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In vivo evidence of D3 dopamine receptor sensitization in parkinsonian primates and rodents with L-DOPA-induced dyskinesias

机译:帕金森氏灵长类动物和啮齿类动物患有L-DOPA引起的运动障碍中D3多巴胺受体致敏的体内证据

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摘要

A growing body of evidence indicates a role for D3 receptors in L-DOPA-induced dyskinesias. This involvement could be amenable to non-invasive in vivo analysis using functional neuroimaging. With this goal, we examined the hemodynamic response to the dopamine D3-preferring agonist 7-hydroxy-N,N-di-n-propyl-2 aminotetralin (7-OHDPAT) in naïve, parkinsonian and L-DOPA-treated, dyskinetic rodents and primates using pharmacological MRI (phMRI) and relative cerebral blood volume (rCBV) mapping. Administration of 7-OHDPAT induced minor negative changes of rCBV in the basal ganglia in naïve and parkinsonian animals. Remarkably, the hemodynamic response was reversed (increased rCBV) in the striatum of parkinsonian animals rendered dyskinetic by repeated L-DOPA treatment. Such increase in rCBV is consistent with D1 receptor-like signaling occurring in response to D3 stimulation, demonstrates a dysregulation of dopamine receptor function in dyskinesia and provides a potentially novel means for the characterization and treatment of L-DOPA-induced dyskinesia in patients.
机译:越来越多的证据表明D3受体在L-DOPA诱导的运动障碍中的作用。这种参与可能适合使用功能性神经影像的非侵入性体内分析。为了这个目标,我们研究了朴素,帕金森病和L-DOPA治疗的运动障碍性啮齿动物对多巴胺D3首选激动剂7-羟基-N,N-二-正丙基-2氨基四氢萘(7-OHDPAT)的血流动力学响应和灵长类动物使用药理MRI(phMRI)和相对脑血容量(rCBV)作图。在幼稚和帕金森病动物中,施用7-OHDPAT会引起基底神经节rCBV的轻微负变化。值得注意的是,通过反复进行L-DOPA治疗使运动障碍的帕金森病动物纹状体的血流动力学反应逆转(rCBV升高)。 rCBV的这种增加与响应D3刺激而发生的D1受体样信号传导一致,表明运动障碍中多巴胺受体功能失调,并为表征和治疗L-DOPA引起的运动障碍提供了潜在的新颖手段。

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