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首页> 外文期刊>Proteomics >Actin, gelsolin and filamin-A are dynamic actors in the cytoskeleton remodelling contributing to the blood brain barrier phenotype.
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Actin, gelsolin and filamin-A are dynamic actors in the cytoskeleton remodelling contributing to the blood brain barrier phenotype.

机译:肌动蛋白,凝溶胶蛋白和纤维蛋白A是细胞骨架重塑中的动态角色,有助于血脑屏障表型。

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摘要

The brain vascular endothelium operates as a dynamic regulatory interface to maintain the cell environment of the nervous system. In the vicinity of astrocytes, brain endothelial cells develop characteristic features conferring a strong cellular impermeability which limits the penetration of various compounds. The aim of our study was to determine by differential proteomic analysis the changes occurring in bovine brain capillary endothelial cells (BBCEC) differentiated in co-culture with astrocytes compared with endothelial cells cultured alone. In order to obtain reproducible and meaningful protein profiles of in vitro blood-brain barrier models, three sample preparation procedures were carried out to provide the first 2-D comparative proteomic study of BBCEC. Our study highlights advantages and drawbacks of each procedure. The cellular proteins prepared from mechanical scraping of collagen-seeded BBCEC were strongly contaminated by serum proteins. Enzymatic dissociation of BBCEC by trypsin or collagenase solved this problem. A comparative 2-DE profile study of collagenase-harvested BBCEC revealed that cytoskeleton-related proteins (actin, gelsolin and filamin-A) show the most significant quantitative changes in the Triton soluble protein fraction from BBCEC that exhibit characteristics closest to the in vivo situation.
机译:脑血管内皮作为动态调节界面来维持神经系统的细胞环境。在星形胶质细胞附近,脑内皮细胞具有特征性的特征,赋予细胞强大的抗渗透性,从而限制了各种化合物的渗透。我们研究的目的是通过差异蛋白质组学分析确定与单独培养的内皮细胞相比,与星形胶质细胞共培养分化的牛脑毛细血管内皮细胞(BBCEC)发生的变化。为了获得体外血脑屏障模型的可重现和有意义​​的蛋白质谱,进行了三种样品制备程序以提供BBCEC的首次二维比较蛋白质组学研究。我们的研究突出了每种程序的优缺点。机械刮擦胶原蛋白播种的BBCEC制备的细胞蛋白被血清蛋白严重污染。胰蛋白酶或胶原酶对BBCEC进行酶解可解决此问题。胶原酶捕获的BBCEC的比较2-DE谱研究表明,与细胞骨架相关的蛋白(肌动蛋白,凝溶胶蛋白和纤维蛋白A)显示出BBCEC的Triton可溶性蛋白组分中最显着的定量变化,表现出最接近体内情况的特征。

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