首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Mechanisms underlying electrical and mechanical responses of the bovine retractor penis to inhibitory nerve stimulation and to an inhibitory extract.
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Mechanisms underlying electrical and mechanical responses of the bovine retractor penis to inhibitory nerve stimulation and to an inhibitory extract.

机译:牛牵开器阴茎对抑制性神经刺激和抑制性提取物的电气和机械反应的潜在机制。

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摘要

The response of the bovine retractor penis (BRP) to stimulation of non-adrenergic, non-cholinergic (NANC) inhibitory nerves and to an inhibitory extract prepared from this muscle have been studied using intracellular microelectrode, sucrose gap and conventional mechanical recording techniques. Both inhibitory nerve stimulation and inhibitory extract hyperpolarized the membrane potential and relaxed spontaneous or guanethidine (3 X 10(-5) M)-induced tone. These effects were accompanied by an increase in membrane resistance. Following membrane potential displacement from an average value of -53 +/- 7 mV (n = 184; Byrne & Muir, 1984) inhibitory potentials to nerve stimulation were abolished at approximately -30 mV; there was no evidence of reversal. Displacement by inward hyperpolarizing current over the range -45 to -60 mV increased the inhibitory response to nerve stimulation and to inhibitory extract; at more negative potential values (above approximately -60 mV) the inhibitory potential decreased and was abolished (approximately -103 mV). There was no evidence of reversal. Removal of [K+]o reversibly reduced hyperpolarization to nerve stimulation and inhibitory extract. No enhancement was observed. Increasing the [K+]o to 20 mM reduced the inhibitory potential to nerve stimulation but this was restored by passive membrane hyperpolarization. Inhibitory potentials were obtained at membrane potential values exceeding that of the estimated EK (-49 mV). [Cl-]o-free or [Cl-]o-deficient solutions reduced and abolished (after some 20-25 min) the hyperpolarization produced by inhibitory nerve stimulation or inhibitory extract. The inhibitory potential amplitude following nerve stimulation was not restored by passive displacement of the membrane potential from -26 to -104 mV approximately. Ouabain (1-5 X 10(-5) M) reduced then (45-60 min later) abolished the inhibitory potential to nerve stimulation. The effects of this drug on the extract were not investigated. It is concluded that the inhibitory response to nerve stimulation and extract in the BRP may involve several ionic species. However, unlike that in gastrointestinal muscles the NANC response in the BRP is accompanied by an increased membrane resistance and does not primarily involve K+. The underlying mechanisms for the inhibitory response to both NANC nerve stimulation and inhibitory extract appear to be similar, compatible with the view that the latter may contain the inhibitory transmitter released from these nerves in this tissue.
机译:使用细胞内微电极,蔗糖间隙和常规机械记录技术研究了牛牵开器阴茎(BRP)对非肾上腺素,非胆碱能(NANC)抑制神经的刺激以及对从该肌肉制备的抑制提取物的反应。抑制性神经刺激和抑制性提取物均使膜电位超极化,并导致自发性或胍乙啶(3 X 10(-5)M)引起的紧张。这些作用伴随着膜阻力的增加。膜电位从平均值-53 +/- 7 mV取代(n = 184; Byrne&Muir,1984)后,在大约-30 mV处消除了对神经刺激的抑制电位。没有逆转的迹象。内向超极化电流在-45至-60 mV范围内产生的位移增加了对神经刺激和抑制性提取物的抑制反应。在更大的负电位值(约-60 mV以上)下,抑制电位降低并消失(约-103 mV)。没有逆转的迹象。去除[K +] o可逆地减少了对神经刺激和抑制性提取物的超极化作用。没有观察到增强。将[K +] o增加到20 mM会降低神经刺激的抑制潜力,但是可以通过被动膜超极化来恢复。在膜电位值超过估计的EK(-49 mV)时获得抑制电位。不含[Cl-] o或[Cl-] o不足的溶液可减少和消除(约20-25分钟后)抑制性神经刺激或抑制性提取物产生的超极化作用。神经刺激后的抑制电位幅度不能通过将膜电位从-26被动移至大约-26至-104 mV来恢复。哇巴因(1-5 X 10(-5)M)减少,然后(45-60分钟后)消除了对神经刺激的抑制潜力。没有研究这种药物对提取物的作用。结论是,BRP对神经刺激和提取物的抑制反应可能涉及几种离子。但是,与胃肠道肌肉不同,BRP中的NANC反应伴随着膜抗性的增加,并且主要不涉及K +。抑制NANC神经刺激和抑制性提取物的潜在机制似乎是相似的,这与后者可能包含从这些神经在组织中释放的抑制性递质的观点相符。

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