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阿尔茨海默病小鼠模型中慢性脑灌注不足对白质完整性的破坏

Disruption of White Matter Integrity by Chronic Cerebral Hypoperfusion in Alzheimer's Disease Mouse Model.

作者信息

Zhai Yun, Yamashita Toru, Nakano Yumiko, Sun Zhuoran, Morihara Ryuta, Fukui Yusuke, Ohta Yasuyuki, Hishikawa Nozomi, Abe Koji

出版信息

J Alzheimers Dis. 2016 Apr 12;52(4):1311-9. doi: 10.3233/JAD-160120.

Abstract

A rapidly progressing aging society has raised attention to white matter lesions in Alzheimer's disease. In the present study, we applied an AD plus cerebral hypoperfusion (HP) mouse model and investigated the alternation of key protein molecules in the nodal, paranodal, and intermodal sites in the white matter as well as the efficacy of galantamine. Cerebral HP was induced in APP23 mice by bilateral common carotid arteries stenosis with ameroid constrictors. Compared with the wild type and simple APP23 mice, APP23 + HP mice showed a progressive loss of MAG and NF186 from 6 to 12 months, broken misdistribution of MBP, and extended relocation of Nav1.6 and AnkG beyond the primary nodal region in the corpus callosum. Such abnormal neuropathological processes were retrieved with galantamine treatment. The present study demonstrated that cerebral HP strongly disrupted white matter integrity (WMI) at intermodal, paranodal, and Ranvier's nodal sites which may be associated with cognitive decline. Galantamine treatment significantly protected such WMI probably by allosterically potentiating ligand action.

摘要

快速发展的老龄化社会已引起人们对阿尔茨海默病中白质病变的关注。在本研究中,我们应用了阿尔茨海默病加脑灌注不足(HP)小鼠模型,研究了白质中结区、结旁区和节间区关键蛋白分子的变化以及加兰他敏的疗效。通过用阿梅里德缩窄器双侧颈总动脉狭窄在APP23小鼠中诱导脑灌注不足。与野生型和单纯APP23小鼠相比,APP23 + HP小鼠在6至12个月时MAG和NF186逐渐丧失,MBP分布紊乱,胼胝体中Nav1.6和AnkG在初级结区以外的区域重新分布扩大。加兰他敏治疗可恢复这种异常的神经病理过程。本研究表明,脑灌注不足强烈破坏了节间区、结旁区和郎飞结区的白质完整性(WMI),这可能与认知功能下降有关。加兰他敏治疗可能通过变构增强配体作用显著保护这种白质完整性。

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