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Managing Parkinsons disease: moving ON with NOP

机译:管理帕金森的疾病:与NOP一起继续前进

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摘要

The opioid‐like neuropeptide nociceptin/orphanin FQ (N/OFQ) and its receptor (NOP receptor) contribute to Parkinson's disease (PD) and motor complications associated with levodopa therapy. The N/OFQ–NOP receptor system is expressed in cortical and subcortical motor areas and, notably, in dopaminergic neurons of the substantia nigra compacta. Dopamine depletion, as in rodent models of PD results in up‐regulation of N/OFQ transmission in the substantia nigra and down‐regulation of N/OFQ transmission in the striatum. Consistent with this, NOP receptor antagonists relieve motor deficits in PD models by reinstating the physiological balance between excitatory and inhibitory inputs impinging on nigro‐thalamic GABAergic neurons. NOP receptor antagonists also counteract the degeneration of nigrostriatal dopaminergic neurons, possibly by attenuating the excitotoxicity or modulating the immune response. Conversely, NOP receptor agonists attenuate levodopa‐induced dyskinesia by attenuating the hyperactivation of striatal D1 receptor signalling in neurons of the direct striatonigral pathway. The N/OFQ–NOP receptor system might represent a novel target in the therapy of PD.
机译:阿片样物质样神经肽痛敏肽/孤啡肽(N / OFQ)及其受体(NOP受体)向帕金森氏病(PD),并用左旋多巴治疗相关的运动并发症。在N / OFQ-NOP受体系统在皮层和皮层下运动区表达,并且,特别是,在黑质致密的多巴胺能神经元。多巴胺耗竭,如在黑质中的N / OFQ传输的上调PD结果的啮齿动物模型和下调纹状体N / OFQ传输。与此相一致,在PD模型NOP受体拮抗剂缓解运动缺陷通过复原兴奋性和抑制性输入撞击在黑质丘脑GABA能神经元之间的生理平衡。 NOP受体拮抗剂也抵消黑质纹状体多巴胺神经元的变性,可能通过衰减兴奋性毒性或调节免疫应答。相反地​​,NOP受体激动剂通过衰减纹状体D1受体信号传导的过度活化在直接纹状体黑途径的神经元衰减左旋多巴诱导的运动障碍。在N / OFQ-NOP受体系统可能在PD的治疗代表一个新的目标。

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