首页> 美国卫生研究院文献>The Journal of Physiology >On the action of the anticonvulsant 55-diphenylhydantoin and the convulsant picrotoxin in crayfish stretch receptor.
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On the action of the anticonvulsant 55-diphenylhydantoin and the convulsant picrotoxin in crayfish stretch receptor.

机译:关于小龙虾抗惊厥药55-二苯乙内酰脲和惊厥微毒素的作用。

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摘要

1. The effects of the anticonvulsant drug 5,5-diphenylhydantoin (DPH) and the convulsant drug picrotoxin (PTX) on various membrane properties and GABA-ergic inhibition were investigated in the slowly adapting neurone of the isolated crayfish stretch receptor. The soma was penetrated with two micro-electrodes to allow accurate determination of membrane conductances. 2. Neither DPH nor PTX at 10(-4) M had any significant effect on parameters of the anti- or orthodromic action potential or on the amplitude and duration of post-tetanic hyperpolarization. This suggests that the pharmacological properties of the two drugs are unlikely to be mediated by effects on cationic movements in this preparation. 3. DPH increased the amplitude and duration of the inhibitory post-synaptic potential (i.p.s.p.) within the range 10(-9) to 10(-4) M. The response to ionophoretically applied GABA was similarly prolonged. 4. PTX decreased the amplitude of the i.p.s.p. and prolonged its rising phase within the range 10(-8) to 10(-4) M. The response to ionophoretically applied GABA was similarly depressed. 5. A slow component of fluctuations in the resting potential was accentuated by DPH at 10(-4) M and eliminated by PTX 10(-4) M. This may reflect effects on the random opening and closing of inhibitory channels. 6. We conclude that the action of both drugs is post-synaptic and suggest that DPH decreases the probability of closing, and PTX the probability of opening, of the transmitter-activated channels. 7. The lack of any structural similarity between the two drugs suggests that they modify post-synaptic inhibition at separate sites. These sites appear to be interdependent since analysis of the shift in the DPH dose-response curve by PTX and vice versa, showed neither truly non-competitive nor competitive interaction.
机译:1.在分离的小龙虾拉伸受体缓慢适应的神经元中,研究了抗惊厥药物5,5-二苯基乙内酰脲(DPH)和惊厥药物微毒素(PTX)对各种膜特性和GABA抑制作用的影响。用两个微电极穿透体细胞,以精确测定膜电导。 2. DPH和10(-4)M处的PTX都不会对抗正畸或正畸动作电位的参数或对强直后超极化的幅度和持续时间产生任何显着影响。这表明在该制剂中,两种药物的药理特性不太可能通过阳离子运动的影响来介导。 3. DPH在10(-9)到10(-4)M范围内增加了突触后抑制电位(i.p.s.p.)的幅度和持续时间。对离子载体应用GABA的反应同样延长。 4. PTX降低了i.p.s.p.的幅度。并且将其上升阶段延长了10(-8)至10(-4)M。对离子载体应用GABA的反应同样受到抑制。 5. DPH在10(-4)M时加剧了静息电位波动的缓慢分量,而在PTX 10(-4)M时消除了静息电位波动的缓慢分量。这可能反映了对抑制通道的随机打开和关闭的影响。 6.我们得出结论,这两种药物的作用都在突触后,并暗示DPH降低了发射机激活通道的关闭概率,而PTX降低了发射机激活通道的开启概率。 7.两种药物之间缺乏任何结构相似性,表明它们在不同的位点修饰了突触后的抑制作用。这些位点似乎是相互依赖的,因为通过PTX分析DPH剂量反应曲线的变化(反之亦然),既没有显示真正的非竞争性相互作用,也没有显示竞争性相互作用。

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