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钠泵激活引起青蛙初级传入纤维超极化。

Hyperpolarization of frog primary afferent fibres caused by activation of a sodium pump.

作者信息

Davidoff R A, Hackman J C

出版信息

J Physiol. 1980 May;302:297-309. doi: 10.1113/jphysiol.1980.sp013243.

Abstract
  1. In the isolated frog spinal cord repetitive stimulation of a lumbar dorsal root produced a sustained negative potential recorded from an adjacent inactive dorsal root by sucrose gap techniques. This negative potential was followed by a positive potential, an indication that the dorsal root terminals were hyperpolarized. Increasing the duration of the tetanus applied to the active root increased the amplitude and duration of the after-hyperpolarization which could be up to 6 mV and 3 min respectively. 2. The hyperpolarization presumably reflected an increased rate of active sodium pumping. Since it was reversibly reduced by metabolic inhibitors (dinitrophenol, NaCN) and cooling (Q10, 2 . 6) it was clearly dependent upon intact metabolic activity. In addition, a variety of procedures used to inhibit sodium pumps (including application of ouabain, elimination of potassium from the superfusate, and partial substitution of lithium for sodium ions) significantly and reversibly decreased the potential. 3. The hyperpolarization was not dependent upon intact chemical synaptic transmission since it could survive prolonged immersion of the cord in Ringer solution containing manganese or magnesium ions. 4. It is suggested that the hyperpolarization of inactive fibres resulted from a decreased extracellular potassium concentration in the dorsal horn produced as a result of a pumping mechanism which extruded sodium and transported potassium inwards by dorsal root fibres directly activated by the tetanus.
摘要
  1. 在离体青蛙脊髓中,通过蔗糖间隙技术对腰段背根进行重复刺激,可在相邻未激活的背根记录到持续的负电位。该负电位之后跟随一个正电位,这表明背根终末发生了超极化。增加施加于激活根的强直刺激持续时间,可增加超极化后的幅度和持续时间,超极化后幅度和持续时间分别可达6 mV和3分钟。2. 这种超极化大概反映了主动钠泵转运速率的增加。由于它可被代谢抑制剂(二硝基苯酚、氰化钠)和冷却(Q10,2.6)可逆性降低,显然它依赖于完整的代谢活动。此外,用于抑制钠泵的各种方法(包括应用哇巴因、从灌流液中去除钾以及用锂部分替代钠离子)均能显著且可逆地降低该电位。3. 这种超极化不依赖于完整的化学性突触传递,因为在含有锰或镁离子的林格液中长时间浸泡脊髓后,它仍能存在。4. 有人提出,未激活纤维的超极化是由于背角细胞外钾浓度降低所致,这是由一种泵机制产生的,该泵机制通过强直刺激直接激活的背根纤维将钠排出并将钾向内转运。

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Intracellular slow potential of dorsal root fibers.背根纤维的细胞内慢电位
Am J Physiol. 1956 Feb;184(2):338-44. doi: 10.1152/ajplegacy.1956.184.2.338.
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Electrotonus in dorsal nerve roots.背根中的电紧张
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