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帕金森病模型中D1和D2受体刺激行为表达中的正负相互作用:启动作用

Positive and negative interactions in the behavioural expression of D1 and D2 receptor stimulation in a model of Parkinsonism: role of priming.

作者信息

Morelli M, Fenu S, Cozzolino A, Di Chiara G

机构信息

Institute of Experimental Pharmacology and Toxicology, University of Cagliari, Italy.

出版信息

Neuroscience. 1991;42(1):41-8. doi: 10.1016/0306-4522(91)90148-h.

Abstract

Previous exposure to a dopaminergic agonist (priming) strongly potentiates contralateral turning behaviour in response to D1 and D2 agonists in unilaterally 6-hydroxydopamine-lesioned rats. In order to study the influence of priming on the behavioural interaction of D1 and D2 receptors, we examined the effect of selective D1 and D2 receptor blockade on the contralateral turning induced by the mixed D2/D2 agonist apomorphine in drug-naive and primed 6-hydroxydopamine-lesioned rats. In drug-naive rats, apomorphine induced a dose-related, apparently monophasic rotation curve. Administration of selective D1 (SCH 23390) or D2 (raclopride) antagonists abolished the contralateral turning induced by 0.1 mg/kg of apomorphine and partially inhibited that induced by 0.5 mg/kg. In primed rats low doses of apomorphine (0.05 mg/kg) induced an apparently monophasic contralateral turning which was reduced by D1 receptor blockade and completely abolished by D2 receptor blockade; a higher dose of apomorphine (0.1 mg/kg) instead elicited a biphasic (two-peak) pattern of rotation. After this dose of the agonist, blockade of D1 or D2 receptors abolished the second peak of rotation but, while D1 blockade reduced the total number of turns, D2 blockade failed to do so. Quantitative analysis of the interaction between D1 and D2 receptors in the overall turning effect, as well as in the time-course of turning behaviour, indicates that D1 and D2 receptors interact not only positively but also negatively. After higher doses of apomorphine, both negative and positive interactions take place sequentially during the time-course of apomorphine action and provide a clue for explaining the two-peak pattern of rotation observed after apomorphine in rats previously exposed to the drug.

摘要

先前接触多巴胺能激动剂(预激发)可强烈增强单侧6-羟基多巴胺损伤大鼠对D1和D2激动剂的对侧转向行为。为了研究预激发对D1和D2受体行为相互作用的影响,我们检测了选择性D1和D2受体阻断对未接触过药物和经预激发的6-羟基多巴胺损伤大鼠中由D2/D2混合激动剂阿扑吗啡诱导的对侧转向的作用。在未接触过药物的大鼠中,阿扑吗啡诱导出剂量相关的、明显单相的旋转曲线。给予选择性D1(SCH 23390)或D2(雷氯必利)拮抗剂可消除0.1 mg/kg阿扑吗啡诱导的对侧转向,并部分抑制0.5 mg/kg阿扑吗啡诱导的对侧转向。在经预激发的大鼠中,低剂量阿扑吗啡(0.05 mg/kg)诱导出明显单相的对侧转向,该转向可被D1受体阻断减弱,并被D2受体阻断完全消除;而较高剂量阿扑吗啡(0.1 mg/kg)则引发双相(双峰)旋转模式。给予该剂量激动剂后,阻断D1或D2受体可消除旋转的第二个峰值,然而,虽然D1受体阻断减少了总转向次数,但D2受体阻断却未能如此。对D1和D2受体在总体转向效应以及转向行为时间进程中的相互作用进行定量分析表明,D1和D2受体不仅存在正向相互作用,还存在负向相互作用。给予较高剂量阿扑吗啡后,正负向相互作用在阿扑吗啡作用的时间进程中依次发生,这为解释先前接触过该药物的大鼠在给予阿扑吗啡后观察到的双峰旋转模式提供了线索。

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