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二氢麦角隐亭对苯二氮䓬/GABA受体氯离子通道的种属依赖性双重调节

Species dependent dual modulation of the benzodiazepine/GABA receptor chloride channel by dihydroergosine.

作者信息

Pericić D, Tvrdeić A

机构信息

Department of Experimental Biology and Medicine, Rudger Bosković Institute, Zagreb, Yugoslavia.

出版信息

Life Sci. 1990;47(6):491-502. doi: 10.1016/0024-3205(90)90608-t.

Abstract

Dihydroergosine (50 and 100 mg/kg) enhanced the incidence of bicuculline (3 mg/kg)-induced convulsions in female rats, while 100 mg/kg of dihydroergosine given to female mice made 45% convulsive dose of bicuculline (2.5 mg/kg) to be subconvulsive. The same dose of dihydroergosine enhanced in mice the latency of bicuculline (4 mg/kg)-induced convulsions. Although, in in vitro experiments dihydroergosine showed very weak ability to prevent the binding of 3H-muscimol, the drug was able to diminish and to augment the IC50 of bicuculline and GABA when added to crude synaptosomal pellet of the rat and mouse brain respectively. Lower concentrations of dihydroergosine stimulated and higher inhibited 3H-TBOB binding to the crude synaptosomal pellet of the rat brain. In the preparation of mouse brain dihydroergosine produced only inhibition of 3H-TBOB binding. Only slight quantitative differences were observed in bicuculline-induced stimulation and in GABA- and diazepam-induced inhibition of 3H-TBOB binding between the two species. The results suggest that the opposite species-dependent effects of dihydroergosine on bicuculline-induced convulsions are due to the ability of this drug to modulate species-dependently the benzodiazepine/GABA receptor chloride channel complex.

摘要

双氢麦角碱(50毫克/千克和100毫克/千克)增加了雌性大鼠中荷包牡丹碱(3毫克/千克)诱导惊厥的发生率,而给雌性小鼠注射100毫克/千克双氢麦角碱使荷包牡丹碱(2.5毫克/千克)的45%惊厥剂量变为亚惊厥剂量。相同剂量的双氢麦角碱延长了小鼠中荷包牡丹碱(4毫克/千克)诱导惊厥的潜伏期。虽然在体外实验中双氢麦角碱显示出非常弱的阻止3H-蝇蕈醇结合的能力,但当分别添加到大鼠和小鼠脑的粗突触体沉淀中时,该药物能够降低和增加荷包牡丹碱和GABA的IC50。较低浓度的双氢麦角碱刺激、较高浓度抑制3H-TBOB与大鼠脑粗突触体沉淀的结合。在小鼠脑制备中,双氢麦角碱仅抑制3H-TBOB结合。在两种动物中,观察到荷包牡丹碱诱导的刺激以及GABA和地西泮诱导的对3H-TBOB结合的抑制仅存在轻微的定量差异。结果表明,双氢麦角碱对荷包牡丹碱诱导惊厥的相反种属依赖性作用是由于该药物能够种属依赖性地调节苯二氮䓬/GABA受体氯离子通道复合物。

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