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脑内皮细胞红细胞吞噬作用及血红蛋白穿越脑内皮:对脑微出血发病机制的影响

Brain Endothelial Erythrophagocytosis and Hemoglobin Transmigration Across Brain Endothelium: Implications for Pathogenesis of Cerebral Microbleeds.

作者信息

Chang Rudy, Castillo Juan, Zambon Alexander C, Krasieva Tatiana B, Fisher Mark J, Sumbria Rachita K

机构信息

Department of Biopharmaceutical Sciences, School of Pharmacy and Health Sciences, Keck Graduate Institute, Claremont, CA, United States.

Department of Neuroscience, Claremont McKenna College, Claremont, CA, United States.

出版信息

Front Cell Neurosci. 2018 Sep 6;12:279. doi: 10.3389/fncel.2018.00279. eCollection 2018.

Abstract

Peripheral endothelial cells are capable of erythrophagocytosis, but data on brain endothelial erythrophagocytosis are limited. We studied the relationship between brain endothelial erythrophagocytosis and cerebral microhemorrhage, the pathological substrate of MRI-demonstrable cerebral microbleeds. To demonstrate the erythrophagocytic capability of the brain endothelium, we studied the interactions between brain endothelial cells and red blood cells exposed to oxidative stress , and developed a new cerebral microbleeds model to study the subsequent passage of hemoglobin across the brain endothelial monolayer. Using multiple approaches, our results show marked brain endothelial erythrophagocytosis of red blood cells exposed to oxidative stress compared with control red blood cells . This brain endothelial erythrophagocytosis was accompanied by passage of hemoglobin across the brain endothelial monolayer with unaltered monolayer integrity. and confocal fluorescence microscopy studies confirmed the extravasation of RBC exposed to oxidative stress across brain endothelium. These findings, demonstrating erythrophagocytosis mediated by the brain endothelial monolayer and the subsequent passage of iron-rich hemoglobin and RBC , may have implications for elucidating mechanisms involved in the development of cerebral microbleeds that are not dependent on disruption of the microvasculature.

摘要

外周内皮细胞具有红细胞吞噬能力,但关于脑内皮细胞红细胞吞噬作用的数据有限。我们研究了脑内皮细胞红细胞吞噬作用与脑微出血之间的关系,脑微出血是MRI可显示的脑微出血灶的病理基础。为了证明脑内皮细胞的红细胞吞噬能力,我们研究了脑内皮细胞与暴露于氧化应激的红细胞之间的相互作用,并开发了一种新的脑微出血模型,以研究血红蛋白随后穿过脑内皮单层的过程。通过多种方法,我们的结果显示,与对照红细胞相比,暴露于氧化应激的红细胞有明显的脑内皮细胞红细胞吞噬作用。这种脑内皮细胞红细胞吞噬作用伴随着血红蛋白穿过脑内皮单层,而单层完整性未改变。共聚焦荧光显微镜研究证实,暴露于氧化应激的红细胞可穿过脑内皮。这些发现表明脑内皮单层介导的红细胞吞噬作用以及富含铁的血红蛋白和红细胞随后的通过,可能对阐明不依赖于微血管破坏的脑微出血发生机制具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef2e/6135875/c3b6f1787cb9/fncel-12-00279-g0001.jpg

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