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Cell fusion contributes to pericyte formation after stroke.

机译:细胞融合有助于中风后周细胞的形成。

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摘要

Recent reports have shown that bone marrow-derived cells (BMDCs) contribute to the formation of vasculature after stroke. However, the mechanism by which mural cells are formed from BMDC remains elusive. Here, we provide direct evidence that the cell fusion process contributes to the formation of pericytes after stroke. We generated mouse bone marrow chimeras using a cre/lox system that allows the detection of fusion events by X-gal staining. In these mice, we detected X-gal-positive cells that expressed vimentin and desmin, specific markers of mature murine pericytes. Electron microscopy confirmed that fused cells possessed basal lamina and characteristics of pericytes. Furthermore, induction of stroke increased significantly the presence of fused cells in the ischemic area. These cells expressed markers of developing pericytes such as NG2. We conclude that cell fusion participates actively in the generation of vascular tissue through pericyte formation under normal as well as pathologic conditions.
机译:最近的报道表明,骨髓源性细胞(BMDC)有助于中风后血管系统的形成。但是,由BMDC形成壁细胞的机制仍然难以捉摸。在这里,我们提供直接证据表明中风后细胞融合过程有助于周细胞的形成。我们使用cre / lox系统生成了小鼠骨髓嵌合体,该系统允许通过X-gal染色检测融合事件。在这些小鼠中,我们检测到了表达波形蛋白和结蛋白(成熟鼠周细胞​​的特定标记)的X-gal阳性细胞。电镜证实融合细胞具有基底层和周细胞特征。此外,中风的诱导显着增加了缺血区域中融合细胞的存在。这些细胞表达发育中的周细胞例如NG2的标志物。我们得出结论,在正常以及病理情况下,细胞融合都通过周细胞形成积极参与血管组织的生成。

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