淋巴系统
薄壁组织
生物物理学
化学
水运
细胞外
水通道蛋白4
扩散
神经科学
病理
生物
生物化学
医学
水流
脑脊液
物理
热力学
环境工程
工程类
作者
Alexander J. Smith,Xiaoming Yao,James A. Dix,Byung‐Ju Jin,A. S. Verkman
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2017-08-21
卷期号:6
被引量:313
摘要
Transport of solutes through brain involves diffusion and convection. The importance of convective flow in the subarachnoid and paravascular spaces has long been recognized; a recently proposed ‘glymphatic’ clearance mechanism additionally suggests that aquaporin-4 (AQP4) water channels facilitate convective transport through brain parenchyma. Here, the major experimental underpinnings of the glymphatic mechanism were re-examined by measurements of solute movement in mouse brain following intracisternal or intraparenchymal solute injection. We found that: (i) transport of fluorescent dextrans in brain parenchyma depended on dextran size in a manner consistent with diffusive rather than convective transport; (ii) transport of dextrans in the parenchymal extracellular space, measured by 2-photon fluorescence recovery after photobleaching, was not affected just after cardiorespiratory arrest; and (iii) Aqp4 gene deletion did not impair transport of fluorescent solutes from sub-arachnoid space to brain in mice or rats. Our results do not support the proposed glymphatic mechanism of convective solute transport in brain parenchyma.
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