首页> 外文期刊>Neurobiology of disease >Systemic administration of an mGluR5 antagonist, but not unilateral subthalamic lesion, counteracts l-DOPA-induced dyskinesias in a rodent model of Parkinson's disease.
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Systemic administration of an mGluR5 antagonist, but not unilateral subthalamic lesion, counteracts l-DOPA-induced dyskinesias in a rodent model of Parkinson's disease.

机译:在帕金森氏病的啮齿动物模型中,系统性给予mGluR5拮抗剂而非单侧丘脑膜下病变可抵消l-DOPA诱导的运动障碍。

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摘要

Altered glutamatergic neurotransmission is central to the expression of Parkinson's disease (PD) symptoms and may underlie l-DOPA-induced dyskinesias. Drugs acting on glutamate metabotropic receptors (mGluR) of group I can modulate subthalamic nucleus (STN) overactivity, which plays a pivotal role in these phenomena, and may counteract dyskinesias. To address these issues, we investigated the effects of a 3-week treatment with mGluR5 antagonist 2-methyl-6-(phenylethynyl)-pyridine (MPEP), or of a subthalamic lesion, on abnormal involuntary movements (AIMs) and associated striatal expression of transcription factor FosB/Delta FosB caused by chronic l-DOPA administration, in rats with a nigrostriatal lesion. MPEP virtually abolished AIMs and reduced, dramatically, striatal expression of FosB/Delta FosB. Reduced FosB/Delta FosB expression, coupled with nonsignificant reduction of AIMs, was also observed in STN-lesioned rats. Our data confirm the role of glutamatergic neurotransmission in the pathogenesis of dyskinesias and the potential of mGluR5 antagonists in the treatment of l-DOPA-induced dyskinesias.
机译:改变的谷氨酸能神经传递是帕金森氏病(PD)症状表达的核心,可能是1-DOPA引起的运动障碍的基础。作用于组I的谷氨酸代谢代谢受体(mGluR)的药物可调节丘脑底核(STN)过度活跃,这在这些现象中起关键作用,并可抵消运动障碍。为了解决这些问题,我们研究了用mGluR5拮抗剂2-甲基-6-(苯基乙炔基)-吡啶(MPEP)或丘脑下病变进行为期3周的治疗对异常不自主运动(AIM)和相关纹状体表达的影响长期纹状体损伤大鼠长期服用l-DOPA引起的转录因子FosB / Delta FosB的变化MPEP实际上废除了AIM,并显着减少了FosB / Delta FosB的纹状体表达。在受STN损伤的大鼠中也观察到FosB / Delta FosB表达降低,而AIMs无明显降低。我们的数据证实了谷氨酸能神经传递在运动障碍的发病机理中的作用以及mGluR5拮抗剂在治疗l-DOPA诱导的运动障碍中的潜力。

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