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NMDA和AMPA拮抗剂对利血平处理小鼠中选择性D1和D2多巴胺激动剂诱导的运动活性的影响比较。

Comparison of the effects of NMDA and AMPA antagonists on the locomotor activity induced by selective D1 and D2 dopamine agonists in reserpine-treated mice.

作者信息

Starr M S, Starr B S

机构信息

Department of Pharmacology, School of Pharmacy, London, UK.

出版信息

Psychopharmacology (Berl). 1994 Apr;114(3):469-76. doi: 10.1007/BF02249338.

DOI:10.1007/BF02249338
PMID:7855205
Abstract

This study examined the interaction between various glutamate antagonists and selective D1 (SKF 38393) and D2 (RU 24213) dopamine agonists in the production of locomotion in the reserpine-treated mouse. Firstly, in normal mice, the NMDA channel blocker MK 801 (0.1-1.6 mg/kg) caused a biphasic stimulation/depression of locomotor activity, whereas the competitive NMDA antagonists CGP 40116 (0.25-8 mg/kg) and CPP (0.2-20 mg/kg), and the NMDA glycine site antagonist HA 966 (0.4-10 mg/kg) inhibited locomotion monophasically. These compounds caused varying degrees of muscle weakness and impairment of posture and gait, whilst the AMPA receptor blocker NBQX (0.2-25 mg/kg) had no significant effect on unconditioned mouse motor behaviour. None of the antagonists reversed reserpine-induced akinesia by themselves, but they all potentiated the locomotor movements induced by 30 mg/kg SKF 38393. Movements remained fluent with low doses of CPP, HA 966 and NBQX, but became ataxic with MK 801 and CGP 40116, with sedation prevailing at high doses of all the antagonists, as in normal mice. CPP and NBQX also combined synergistically with SKF 38393 to promote tonic convulsions. By contrast, RU 24213-induced locomotion was dose-dependently depressed by MK 801, CGP 40116 and HA 966, but was unaffected by CPP or NBQX. These differential effects of NMDA and AMPA antagonists on D1 and D2 motor responding in the monoamine-depleted mouse are discussed in terms of possible mechanisms and sites of action within the brain, and the implications for their putative use as adjuvants to L-dopa in antiparkinson therapy.

摘要

本研究检测了各种谷氨酸拮抗剂与选择性D1(SKF 38393)和D2(RU 24213)多巴胺激动剂在利血平处理的小鼠运动产生过程中的相互作用。首先,在正常小鼠中,NMDA通道阻滞剂MK 801(0.1 - 1.6毫克/千克)引起运动活性的双相刺激/抑制,而竞争性NMDA拮抗剂CGP 40116(0.25 - 8毫克/千克)和CPP(0.

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