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Longitudinal analyses of cerebrospinal fluid α‐Synuclein in prodromal and early Parkinson's disease

帕金森病 脑脊液 内科学 快速眼动睡眠行为障碍 多巴胺能 神经退行性变 多巴胺转运体 医学 病理生理学 队列 多巴胺 认知功能衰退 前驱期 生物标志物 心理学 疾病 胃肠病学 认知障碍 痴呆 生物 生物化学
作者
Brit Mollenhauer,Chelsea Caspell‐Garcia,Christopher S. Coffey,Peggy Taylor,Andy Singleton,Leslie M. Shaw,John Q. Trojanowski,Mark Frasier,Tanya Simuni,Álex Iranzo,Wolfgang H. Oertel,Andrew Siderowf,Daniel Weintraub,John Seibyl,Arthur W. Toga,Caroline M. Tanner,Karl Kieburtz,Lana M. Chahine,Kenneth Marek,Douglas Galasko
出处
期刊:Movement Disorders [Wiley]
卷期号:34 (9): 1354-1364 被引量:132
标识
DOI:10.1002/mds.27806
摘要

Abstract Background Aggregation of α‐synuclein is central to the pathophysiology of PD. Biomarkers related to α‐synuclein may be informative for PD diagnosis/progression. Objectives To analyze α‐synuclein in CSF in drug‐naïve PD, healthy controls, and prodromal PD in the Parkinson's Progression Markers Initiative. Methods Over up to 36‐month follow‐up, CSF total α‐synuclein and its association with MDS‐UPDRS motor scores, cognitive assessments, and dopamine transporter imaging were assessed. Results The inception cohort included PD (n = 376; age [mean {standard deviation} years]: 61.7 [9.62]), healthy controls (n = 173; age, 60.9 [11.3]), hyposmics (n = 16; age, 68.3 [6.15]), and idiopathic rapid eye movement sleep behavior disorder (n = 32; age, 69.3 [4.83]). Baseline CSF α‐synuclein was lower in manifest and prodromal PD versus healthy controls. Longitudinal α‐synuclein decreased significantly in PD at 24 and 36 months, did not change in prodromal PD over 12 months, and trended toward an increase in healthy controls. The decrease in PD was not shown when CSF samples with high hemoglobin concentration were removed from the analysis. CSF α‐synuclein changes did not correlate with longitudinal MDS‐UPDRS motor scores or dopamine transporter scan. Conclusions CSF α‐synuclein decreases early in the disease, preceding motor PD. CSF α‐synuclein does not correlate with progression and therefore does not reflect ongoing dopaminergic neurodegeneration. Decreased CSF α‐synuclein may be an indirect index of changes in the balance between α‐synuclein secretion, solubility, or aggregation in the brain, reflecting its overall turnover. Additional biomarkers more directly related to α‐synuclein pathophysiology and disease progression and other markers to be identified by, for example, proteomics and metabolomics are needed. © 2019 The Authors. Movement Disorders published by Wiley Periodicals, Inc. on behalf of International Parkinson and Movement Disorder Society
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