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连接人类大脑与眼部废物清除:来自泪液和超高场磁共振成像的见解

Linking human cerebral and ocular waste clearance: Insights from tear fluid and ultra-high field MRI.

作者信息

van der Thiel Merel M, van de Sande Nienke, Meeusen Anouk, Drenthen Gerhard S, Postma Alida A, Nuijts Rudy M M A, van der Knaap Noa, Ramakers Inez H G B, Webers Carroll A B, Backes Walter H, Gijs Marlies, Jansen Jacobus F A

机构信息

Department of Radiology & Nuclear Medicine, Maastricht University Medical Center+, Maastricht, the Netherlands; Mental Health and Neuroscience Research Institute, Maastricht University, Maastricht, the Netherlands; Department of Psychiatry & Neuropsychology, Maastricht University, Maastricht, the Netherlands.

Mental Health and Neuroscience Research Institute, Maastricht University, Maastricht, the Netherlands; University Eye Clinic, Maastricht University Medical Center, Maastricht, the Netherlands.

出版信息

Neurobiol Dis. 2024 Dec;203:106730. doi: 10.1016/j.nbd.2024.106730. Epub 2024 Nov 8.

Abstract

Impaired cerebral waste clearance (i.e., glymphatics) is evident in aging and neurodegenerative disorders, such as Alzheimer's disease, where an impaired waste clearance system could be related to the accumulation of pathological proteins (e.g., tau). One marker of impaired cerebral clearance is the abundance of enlarged perivascular spaces (PVS). Preclinical studies propose a similar clearance system in the eye, driven by intraocular pressure (IOP). This cross-sectional pilot study explores the link between ocular and cerebral waste clearance by examining the association between MRI-visible PVS, tear fluid total-tau, and IOP. Thirty cognitively healthy participants, all aged over 55 years, underwent 7 Tesla MRI, with PVS visually rated in the centrum semiovale (CSO) and basal ganglia. Tear fluid was collected using paper Schirmer's strips and analyzed for total-tau using enzyme-linked immunosorbent assay. IOP was measured using non-contact tonometry. Partial Spearman's correlation coefficients of eye and brain markers were calculated, adjusted for age, sex, tear fluid-wetting length, and hemispheric region of interest volume. Higher CSO PVS scores in the left and right hemisphere were associated with higher levels of tear fluid total-tau. Higher CSO PVS scores in both hemispheres were related to lower ipsilateral IOP. The exploratory results suggest that higher tear fluid total-tau and a reduced driving force of ocular waste clearance are connected to impaired cerebral waste clearance in cognitive healthy individuals. This study connects the potential ocular glymphatic system to the cerebral waste clearance system. Clarifying waste clearance biology and validating eye biomarkers for cerebral waste clearance could provide treatment targets and diagnostic opportunities for neurological diseases.

摘要

脑废物清除功能受损(即类淋巴系统)在衰老和神经退行性疾病(如阿尔茨海默病)中很明显,在这些疾病中,受损的废物清除系统可能与病理性蛋白质(如tau蛋白)的积累有关。脑清除功能受损的一个标志是血管周围间隙(PVS)扩大。临床前研究表明,眼睛中存在类似的由眼内压(IOP)驱动的清除系统。这项横断面试点研究通过检查MRI可见的PVS、泪液总tau蛋白和IOP之间的关联,探讨眼和脑废物清除之间的联系。30名认知健康的参与者,年龄均超过55岁,接受了7特斯拉的MRI检查,在半卵圆中心(CSO)和基底神经节对PVS进行视觉评分。使用滤纸式泪液分泌试验收集泪液,并使用酶联免疫吸附测定法分析总tau蛋白。使用非接触眼压计测量IOP。计算眼和脑标志物的偏斯皮尔曼相关系数,并根据年龄、性别、泪液湿润长度和感兴趣半球区域体积进行调整。左、右半球较高的CSO PVS评分与较高水平的泪液总tau蛋白相关。两个半球较高的CSO PVS评分与同侧较低的IOP相关。探索性结果表明,在认知健康个体中,较高的泪液总tau蛋白和眼废物清除驱动力降低与脑废物清除功能受损有关。这项研究将潜在的眼类淋巴系统与脑废物清除系统联系起来。阐明废物清除生物学并验证用于脑废物清除的眼部生物标志物可为神经系统疾病提供治疗靶点和诊断机会。

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