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前列腺素对豚鼠输精管神经肌肉传递作用的电生理分析。

An electrophysiological analysis of the actions of prostaglandin on neuromuscular transmission in the guinea-pig vas deferens.

作者信息

Ito Y, Tajima K

出版信息

J Physiol. 1979 Dec;297(0):521-37. doi: 10.1113/jphysiol.1979.sp013054.

Abstract

Effects of prostaglandins (PGs) on the neuromuscular junction of the guinea-pig vas deferens were investigated by the micro-electrode and double sucrose gap methods. 1. PGE1, PGE2 or PGF2 alpha (10(-10) to 10(-7) g/ml.) did not change the membrane potential, membrane resistance and electrical threshold required to produce the action potential. 2. PGs markedly suppressed the amplitude of excitatory junction potential (e.j.p.) but the facilitation phenomena seen with repetitive stimulation were not affected. PGs did not change the amplitude and frequency of the miniature e.j.p. 3. The action potential recorded from the small nerve bundle with the aid of an extracellular micro-electrode method was not affected by PGS. 4. The amplitude of the e.j.p. was dependent on the external concentration of Ca. When plotted against [Ca]o on a double log scale, the above relation yielded a straight line with a slope of 1.0. Application of PGs resulted in a parallel shift of this relation to the right. 5. From the concentrations of [Ca]o to produce a given e.j.p. in the absence and presence of various concentrations of PGE1, the linear relation was observed from double logarithmic plot between [[Ca]o ratio -1] and [PGE1]o. However the slope of the line was too small (-0.37) to indicate a simple competition between [PGE1]o and [Ca]o. 6. Indomethacin (10(-6) g/ml.) had no effect on the amplitudes of e.j.p. produced by repetitive stimulation. 7. These results indicate that a low concentration of PGs interact with [Ca]o at the activated nerve terminals, but that there is no modification of the actions of Ca in the nerve terminals required for release of chemical transmitter.

摘要

采用微电极和双蔗糖间隙法研究了前列腺素(PGs)对豚鼠输精管神经肌肉接头的作用。1. 前列腺素E1、前列腺素E2或前列腺素F2α(10⁻¹⁰至10⁻⁷g/ml)不会改变产生动作电位所需的膜电位、膜电阻和电阈值。2. 前列腺素显著抑制兴奋性接头电位(e.j.p.)的幅度,但重复刺激时出现的易化现象不受影响。前列腺素不会改变微小e.j.p.的幅度和频率。3. 借助细胞外微电极法从细小神经束记录的动作电位不受前列腺素的影响。4. e.j.p.的幅度取决于细胞外钙浓度。当以双对数标度绘制相对于[Ca]o的关系时,上述关系产生一条斜率为1.0的直线。应用前列腺素导致该关系平行向右移动。5. 根据在不存在和存在不同浓度前列腺素E1的情况下产生给定e.j.p.所需的[Ca]o浓度,在[[Ca]o比率 -1]与[前列腺素E1]o之间的双对数图中观察到线性关系。然而,该直线的斜率太小(-0.37),无法表明[前列腺素E1]o与[Ca]o之间存在简单竞争。6. 吲哚美辛(10⁻⁶g/ml)对重复刺激产生的e.j.p.幅度没有影响。7. 这些结果表明,低浓度的前列腺素在活化的神经末梢与[Ca]o相互作用,但在释放化学递质所需的神经末梢中钙的作用没有改变。

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