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青蛙脊髓中的背根电位与细胞外钾离子变化

Dorsal root potentials and changes in extracellular potassium in the spinal cord of the frog.

作者信息

Nicoll R A

出版信息

J Physiol. 1979 May;290(2):113-27. doi: 10.1113/jphysiol.1979.sp012763.

Abstract
  1. In the present study changes in extracellular potassium, ([K]e), were recorded in the isolated spinal cord of the frog with glial cell recordings and K-selective micro-electrodes to test the hypothesis that elevations in [K]e during neuronal activity produce the dorsal root potential (d.r.p.). 2. Sucrose gap recording from the dorsal root (d.r.) was used to record responses to root stimulation and to exogenously applied K+. 3. Stimulation of the ventral root, which elicits a d.r.p. in the frog spinal cord, was not associated with any change in [K]e, suggesting that d.r.p.s produced by ventral root stimulation are not due to changes in [K]e. 4. The largest change in [K]e observed following single stimuli to the dorsal root was 0.4 mM. Such a change in [K]e, if evenly distributed, would depolarize the dorsal root by about 1 mV and yet the simultaneously recorded d.r.p. evoked by stimulating an adjacent dorsal root (d.r.-d.r.p.) was over 10 mV. 5. The time-to-peak of the glidal cell responses was 10 times that of the d.r.-d.r.p. Low frequency (1-10 Hz) d.r. stimulation caused a decremental summation of glial cell responses, while there was no summation in the d.r.-d.r.p. These results suggest that the d.r.p. produced by single d.r. stimulation is generated in large part by a mechanism other than a change in [K]e. 6. During high frequency d.r. stimulation, which evoked 6-8 mM increases in [K]e, the adjacent d.r. was depolarized to a greater extent than that produced by single stimuli. The magnitude of this depolarization was similar to that produced by applying a [K]e equivalent to that observed in the spinal cord during high frequency stimulation. Thus, a substantial component of the sustained d.r. depolarization during high frequency d.r. stimulation may result from changes in [K]e. 7. In the presence of magnesium, high frequency d.r. stimulation evoked a picrotoxin resistant depolarization of an adjacent d.r. whose magnitude correlated well with the changes in [K]e recorded in the spinal cord. 8. In the presence of picrotoxin a slow, long duration depolarization of the d.r. occurred following single stimuli to the adjacent d.r. and the appearance and time course of this response correlated well with the time course of changes in [K]e. 9. Addition of K+ to the Ringer solution in concentrations up to 12 mM had a facilitatory action on reflex activity in the frog spinal cord. 10 The present results suggest that although changes in [K]e play a relatively minor role in generating d.r.p.s. elicited by single d.r. stimulation, the sustained dorsal root depolarization evoked either by high frequency stimulation or by single stimuli in the presence of picrotoxin may be due to a considerable extent to [K]e.
摘要
  1. 在本研究中,利用胶质细胞记录和钾选择性微电极,在青蛙的离体脊髓中记录细胞外钾([K]e)的变化,以检验神经元活动期间[K]e升高产生背根电位(d.r.p.)这一假说。2. 采用背根(d.r.)蔗糖间隙记录法来记录对根刺激和外源性施加钾离子的反应。3. 刺激青蛙脊髓中引发d.r.p.的腹根,并未伴随[K]e的任何变化,这表明腹根刺激产生的d.r.p.s并非由[K]e的变化所致。4. 对背根进行单次刺激后观察到的[K]e最大变化为0.4 mM。这种[K]e的变化若均匀分布,会使背根去极化约1 mV,然而同时记录到的由刺激相邻背根引发的d.r.p.(d.r.-d.r.p.)超过10 mV。5. 胶质细胞反应的峰值时间是d.r.-d.r.p.的10倍。低频(1 - 10 Hz)d.r.刺激导致胶质细胞反应递减性总和,而d.r.-d.r.p.中无总和现象。这些结果表明,单次d.r.刺激产生的d.r.p.在很大程度上是由[K]e变化以外的机制产生的。6. 在高频d.r.刺激期间,[K]e升高6 - 8 mM,相邻背根去极化程度比单次刺激时更大。这种去极化的幅度与在高频刺激期间脊髓中观察到的[K]e施加等效值所产生的幅度相似。因此,高频d.r.刺激期间背根持续去极化的一个重要组成部分可能是由[K]e的变化引起的。7. 在镁存在的情况下,高频d.r.刺激引发相邻背根对印防己毒素耐受的去极化,其幅度与脊髓中记录到的[K]e变化密切相关。8. 在印防己毒素存在的情况下,对相邻背根进行单次刺激后,背根出现缓慢、持续时间长的去极化,该反应的出现和时间进程与[K]e变化的时间进程密切相关。9. 向林格氏液中添加浓度高达12 mM的钾离子对青蛙脊髓的反射活动有促进作用。10. 目前的结果表明,尽管[K]e变化在单次d.r.刺激引发的d.r.p.s产生中起相对较小的作用,但高频刺激或在印防己毒素存在下单次刺激所引发的背根持续去极化在很大程度上可能归因于[K]e。

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