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γ-氨基丁酸对蛔虫肌肉输入电导和膜电位的影响。

The effect of gamma-aminobutyric acid on the input conductance and membrane potential of Ascaris muscle.

作者信息

Martin R J

出版信息

Br J Pharmacol. 1980;71(1):99-106. doi: 10.1111/j.1476-5381.1980.tb10914.x.

Abstract

1 Twin intracellular recordings were made from the bag region of Ascaris muscle in order to make conductance measurements. The preparation was bathed in a cool (22 degrees C) Ringer solution to abolish the large spontaneous depolarizing potentials and to improve stability for recording.2 The resting membrane potential was -31 +/- 1 mV, mean +/- s.e. mean (n = 17). The current-voltage plots were linear in the hyperpolarizing direction but showed evidence of delayed rectification during the application of depolarizing currents. The input conductance of the bag was measured from the slope of these plots during the application of hyperpolarizing current. The resting conductance of the bags was 2.4 +/- 0.2 muS, mean +/- s.e. mean (n = 12).3 When the preparation was perfused with gamma-aminobutyric acid (GABA) in concentrations greater than 3 muM, a dose-dependent increase in conductance associated with a hyperpolarizing potential was recorded. The log dose-response relationship obtained from 6 preparations was sigmoidal and had an ED(50) of 13 muM.4 When Cl(-) in the Ringer was replaced by SO(4) (2-), the GABA-induced conductance changes decreased and were associated with depolarizing potentials.5 Voltage responses were recorded in the bag region during the iontophoretic application of GABA to different regions of the muscle cell. The largest responses were recorded when GABA was applied to the bag region. Smaller responses were recorded when GABA was applied to the arms and syncytial regions. The responses of the bags were dose-dependent and were antagonized by bath-applied picrotoxin.6 An extrapolation method using 10(-5) M GABA suggested that the GABA reversal potential was about 30 mV more negative than the resting membrane potential. This was confirmed by means of a two microelectrode voltage clamp technique. The reversal potential was thus estimated as -61.2 +/- 2.2 mV mean +/- s.e. mean (n = 27).

摘要
  1. 为了进行电导测量,对蛔虫肌肉的囊区进行了双细胞内记录。标本浸浴在低温(22摄氏度)的林格氏溶液中,以消除大的自发去极化电位并提高记录的稳定性。

  2. 静息膜电位为-31±1mV,平均值±标准误(n = 17)。电流-电压图在超极化方向呈线性,但在施加去极化电流时显示出延迟整流的迹象。在施加超极化电流期间,从这些图的斜率测量囊的输入电导。囊的静息电导为2.4±0.2μS,平均值±标准误(n = 12)。

  3. 当标本用浓度大于3μM的γ-氨基丁酸(GABA)灌注时,记录到与超极化电位相关的剂量依赖性电导增加。从6个标本获得的对数剂量-反应关系呈S形,ED(50)为13μM。

  4. 当林格氏液中的Cl(-)被SO(4)(2-)取代时,GABA诱导的电导变化减小并与去极化电位相关。

  5. 在将GABA离子电渗施加到肌肉细胞的不同区域期间,在囊区记录电压反应。当GABA施加到囊区时记录到最大反应。当GABA施加到臂和合体区时记录到较小反应。囊的反应是剂量依赖性的,并被浴用苦味毒拮抗。

  6. 使用10(-5)M GABA的外推法表明,GABA反转电位比静息膜电位负约30mV。这通过双微电极电压钳技术得到证实。因此,反转电位估计为-61.2±2.2mV,平均值±标准误(n = 27)。

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