 浴液中Li替代Na;(b) 应用毒毛花苷;(c) 去除K;(d) 用氰化物处理;(e) 冷却。我们得出结论,一个单一过程负责上述三种反应,并将该过程确定为生电Na泵。我们的观察还表明,生电泵作用对该神经元的静息电位有贡献。

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