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脑淋巴液溶质转运不依赖于体循环。

Glymphatic solute transport does not require bulk flow.

机构信息

The Interface Group, Institute of Physiology, University of Zurich, Zurich, Switzerland.

Neuroscience Center Zurich, University of Zurich, Zurich, Switzerland.

出版信息

Sci Rep. 2016 Dec 8;6:38635. doi: 10.1038/srep38635.

Abstract

Observations of fast transport of fluorescent tracers in mouse brains have led to the hypothesis of bulk water flow directed from arterial to venous paravascular spaces (PVS) through the cortical interstitium. At the same time, there is evidence for interstitial solute transport by diffusion rather than by directed bulk fluid motion. It has been shown that the two views may be consolidated by intracellular water flow through astrocyte networks combined with mainly diffusive extracellular transport of solutes. This requires the presence of a driving force that has not been determined to date, but for which arterial pulsation has been suggested as the origin. Here we show that arterial pulsation caused by pulse wave propagation is an unlikely origin of this hypothetical driving force. However, we further show that such pulsation may still lead to fast para-arterial solute transport through dispersion, that is, through the combined effect of local mixing and diffusion in the para-arterial space.

摘要

观察到荧光示踪剂在小鼠大脑中的快速转运,促使人们提出假设,认为在皮质细胞间隙中,血流从动脉导向静脉周围腔室(PVS)。与此同时,有证据表明,间质溶质的转运是通过扩散而不是定向的大体积流体运动来实现的。已经表明,这两种观点可以通过细胞内水流通过星形胶质细胞网络来结合,同时主要通过扩散实现细胞外溶质的转运来统一。这需要存在一个尚未确定的驱动力,但目前已经提出动脉搏动可能是驱动力的起源。在这里,我们表明,由脉搏波传播引起的动脉搏动不太可能是这种假设驱动力的起源。然而,我们进一步表明,这种搏动仍然可以通过弥散导致快速的旁动脉溶质转运,即通过局部混合和旁动脉空间中的扩散的联合作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9b9/5144134/a507dd1fc2e3/srep38635-f1.jpg

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