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小鼠皮质挫伤损伤后纤维蛋白原在血管-星形胶质细胞界面的定位

Localization of Fibrinogen in the Vasculo-Astrocyte Interface after Cortical Contusion Injury in Mice.

作者信息

Muradashvili Nino, Tyagi Suresh C, Lominadze David

机构信息

Department of Physiology, University of Louisville, School of Medicine, Louisville, KY 40202, USA.

出版信息

Brain Sci. 2017 Jul 6;7(7):77. doi: 10.3390/brainsci7070077.

Abstract

Besides causing neuronal damage, traumatic brain injury (TBI) is involved in memory reduction, which can be a result of alterations in vasculo-neuronal interactions. Inflammation following TBI is involved in elevation of blood content of fibrinogen (Fg), which is known to enhance cerebrovascular permeability, and thus, enhance its deposition in extravascular space. However, the localization of Fg in the extravascular space and its possible interaction with nonvascular cells are not clear. The localization of Fg deposition in the extravascular space was defined in brain samples of mice after cortical contusion injury (CCI) and sham-operation (control) using immunohistochemistry and laser-scanning confocal microscopy. Memory changes were assessed with new object recognition and Y-maze tests. Data showed a greater deposition of Fg in the vascular and astrocyte endfeet interface in mice with CCI than in control animals. This effect was accompanied by enhanced neuronal degeneration and reduction in short-term memory in mice with CCI. Thus, our results suggest that CCI induces increased deposition of Fg in the vasculo-astrocyte interface, and is accompanied by neuronal degeneration, which may result in reduction of short-term memory.

摘要

除了导致神经元损伤外,创伤性脑损伤(TBI)还会导致记忆力减退,这可能是血管-神经元相互作用改变的结果。TBI后的炎症反应会导致纤维蛋白原(Fg)血液含量升高,已知Fg会增强脑血管通透性,从而增加其在血管外空间的沉积。然而,Fg在血管外空间的定位及其与非血管细胞的可能相互作用尚不清楚。使用免疫组织化学和激光扫描共聚焦显微镜,在皮质挫伤性损伤(CCI)小鼠和假手术(对照)小鼠的脑样本中确定了Fg在血管外空间的沉积定位。通过新物体识别和Y迷宫试验评估记忆变化。数据显示,与对照动物相比,CCI小鼠的血管和星形胶质细胞终足界面中Fg的沉积更多。这种效应伴随着CCI小鼠神经元变性增强和短期记忆减退。因此,我们的结果表明,CCI会导致Fg在血管-星形胶质细胞界面的沉积增加,并伴有神经元变性,这可能导致短期记忆减退。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c002/5532590/92dd6d350210/brainsci-07-00077-g001.jpg

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