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Blood-Brain Barrier In Vitro Model Utilizing Immortalized Cell Lines

机译:利用永生化细胞系的血脑屏障体外模型

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The interest in using blood-brain barrier (BBB) in vitro culture assays in early safety assessment of drugs is growing [1]. This study evaluated the feasibility of using commercially available immortalized cell lines.instead of primary cell lines in building in vitro models for BBB. Immortalized mouse endothelial cells from yolk sac and rat astrocytes from 1-day old rat purchased from American Type Culture Collections (ATCC) were used in the assessment to build the BBB co-culture in vitro model. Acellular extracellular matrix (aECM) derived from a confluent layer of astrocytes was introduced in the experiment providing a novel biomimetic basement membrane scaffold for endothelial cells. Experimental data shown in this paper were based on experiments with at least three set of replications. The BBB in vitro co-culture model with aECM is promising in terms of demonstrating higher daily transendothelial electrical resistance (TEER) values, and better inhibition of solute transport of different compounds than endothelial cells cultured alone as well as traditional co-cultured models. Immunofluorescence study and Western Blot analysis also verified higher expression level of occludin, one of the tight junction proteins in the co-cultured model with aECM than any other sample setups. Our novel approach using immortalized cell lines with the addition of aECM was testified to be a cost and labor effective, feasible and repeatable alternative for BBB in vitro model building in drug delivery studies.
机译:利用血脑屏障(BBB)在早期安全评估中使用血脑屏障(BBB)的体外培养测定越来越大[1]。该研究评估了使用市售的永生化细胞系的可行性。在BBB建立体外模型中的原代细胞系中的可行性。从美国型培养收集量(ATCC)购买的1日龄大鼠中来自蛋黄囊和大鼠星形胶质细胞的永生化的小鼠内皮细胞被用于评估,以构建体外模型的BBB共同培养。在实验中引入了来自星形胶质细胞汇合层的无细胞细胞外基质(AECM),为内皮细胞提供新的生物仿生基底膜支架。本文所示的实验数据基于具有至少三组复制的实验。具有AECM的BBB体外共培养模型在展示较高的日常转换电阻(TEER)值方面具有很大的兴趣,并且更好地抑制不同化合物的溶质转运而不是单独培养的内皮细胞以及传统的共培养模型。免疫荧光研究和Western印迹分析还验证了occludin的更高表达水平,在共培养模型中的一个紧密结蛋白质,与任何其他样品设置相比。通过添加AECM的添加细胞系的新方法被证实是在药物递送研究中的BBB体外模型建筑物的成本和劳动力,可重复的替代品。

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