首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Mechanisms underlying the electrical and mechanical responses of the guinea-pig internal anal sphincter to field stimulation and to drugs.
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Mechanisms underlying the electrical and mechanical responses of the guinea-pig internal anal sphincter to field stimulation and to drugs.

机译:豚鼠内部肛门括约肌对野外刺激和药物产生电气和机械反应的机制。

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摘要

The electrical membrane characteristics and the response of the circular muscle of the guinea-pig internal anal sphincter (i.a.s.) to field stimulation were studied in vitro using intracellular microelectrodes and conventional mechanical recording techniques. The i.a.s. developed its own tone (3-4 g), following initial stretch (1 g) and spontaneous spike potentials were evident. In the absence of spike potentials, tone declined and disappeared. Tone was not significantly reduced by phentolamine (1 X 10(-6)M). The resting membrane potential, measured between spontaneous spike potentials, was -45 +/- 3.0 mV (n = 224); the space constant (lambda) was 1.13 +/- 0.1 mm (n = 13). Spikes usually overshot by approximately 15 mV. The frequency of spike potential discharge (1-3 Hz) varied with the degree of membrane depolarization, being increased in K+-rich and decreased in K+-deficient solutions or by the presence of Mn2+. It was not significantly affected by C1-withdrawal but was increased in Na+-deficient solutions with or without tetrodotoxin (TTX; 1 X 10(-6)M). Field stimulation (1-20 Hz, 0.5 ms, supramaximal voltage) produced inhibitory junction potentials (i.j.ps) and relaxed tone; at high frequencies (50 Hz or greater), contractions were observed but excitatory junction potentials (e.j.ps) were not. I.j.ps and relaxations were inhibited by apamin (1 X 10(-6)M), TTX (1 X 10(-6)M) but not by atropine (1 X 10(-6)M), phentolamine (1 X 10(-6)M) or hexamethonium (1 X 10(-6)M). I.j.ps were reduced by hyperpolarization and enhanced by depolarization of the membrane by current pulses (15s). The mean equilibrium potential for the i.j.p. was -94 mV (correlation coefficient, gamma = 0.71, n = 5, p less than 0.001). I.j.ps were enhanced in K+-deficient solutions and reduced in K+-rich solutions. Together these results suggest that the i.j.p. is mediated by an increased GK. The absence of [Ca2+]o or the presence of Mn2+ (2 mM) abolished the i.j.p.; in contrast Na+-deficient or C1-free solutions were ineffective in this respect. Tetraethylammonium (5-50mM) abolished the i.j.p.; the accompanying relaxation was reduced by about 80%. The major aspect of the relaxation to nerve stimulation is mediated by membrane hyperpolarization.
机译:使用细胞内微电极和常规机械记录技术在体外研究了豚鼠内肛门括约肌(i.a.s.)的电膜特性和环形肌肉对野外刺激的反应。 i.a.s.在最初的拉伸(1 g)之后出现了自己的音调(3-4 g),并且明显出现了自发的尖峰电位。在没有尖峰电位的情况下,色调下降并消失。苯妥拉明(1 X 10(-6)M)不会明显降低色调。在自发的尖峰电位之间测得的静止膜电位为-45 +/- 3.0 mV(n = 224);空间常数(λ)为1.13 +/- 0.1毫米(n = 13)。尖峰通常会超出约15 mV。尖峰电位放电的频率(1-3 Hz)随膜去极化程度而变化,在富含K +的溶液中增加,而在缺乏K +的溶液中或由于存在Mn2 +而降低。它不受C1提取的显着影响,但在有或没有河豚毒素(TTX; 1 X 10(-6)M)的Na +缺乏溶液中增加。场刺激(1-20 Hz,0.5 ms,最大电压)产生抑制性结电位(i.j.ps)和松驰的音调;在高频(50 Hz或更高)下,观察到收缩,但没有观察到兴奋性结电位(e.j.ps)。 Ijps和松弛被阿帕明(1 X 10(-6)M),TTX(1 X 10(-6)M),阿托品(1 X 10(-6)M),苯妥拉明(1 X 10)抑制(-6)M)或六甲铵(1 X 10(-6)M)。电流脉冲(15s)通过超极化减少I.j.ps,并通过使膜去极化来增强I.j.ps。 i.j.p.的平均平衡电位为-94 mV(相关系数,γ= 0.71,n = 5,p小于0.001)。 I.j.ps在缺乏K +的解决方案中得到了增强,而在富含K +的解决方案中得到了降低。这些结果一起表明i.j.p.由增加的GK介导。没有[Ca2 +] o或Mn2 +(2 mM)消除了i.j.p.。相反,缺乏Na +或不含C1的溶液在这方面无效。四乙铵(5-50mM)取消了i.j.p .;伴随的放松减少了约80%。放松神经刺激的主要方面是由膜超极化介导的。

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