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前驱期阿尔茨海默病中的灌注受损和毛细血管功能障碍。

Impaired perfusion and capillary dysfunction in prodromal Alzheimer's disease.

作者信息

Nielsen Rune B, Parbo Peter, Ismail Rola, Dalby Rikke, Tietze Anna, Brændgaard Hans, Gottrup Hanne, Brooks David J, Østergaard Leif, Eskildsen Simon F

机构信息

Center of Functionally Integrative Neuroscience Aarhus University Aarhus Denmark.

Department of Nuclear Medicine and PET Centre Aarhus University Hospital Aarhus Denmark.

出版信息

Alzheimers Dement (Amst). 2020 May 21;12(1):e12032. doi: 10.1002/dad2.12032. eCollection 2020.

Abstract

INTRODUCTION

Cardiovascular disease increases the risk of developing Alzheimer's disease (AD), and growing evidence suggests an involvement of cerebrovascular pathology in AD. Capillary dysfunction, a condition in which capillary flow disturbances rather than arterial blood supply limit brain oxygen extraction, could represent an overlooked vascular contributor to neurodegeneration. We examined whether cortical capillary transit-time heterogeneity (CTH), an index of capillary dysfunction, is elevated in amyloid-positive patients with mild cognitive impairment (prodromal AD [pAD]).

METHODS

We performed structural and perfusion weighted MRI in 22 pAD patients and 21 healthy controls.

RESULTS

We found hypoperfusion, reduced blood volume, and elevated CTH in the parietal and frontal cortices of pAD-patients compared to controls, while only the precuneus showed focal cortical atrophy.

DISCUSSION

We propose that microvascular flow disturbances antedate cortical atrophy and may limit local tissue oxygenation in pAD. We speculate that capillary dysfunction contributes to the development of neurodegeneration in AD.

摘要

引言

心血管疾病会增加患阿尔茨海默病(AD)的风险,越来越多的证据表明脑血管病理变化与AD有关。毛细血管功能障碍是一种毛细血管血流紊乱而非动脉血供应限制脑氧摄取的情况,可能是神经退行性变中一个被忽视的血管因素。我们研究了毛细血管功能障碍指标——皮质毛细血管通过时间异质性(CTH)在淀粉样蛋白阳性的轻度认知障碍患者(前驱AD [pAD])中是否升高。

方法

我们对22例pAD患者和21名健康对照者进行了结构和灌注加权MRI检查。

结果

我们发现,与对照组相比,pAD患者顶叶和额叶皮质存在灌注不足、血容量减少以及CTH升高,而仅楔前叶显示局灶性皮质萎缩。

讨论

我们提出微血管血流紊乱先于皮质萎缩出现,并且可能会限制pAD患者局部组织的氧合作用。我们推测毛细血管功能障碍促成了AD中神经退行性变的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b189/7241262/30713b11b5b2/DAD2-12-e12032-g001.jpg

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