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The membrane properties of the smooth muscle of the guinea-pig portal vein in isotonic and hypertonic solutions

机译:等渗和高渗溶液中豚鼠门静脉平滑肌的膜特性

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摘要

The membrane properties of the longitudinal smooth muscle of the guinea-pig portal vein were investigated under various experimental conditions.1. In isotonic Krebs solution, the membrane potential (-48·7 mV), the maximum rates of rise and fall of the spike (4·6 and 2·3 V/sec respectively), the space constant (0·61 mm), the conduction velocity of excitation (0·97 cm/sec) and the time constant of the foot of the propagated spike (18·4 msec) were measured.2. The various parameters of the muscle membrane in the isotonic solution were compared with those in the hypertonic solution prepared by the addition of solid sucrose (twice the normal tonicity).3. When the muscles were perfused with hypertonic solution, marked depolarization of the membrane and increased membrane resistance occurred. These were probably due to reduction of the K permeability, increased internal resistance of the muscle and shrinkage of the muscle fibre.4. The membrane potential in isotonic and hypertonic solutions was analysed into two components, i.e. the metabolic (electrogenic Na-pump) and the ionic (electrical diffusion potential) component in the various environmental conditions.(a) In isotonic and hypertonic solutions, the membrane was depolarized by lowering the temperature or by removal of K ion from the solutions. When the tissues were rewarmed or on readdition of K ion, the membrane was markedly hyperpolarized. These hyperpolarizations of the membrane were suppressed by treatment with ouabain (10-5 g/ml.), by warming to only 20° C and by K-free solution.(b) The relationships between the membrane potential and the [K]o in isotonic Krebs, in the hypertonic (sucrose) Krebs, in the Na-free (Tris) Krebs and in the Cl-deficient (C6H5SO3) Krebs were observed. The maximum slopes of the membrane depolarization against tenfold changes of [K]o were much lower than that expected if it behaved like a K electrode.(c) In Na-free (Tris) solution, the membrane was not depolarized in isotonic condition but it was depolarized in hypertonic condition.5. The low membrane potential in hypertonic solution (-37 mV) compared with isotonic solution (-49 mV) was thought to be mainly due to suppression of K permeability of the membrane and not due to suppression of the metabolic component.The electrogenic Na-pump and the membrane potential of the portal vein was discussed in relation to other excitable cell membranes.
机译:研究了不同实验条件下豚鼠门静脉纵向平滑肌的膜特性。1。在等渗克雷布斯溶液中,膜电位(-48·7 mV),尖峰的最大上升和下降速率(分别为4·6和2·3 V / sec),空间常数(0·61 mm),测量激发的传导速度(0·97 cm / sec)和传播尖峰的脚部时间常数(18·4 msec)。2。将等渗溶液中肌肉膜的各种参数与通过添加固体蔗糖制备的高渗溶液中的肌肉膜的参数进行了比较(正常张力的两倍)。3。当肌肉用高渗溶液灌注时,膜的显着去极化和膜阻力增加。这可能是由于钾的渗透性降低,肌肉的内阻增加和肌肉纤维的收缩所致。4。将等渗和高渗溶液中的膜电位分为两个组成部分,即在各种环境条件下的代谢(电致钠泵)和离子(电扩散势)组分。(a)在等渗和高渗溶液中,膜为通过降低温度或通过从溶液中去除K离子来实现去极化。当组织重新温热或重新注入K离子时,膜明显超极化。通过用哇巴因(10 -5 g / ml。)处理,仅加热至20°C和无K溶液抑制了膜的这些超极化。(b)膜之间的关系在等渗克雷布斯,高渗(蔗糖)克雷布斯,无钠(Tris)克雷布斯和缺乏氯的(C6H5SO3)克雷布斯中观察到电势和[K] o。膜的去极化对[K] o十倍变化的最大斜率要比预期的要低得多,如果它表现得像一个K电极。在高渗条件下被去极化。5。与等渗溶液(-49 mV)相比,高渗溶液(-37 mV)的膜电位低被认为主要是由于抑制了膜的K渗透性,而不是由于抑制了代谢成分。并讨论了与其他可兴奋细胞膜有关的门静脉膜电位。

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