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左旋多巴诱导的帕金森病异动症患者的血浆和脑脊液代谢特征:聚焦神经炎症。

Metabolic Profile in Plasma AND CSF of LEVODOPA-induced Dyskinesia in Parkinson's Disease: Focus on Neuroinflammation.

机构信息

Department of Neurosciences and Behavioral Sciences, Ribeirão Preto Medical School, University of São Paulo, Av. Bandeirantes 3900, Ribeirão Preto, São Paulo, CEP: 14049-900, Brazil.

Laboratório de Neuropatologia Experimental, Federal University of Pará, Belém, PA, Brazil.

出版信息

Mol Neurobiol. 2022 Feb;59(2):1140-1150. doi: 10.1007/s12035-021-02625-1. Epub 2021 Dec 2.

Abstract

The existence of few biomarkers and the lack of a better understanding of the pathophysiology of levodopa-induced dyskinesia (LID) in Parkinson's disease (PD) require new approaches, as the metabolomic analysis, for discoveries. We aimed to identify a metabolic profile associated with LID in patients with PD in an original cohort and to confirm the results in an external cohort (BioFIND). In the original cohort, plasma and CSF were collected from 20 healthy controls, 23 patients with PD without LID, and 24 patients with PD with LID. LC-MS/MS and metabolomics data analysis were used to perform untargeted metabolomics. Untargeted metabolomics data from the BioFIND cohort were analyzed. We identified a metabolic profile associated with LID in PD, composed of multiple metabolic pathways. In particular, the dysregulation of the glycosphingolipid metabolic pathway was more related to LID and was strongly associated with the severity of dyskinetic movements. Furthermore, bile acid biosynthesis metabolites simultaneously found in plasma and CSF have distinguished patients with LID from other participants. Data from the BioFIND cohort confirmed dysregulation in plasma metabolites from the bile acid biosynthesis pathway. There is a distinct metabolic profile associated with LID in PD, both in plasma and CSF, which may be associated with the dysregulation of lipid metabolism and neuroinflammation.

摘要

左旋多巴诱导的运动障碍(LID)在帕金森病(PD)中生物标志物较少,病理生理学认识不足,需要新的方法,如代谢组学分析,以发现新的方法。我们旨在确定与 PD 患者 LID 相关的代谢特征,并在外部队列(BioFIND)中验证结果。在原始队列中,从 20 名健康对照者、23 名无 LID 的 PD 患者和 24 名有 LID 的 PD 患者中采集了血浆和 CSF。使用 LC-MS/MS 和代谢组学数据分析进行非靶向代谢组学分析。对 BioFIND 队列的非靶向代谢组学数据进行了分析。我们确定了与 PD 中 LID 相关的代谢特征,由多个代谢途径组成。特别是糖脂代谢途径的失调与 LID 更相关,并且与运动障碍的严重程度强烈相关。此外,同时在血浆和 CSF 中发现的胆汁酸生物合成代谢物可将 LID 患者与其他参与者区分开来。BioFIND 队列的数据证实了血浆代谢物中胆汁酸生物合成途径的失调。在 PD 中,无论是在血浆还是 CSF 中,都存在与 LID 相关的独特代谢特征,这可能与脂代谢和神经炎症的失调有关。

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