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首页> 外文期刊>Journal of healthcare engineering. >Gene Expression Changes in Long-Term In Vitro Human Blood-Brain Barrier Models and Their Dependence on a Transwell Scaffold Material
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Gene Expression Changes in Long-Term In Vitro Human Blood-Brain Barrier Models and Their Dependence on a Transwell Scaffold Material

机译:长期体外人血脑屏障模型中的基因表达变化及其对Transwell支架材料的依赖性

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摘要

Disruption of the blood-brain barrier (BBB) is the hallmark of many neurovascular disorders, making it a critically important focus for therapeutic options. However, testing the effects of either drugs or pathological agents is difficult due to the potentially damaging consequences of altering the normal brain microenvironment. Recently, in vitro coculture tissue models have been developed as an alternative to animal testing. Despite low cost, these platforms use synthetic scaffolds which prevent normal barrier architecture, cellular crosstalk, and tissue remodeling. We created a biodegradable electrospun gelatin mat “biopaper” (BP) as a scaffold material for an endothelial/astrocyte coculture model allowing cell-cell contact and crosstalk. To compare the BP and traditional models, we investigated the expression of 27 genes involved in BBB permeability, cellular function, and endothelial junctions at different time points. Gene expression levels demonstrated higher expression of transcripts involved in endothelial junction formation, including TJP2 and CDH5, in the BP model. The traditional model had higher expression of genes associated with extracellular matrix-associated proteins, including SPARC and COL4A1. Overall, the results demonstrate that the BP coculture model is more representative of a healthy BBB state, though both models have advantages that may be useful in disease modeling.
机译:血脑屏障(BBB)的破坏是许多神经血管疾病的标志,使其成为治疗选择的关键重点。但是,由于改变正常的大脑微环境可能会造成破坏性后果,因此很难测试药物或病理药物的作用。最近,已经开发了体外共培养组织模型作为动物测试的替代方法。尽管成本低廉,但这些平台使用的合成支架可防止正常的屏障结构,细胞串扰和组织重塑。我们创建了一种可生物降解的电纺明胶垫“生物纸”(BP),作为用于内皮细胞/星形细胞共培养模型的支架材料,允许细胞与细胞之间的接触和串扰。为了比较BP模型和传统模型,我们调查了在不同时间点涉及BBB渗透性,细胞功能和内皮连接的27个基因的表达。基因表达水平表明在BP模型中涉及内皮连接形成的转录物(包括TJP2和CDH5)的表达更高。传统模型具有与细胞外基质相关蛋白相关的基因高表达,包括SPARC和COL4A1。总体而言,结果表明,BP共培养模型更能代表健康的BBB状态,尽管这两种模型均具有可用于疾病建模的优势。

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