Interaction of carbolines and some GABA receptor ligands with the GABA and the benzodiazepine receptors.

Journal de pharmacologie Pub Date : 1986-10-01
H Mousah, P Jacqmin, M Lesne
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Abstract

The binding of different drugs were investigated on benzodiazepines and GABA receptors using P2 fraction or 0.05% Triton X-100 treated membrane preparation (TX-100 P) obtained from rat's CNS. Bicuculline and picrotoxin have the ability to modulate the specific 3H-flunitrazepam binding to its receptor present in P2 fraction; this modulation decreases for bicuculline and disappears for picrotoxin when a TX-100 P was used. Bicuculline at the opposite of picrotoxin displaces 3H-GABA binding on TX-100 P. The beta-CCE binds to the brain benzodiazepines receptor with a high affinity (IC50 = 8.5 nM on TX-100 P) and does not inhibit the binding of 3H-GABA on TX-100 P. On the contrary, other related carbolines such as harmine, harmaline, harmane and harmalol have a much lower ability to inhibit flunitrazepam binding (IC50 between 28 and 130 microM with TX-100 P) and can also inhibit 3H-GABA binding (IC50 between 75 and 186 microM with TX-100 P). But the inhibition of 3H-GABA binding by those related carbolines can't be reversed by a benzodiazepine like flunitrazepam or a benzodiazepine antagonist like Ro 15-1788.

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氨基丁酸受体配体与氨基丁酸和苯二氮卓类受体的相互作用。
采用大鼠中枢神经系统P2组分或0.05% Triton X-100处理膜制剂(TX-100 P)研究不同药物与苯二氮卓类药物和GABA受体的结合。双库兰和微螺毒素能够调节P2部分中3h -氟西泮与其受体的特异性结合;当使用tx - 100p时,这种调制对二胡兰减少,对微毒素消失。与微毒素相反的双库碱取代了3H-GABA在TX-100 P上的结合,β - cce与脑苯二氮卓类受体具有高亲和力(在TX-100 P上的IC50 = 8.5 nM),并且不抑制3H-GABA在TX-100 P上的结合。哈曼尼和哈玛洛尔抑制氟硝西泮与TX-100 P结合的IC50在28 ~ 130 μ m之间,抑制3H-GABA与TX-100 P结合的IC50在75 ~ 186 μ m之间,但氟硝西泮等苯二氮卓类药物或Ro 15-1788等苯二氮卓类拮抗剂不能逆转这些相关碳药对3H-GABA结合的抑制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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