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戊四氮诱发的癫痫持续状态调节体内[11C]Ro 15 - 1788与苯二氮䓬受体的结合。作用于超分子受体复合物的配体的影响。

Status epilepticus induced by pentylenetetrazole modulates in vivo [11C]Ro 15-1788 binding to benzodiazepine receptors. Effects of ligands acting at the supramolecular receptor complex.

作者信息

Chavoix C, Hantraye P, Brouillet E, Guibert B, Fukuda H, De la Sayette V, Fournier D, Naquet R, Mazière M

机构信息

Service Hospitalier Fédéric Joliot, C.E.A., Département de Biologie, Orsay, France.

出版信息

Eur J Pharmacol. 1988 Feb 9;146(2-3):207-14. doi: 10.1016/0014-2999(88)90294-4.

Abstract

Positron emission tomography (PET) was used to investigate, in the living baboon, the in vivo modulation of [11C]Ro 15-1788 binding to benzodiazepine receptors in brain and the changes with ligands acting at the supramolecular complex during status epilepticus induced by pentylenetetrazole. The central type benzodiazepine receptors were labelled in vivo by intravenous injection of [11C]Ro 15-1788. Simultaneous positron emission tomography and electroencephalographic activity recording evidenced a modulation of the brain binding of [11C]Ro 15-1788 during pentylenetetrazole-induced status epilepticus. We investigated the changes in the modulation of radioligand kinetics and in seizure activity after intravenous administration of a benzodiazepine agonist (diazepam, 1.5 mg/kg), a benzodiazepine antagonist (Ro 15-1788, 2 mg/kg), a GABA agonist (progabide, 50 mg/kg) and a ligand of the picrotoxin/barbiturate binding sites (LY81067, 3.5 mg/kg). The results showed that there is an in vivo competitive interaction of pentylenetetrazole with the benzodiazepine receptors, as reflected by the low displacement of [11C]Ro 15-1788 in the first 10 min of the status epilepticus. However, in contrast to diazepam, progabide and LY81067, a dose (2 mg/kg) of Ro 15-1788 that saturates the benzodiazepine receptors was unable to block the seizures induced by pentylenetetrazole. This indicates that the benzodiazepine receptors play only a minor role in the status epilepticus induced by pentylenetetrazole. The contribution of other binding sites within the supramolecular complex is assessed.

摘要

正电子发射断层扫描(PET)用于在活体狒狒中研究[11C]Ro 15 - 1788与脑内苯二氮䓬受体的体内结合调节,以及在戊四氮诱导的癫痫持续状态期间作用于超分子复合物的配体所引起的变化。通过静脉注射[11C]Ro 15 - 1788在体内标记中枢型苯二氮䓬受体。同时进行的正电子发射断层扫描和脑电图活动记录证明,在戊四氮诱导的癫痫持续状态期间,[11C]Ro 15 - 1788的脑内结合存在调节。我们研究了静脉注射苯二氮䓬激动剂(地西泮,1.5 mg/kg)、苯二氮䓬拮抗剂(Ro 15 - 1788,2 mg/kg)、GABA激动剂(普罗加比,50 mg/kg)和匹鲁卡品/巴比妥酸盐结合位点配体(LY81067,3.5 mg/kg)后放射性配体动力学调节和癫痫发作活动的变化。结果表明,戊四氮与苯二氮䓬受体存在体内竞争性相互作用,这在癫痫持续状态的前10分钟内[11C]Ro 15 - 1788的低置换中得到体现。然而,与地西泮、普罗加比和LY81067不同,使苯二氮䓬受体饱和的剂量(2 mg/kg)的Ro 15 - 1788无法阻断戊四氮诱导的癫痫发作。这表明苯二氮䓬受体在戊四氮诱导的癫痫持续状态中仅起次要作用。评估了超分子复合物内其他结合位点的贡献。

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