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血脑屏障与脑淋巴系统在溶质清除中的相互作用。

Interaction between blood-brain barrier and glymphatic system in solute clearance.

机构信息

School for Mental Health and Neuroscience/ Alzheimer Centrum Limburg, Department of Psychiatry & Neuropsychology, Maastricht University, P.O. Box 616, 6200 MD, Maastricht, The Netherlands.

School for Mental Health and Neuroscience/ Alzheimer Centrum Limburg, Department of Psychiatry & Neuropsychology, Maastricht University, P.O. Box 616, 6200 MD, Maastricht, The Netherlands.

出版信息

Neurosci Biobehav Rev. 2018 Jul;90:26-33. doi: 10.1016/j.neubiorev.2018.03.028. Epub 2018 Mar 30.

Abstract

Neurovascular pathology concurs with protein accumulation, as the brain vasculature is important for waste clearance. Interstitial solutes, such as amyloid-β, were previously thought to be primarily cleared from the brain by blood-brain barrier transport. Recently, the glymphatic system was discovered, in which cerebrospinal fluid is exchanged with interstitial fluid, facilitated by the aquaporin-4 water channels on the astroglial endfeet. Glymphatic flow can clear solutes from the interstitial space. Blood-brain barrier transport and glymphatic clearance likely serve complementary roles with partially overlapping mechanisms providing a well-conditioned neuronal environment. Disruption of these mechanisms can lead to protein accumulation and may initiate neurodegenerative disorders, for instance amyloid-β accumulation and Alzheimer's disease. Although both mechanisms seem to have a similar purpose, their interaction has not been clearly discussed previously. This review focusses on this interaction in healthy and pathological conditions. Future health initiatives improving waste clearance might delay or even prevent onset of neurodegenerative disorders. Defining glymphatic flow kinetics using imaging may become an alternative way to identify those at risk of Alzheimer's disease.

摘要

神经血管病理学与蛋白质积累一致,因为脑血管对于废物清除很重要。过去,人们认为脑内的间质溶质(如淀粉样β蛋白)主要通过血脑屏障转运来清除。最近,人们发现了类淋巴系统,其中脑脊液通过星形胶质细胞终足上的水通道蛋白-4 进行交换,从而与间质液进行交换。类淋巴液流动可以清除间质空间中的溶质。血脑屏障转运和类淋巴清除可能具有互补作用,部分重叠的机制为神经元提供了良好的条件。这些机制的破坏会导致蛋白质积累,并可能引发神经退行性疾病,例如淀粉样β蛋白积累和阿尔茨海默病。尽管这两种机制似乎具有相似的作用,但它们之间的相互作用以前并没有得到明确讨论。本综述重点讨论了这两种机制在健康和病理条件下的相互作用。未来改善废物清除的健康计划可能会延迟甚至预防神经退行性疾病的发生。使用成像技术定义类淋巴液流动动力学可能成为识别那些有患阿尔茨海默病风险的人的替代方法。

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