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普鲁卡因对河豚毒素敏感和不敏感的水蛭神经元的作用。

Procaine actions on tetrodotoxin sensitive and insensitive leech neurons.

作者信息

Yang J, Johansen J, Kleinhaus A L

出版信息

Brain Res. 1984 Jun 8;302(2):297-304. doi: 10.1016/0006-8993(84)90243-9.

Abstract

Procaine (0.1-10 mM) was applied to two kinds of identified neurons in segmental leech ganglia. Both Retzius (R) cells and nociceptive (N) cells responded by dose-dependent reduction of maximum rates of de- and repolarization during action potentials. However, the N cells, which are more sensitive to tetrodotoxin than R cells, were also 3 times more sensitive to procaine. The prolongation of action potentials produced by procaine in R cells was enhanced by low Ca but antagonized by high Ca. This implies that the drug interfered with repolarization by affecting a Ca-dependent mechanism. In alkaline solution (pH 8.5), sensitivity of the R cell to procaine approached that of the N cell at pH 7.4 suggesting that the drug acted at an intracellular site after passage through membrane lipids in its uncharged form. The combined effects of TTX and procaine, in concentrations which produced about 50% inhibition of dV/dTdep in N cells when given separately, were found to be intermediate between those predicted by two models which assume identical and independent sites of action, respectively. These data extend our earlier observations regarding the existence of two types of Na channels in mature leech neurons. They imply that the differential sensitivity to procaine among these cells may be a consequence of variable access to an otherwise identical 'receptor' and that TTX and procaine act on separate sites which may interact with each other.

摘要

将普鲁卡因(0.1 - 10 mM)应用于分段水蛭神经节中的两种已鉴定神经元。瑞兹乌斯(R)细胞和伤害性(N)细胞在动作电位期间的去极化和复极化最大速率均呈现剂量依赖性降低。然而,对河豚毒素比R细胞更敏感的N细胞,对普鲁卡因的敏感性也是R细胞的3倍。低钙增强了普鲁卡因在R细胞中产生的动作电位延长,而高钙则起拮抗作用。这表明该药物通过影响钙依赖性机制干扰了复极化。在碱性溶液(pH 8.5)中,R细胞对普鲁卡因的敏感性接近其在pH 7.4时对N细胞的敏感性,这表明该药物以不带电荷的形式穿过膜脂质后作用于细胞内位点。分别给予河豚毒素(TTX)和普鲁卡因时,它们在N细胞中产生约50%的dV/dTdep抑制浓度,其联合作用介于分别假设作用位点相同和独立的两种模型所预测的结果之间。这些数据扩展了我们早期关于成熟水蛭神经元中存在两种类型钠通道的观察结果。这意味着这些细胞对普鲁卡因的不同敏感性可能是由于对原本相同的“受体”的可及性不同,并且TTX和普鲁卡因作用于可能相互作用的不同位点。

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