早期亨廷顿病中突触前末端标记物SV2A的广泛缺失

A. Delva, Laura Michiels, M. Koole, K. V. Laere, W. Vandenberghe
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摘要

长期以来,人们一直怀疑突触损伤在亨廷顿病(HD)的病理生理中起主要作用,但在人类体内的证据有限。目的探讨早期HD患者体内突触损伤情况。方法18例HD突变携带者(前期表现7例,早期表现11例;51.4±11.6年;6名女性)和15名年龄和性别匹配的健康对照(52.3±3.5岁;4名女性)。受试者接受了运动和非运动表现的临床评估、MRI、11C-UCB-J(一种针对普遍存在的突触前末端标记物SV2A的放射配体)PET和18F-FDG PET。计算11C-UCB-J的标准化摄取值比-1图像,以半瓣中央为参考区域。18F-FDG PET活动归一化到脑桥。所有PET数据都校正了部分体积效应。结果11C-UCB-J PET显示HD组壳核SV2A结合缺失(-28%)。结论11C-UCB-J PET显示早期HD组SV2A广泛缺失,提示突触广泛断开。纹状体中SV2A的缺失与运动和认知功能相关。11C-UCB-J PET比18F-FDG PET对早期HD的胃外改变检测更敏感。
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E01 Widespread loss of presynaptic terminal marker SV2A in early huntington disease
Background Synaptic damage has long been suspected to play a major role in the pathophysiology of Huntington disease (HD), but in vivo evidence in humans is limited. Aim To assess synaptic damage in early stages of HD in vivo. Methods Eighteen HD mutation carriers (7 premanifest, 11 early manifest; 51.4±11.6 years; 6 female) and 15 age- and gender-matched healthy controls (52.3±3.5 years; 4 female) were included. Subjects underwent clinical assessment of motor and non-motor manifestations, MRI, PET with 11C-UCB-J, a radioligand targeting the ubiquitous presynaptic terminal marker SV2A, and 18F-FDG PET. Standardized uptake value ratio -1 images were calculated for 11C-UCB-J with the centrum semiovale as reference region. 18F-FDG PET activity was normalized to the pons. All PET data were corrected for partial volume effects. Results 11C-UCB-J PET showed loss of SV2A binding in the HD group in putamen (-28%, p Conclusion 11C-UCB-J PET revealed extensive loss of SV2A in early HD, suggesting widespread synaptic disconnection. SV2A loss in the striatum correlated with motor and cognitive functioning. 11C-UCB-J PET is more sensitive than 18F-FDG PET for detection of extrAstriatal changes in early HD.
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E06 Temporo-spatial structural characterization of deep white matter tracts across the spectrum of Huntington’s disease E10 Cross-sectional exploration of the clinical utility of brain age as an imaging-based marker of disease pathology in Huntington’s disease (HD) based on the tominersen phase III trial generation HD 1 E07 Analysis of early white matter changes in the fornix of the limbic system in mouse models of Huntington disease E14 Neuroimaging biomarkers in Huntington’s disease E01 The HD young adult study 2: longitudinal follow up
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