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GluN2A and GluN2B NMDA Receptor Subunits DifferentiallyModulate Striatal Output Pathways and Contribute to Levodopa-InducedAbnormal Involuntary Movements in Dyskinetic Rats

机译:GluN2A和GluN2B NMDA受体亚基的差异调节纹状体输出途径并促进左旋多巴诱发运动障碍大鼠的异常不自主运动

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摘要

Dual probe microdialysis was used to investigate whether GluN2A and GluN2B NMDA receptor subunits regulate striatal output pathways under dyskinetic conditions. The preferential GluN2A antagonist NVP-AAM077 perfused in the dopamine-depleted striatum of 6-hydroxydopamine hemilesioned dyskinetic rats reduced GABA and glutamate levels in globus pallidus whereas the selective GluN2B antagonist Ro 25-6981 elevated glutamate without affecting pallidal GABA. Moreover, intrastriatal NVP-AAM077 did not affect GABA but elevated glutamate levels in substantia nigra reticulata whereas Ro 25-6981 elevated GABA and reduced nigral glutamate. To investigate whether GluN2A and GluN2B NMDA receptor subunits are involved in motor pathways underlying dyskinesia expression, systemic NVP-AAM077 and Ro 25-6981 were tested for their ability to attenuate levodopa-induced abnormal involuntary movements. NVP-AAM077 failed to prevent dyskinesia while Ro 25-6981 mildly attenuated it. We conclude that in the dyskinetic striatum, striatal GluN2A subunits tonically stimulate the striato-pallidal pathway whereas striatal GluN2B subunitstonically inhibit striato-nigral projections. Moreover, GluN2A subunitsare not involved in dyskinesia expression whereas GluN2B subunitsminimally contribute to it.
机译:双探针微透析用于研究在运动障碍情况下GluN2A和GluN2B NMDA受体亚单位是否调节纹状体输出途径。优先的GluN2A拮抗剂NVP-AAM077灌注在多巴胺贫乏的6-羟基多巴胺造血运动障碍大鼠纹状体中,可降低苍白球中的GABA和谷氨酸水平,而选择性GluN2B拮抗剂Ro 25-6981可以提高谷氨酸而不影响苍白的GABA。此外,纹状体内NVP-AAM077不会影响GABA,但会增加黑质网状组织的谷氨酸水平,而Ro 25-6981会升高GABA并降低黑质谷氨酸。为了研究GluN2A和GluN2B NMDA受体亚单位是否参与运动障碍表达的运动通路,对全身性NVP-AAM077和Ro 25-6981进行了衰减左旋多巴诱导的异常非自愿运动的能力测试。 NVP-AAM077未能预防运动障碍,而Ro 25-6981轻度减轻了运动障碍。我们得出结论,在运动障碍性纹状体中,纹状体GluN2A亚基会刺激纹状体-苍白途径,而纹状体GluN2B亚基在声音上抑制纹状体向黑色的投影。此外,GluN2A亚基不参与运动障碍表达,而GluN2B亚基对此贡献最小。

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