Possible involvement of endogenous acetylcholine in the tetraethylammonium induced depolarization of avian skeletal muscle.

Journal de pharmacologie Pub Date : 1986-10-01
F A Wali
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Abstract

The depolarization produced by acetylcholine (ACh) (5.5 microM-11 mM) and by tetraethylammonium (TEA) (0.95-48 mM) in chick skeletal muscle were recorded using a sucrose-gap external recording device. The gap is constructed from perspex blocks of 3 main chambers which contain the preparation and are superfused with Krebs solution (chamber 1), Krebs solution containing test drug solution (chamber 3) and isotonic sucrose solution (chamber 2). Drugs were added directly into the superfusion stream leading to chamber 3 which contained the distal and active part of the muscle. Recordings of electrical responses were made via a pair of calomel electrodes, in contact with woollen wicks extending from chambers 1 and 3, leading to a preamplifier linked to a cathode ray oscilloscope and a potentiometric pen recorder. The results showed that TEA, a potassium channel blocker, produced a small depolarization (about 1 mV), whereas ACh produced a large depolarization (about 8 mV), and that the TEA-induced depolarization was in part due to the release of endogenous ACh at the neuromuscular junction. Other findings include the characteristic feature of TEA-induced depolarization, i.e. its long latency (about 1 min) and the biphasic response, a small depolarization followed by an after-hyperpolarization (about 2 mV). The results are in favour of the possibility that TEA may act at both pre- and postsynaptic membranes at the avian neuromuscular junction.

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内源性乙酰胆碱可能参与四乙基铵诱导的鸟类骨骼肌去极化。
采用蔗糖间隙外用记录仪记录了乙酰胆碱(ACh)(5.5微米-11毫米)和四乙基铵(TEA)(0.95-48毫米)对鸡骨骼肌的去极化作用。间隙由含有制剂的3个主要腔室的有机玻璃块构成,并与Krebs溶液(腔室1)、含有试验药物溶液的Krebs溶液(腔室3)和等渗蔗糖溶液(腔室2)混合。将药物直接加入到通向含有肌肉远端和活跃部分的腔室3的超融合流中。电反应的记录是通过一对甘汞电极进行的,这些电极与从室1和3延伸出来的羊毛芯接触,导致前置放大器与阴极射线示波器和电位笔记录仪相连。结果表明,钾通道阻滞剂TEA产生的去极化较小(约1 mV),而ACh产生的去极化较大(约8 mV), TEA诱导的去极化部分是由于神经肌肉交界处内源性ACh的释放。其他发现包括tea诱导去极化的特征,即其长潜伏期(约1 min)和双相响应,一个小的去极化之后是一个超极化(约2 mV)。结果表明,TEA可能同时作用于鸟类神经肌肉连接处的突触前膜和突触后膜。
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