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氯化四乙铵对兔动脉肌肉收缩、膜及电传导特性的影响。

Effects of tetraethylammonium chloride on contractile, membrane and cable properties of rabbit artery muscle.

作者信息

Haeusler G, Thorens S

出版信息

J Physiol. 1980 Jun;303:203-24. doi: 10.1113/jphysiol.1980.sp013281.

Abstract
  1. Two types of effects of tetraethylammonium chloride (TEA) have been found in the smooth muscle cells of the rabbit main pulmonary artery. (a) With rapid onset of action TEA depolarizes the cell membrane, increases the membrane resistance, causes anomalous rectification and occasionally spike potentials in response to externally applied depolarizing current pulses and produces tonic contractions. (b) During prolonged (greater than 30 min) incubation in TEA phasic contractions develop progressively and the vascular strips respond to electrical stimulation with synchronized and powerful contractions. 2. There is a linear relationship between log concentration TEA and depolarization over the range of 10-100 mM-TEA. TEA (10 and 30 mM) raises the membrane resistance and decreases the core resistance. The latter effect appeared to develop more slowly than the former. 3. During short exposure to TEA part of the smooth muscle cells respond to depolarizing current pulses with spike potentials of variable amplitude and duration. These spikes are very sensitive to inhibition by verapamil or nickel chloride but are not affected by tetrodotoxin. The amplitude of electrotonic potentials, increased by TEA, is slightly further elevated by verapamil or nickle chloride. 4. TEA (10 mM) increases the mechanical response to low and intermediate potassium concentrations but has no effect on maximal contractions to high potassium. The slope of the line relating log potassium concentration to membrane potential is decreased by TEA. 5. TEA (10 mM) shifts the concentration response curve for the contractile effect of noradrenaline to the left and increases the maximum of noradrenaline-induced contractions. In the presence of TEA, noradrenaline reduces the membrane potential to markedly lower values than under control conditions. 6. It is concluded that the rapidly occurring effects of TEA on the vascular smooth muscle cells of the rabbit main pulmonary artery are a decrease in potassium and an increase in calcium conductance. The latter effect may be related to a blockade of potassium channels; however, we cannot rule out the possibility that TEA affects calcium conductance independent of its presumed action on potassium channels. The slowly developing effects of TEA may be ascribed to the formation of gap junctions and/or (less likely) to an intracellular accumulation of TEA.
摘要
  1. 在兔主肺动脉平滑肌细胞中发现了氯化四乙铵(TEA)的两种效应。(a)TEA作用迅速,可使细胞膜去极化,增加膜电阻,引起反常整流,对外加去极化电流脉冲偶尔产生锋电位,并产生强直性收缩。(b)在TEA中长时间(大于30分钟)孵育期间,相位性收缩逐渐发展,血管条对电刺激产生同步且强烈的收缩反应。2. 在10 - 100 mM - TEA范围内,log浓度的TEA与去极化之间存在线性关系。TEA(10和30 mM)可提高膜电阻并降低核心电阻。后一种效应似乎比前一种效应发展得更慢。3. 在短时间暴露于TEA期间,部分平滑肌细胞对去极化电流脉冲产生幅度和持续时间可变的锋电位。这些锋电位对维拉帕米或氯化镍的抑制非常敏感,但不受河豚毒素影响。由TEA增加的电紧张电位幅度,被维拉帕米或氯化镍进一步轻微升高。4. TEA(10 mM)增加了对低和中等钾浓度的机械反应,但对高钾的最大收缩无影响。TEA降低了log钾浓度与膜电位关系曲线的斜率。5. TEA(10 mM)使去甲肾上腺素收缩效应的浓度反应曲线向左移动,并增加去甲肾上腺素诱导收缩的最大值。在TEA存在下,去甲肾上腺素使膜电位降低到比对照条件下明显更低的值。6. 得出结论,TEA对兔主肺动脉血管平滑肌细胞迅速产生的效应是钾电导降低和钙电导增加。后一种效应可能与钾通道的阻断有关;然而,我们不能排除TEA独立于其对钾通道的假定作用而影响钙电导的可能性。TEA缓慢发展的效应可能归因于缝隙连接的形成和/或(可能性较小)TEA在细胞内的积累。

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