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沿血管树不同的血管周围星形胶质细胞终足尺寸维持了通过皮质套的血管周围-间质通量。

Varying perivascular astroglial endfoot dimensions along the vascular tree maintain perivascular-interstitial flux through the cortical mantle.

作者信息

Wang Marie Xun, Ray Lori, Tanaka Kenji F, Iliff Jeffrey J, Heys Jeffrey

机构信息

VISN 20 Mental Illness Research, Education and Clinical Center (MIRECC), VA Puget Sound Health Care System, Seattle, Washington, USA.

Department of Psychiatry and Behavioral Sciences, University of Washington School of Medicine, Seattle, Washington, USA.

出版信息

Glia. 2021 Mar;69(3):715-728. doi: 10.1002/glia.23923. Epub 2020 Oct 19.

Abstract

The glymphatic system is a recently defined brain-wide network of perivascular spaces along which cerebrospinal fluid (CSF) and interstitial solutes exchange. Astrocyte endfeet encircling the perivascular space form a physical barrier in between these two compartments, and fluid and solutes that are not taken up by astrocytes move out of the perivascular space through the junctions in between astrocyte endfeet. However, little is known about the anatomical structure and the physiological roles of the astrocyte endfeet in regulating the local perivascular exchange. Here, visualizing astrocyte endfoot-endfoot junctions with immunofluorescent labeling against the protein megalencephalic leukoencephalopathy with subcortical cysts-1 (MLC1), we characterized endfoot dimensions along the mouse cerebrovascular tree. We observed marked heterogeneity in endfoot dimensions along vessels of different sizes, and of different types. Specifically, endfoot size was positively correlated with the vessel diameters, with large vessel segments surrounded by large endfeet and small vessel segments surrounded by small endfeet. This association was most pronounced along arterial, rather than venous segments. Computational modeling simulating vascular trees with uniform or varying endfeet dimensions demonstrates that varying endfoot dimensions maintain near constant perivascular-interstitial flux despite correspondingly declining perivascular pressures along the cerebrovascular tree through the cortical depth. These results describe a novel anatomical feature of perivascular astroglial endfeet and suggest that endfoot heterogeneity may be an evolutionary adaptation to maintain perivascular CSF-interstitial fluid exchange through deep brain structures.

摘要

神经胶质淋巴系统是最近定义的一个全脑范围的血管周围间隙网络,脑脊液(CSF)和间质溶质沿此网络进行交换。环绕血管周围间隙的星形胶质细胞终足在这两个腔室之间形成了一个物理屏障,未被星形胶质细胞摄取的液体和溶质通过星形胶质细胞终足之间的连接从血管周围间隙中移出。然而,关于星形胶质细胞终足在调节局部血管周围交换中的解剖结构和生理作用,我们知之甚少。在这里,我们通过针对巨脑性白质脑病伴皮质下囊肿-1(MLC1)蛋白的免疫荧光标记来可视化星形胶质细胞终足-终足连接,从而对小鼠脑血管树沿线的终足尺寸进行了表征。我们观察到不同大小和不同类型血管沿线的终足尺寸存在显著异质性。具体而言,终足大小与血管直径呈正相关,大血管段被大终足包围,小血管段被小终足包围。这种关联在动脉段而非静脉段最为明显。模拟具有均匀或变化终足尺寸的血管树的计算模型表明,尽管沿着脑血管树通过皮质深度血管周围压力相应下降,但变化的终足尺寸仍能维持近乎恒定的血管周围-间质通量。这些结果描述了血管周围星形胶质细胞终足的一种新的解剖特征,并表明终足异质性可能是一种进化适应,以维持通过深部脑结构的血管周围脑脊液-间质液交换。

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