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A miniaturized hydrogel-based in vitro model for dynamic culturing of human cells overexpressing beta-amyloid precursor protein

机译:一种小型水凝胶基体外模型用于过表达β-淀粉样蛋白前体蛋白的人细胞动态培养

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摘要

Recent findings have highlighted an interconnection between intestinal microbiota and the brain, referred to as microbiota–gut–brain axis, and suggested that alterations in microbiota composition might affect brain functioning, also in Alzheimer’s disease. To investigate microbiota–gut–brain axis biochemical pathways, in this work we developed an innovative device to be used as modular unit in an engineered multi-organ-on-a-chip platform recapitulating in vitro the main players of the microbiota–gut–brain axis, and an innovative three-dimensional model of brain cells based on collagen/hyaluronic acid or collagen/poly(ethylene glycol) semi-interpenetrating polymer networks and β-amyloid precursor protein-Swedish mutant-expressing H4 cells, to simulate the pathological scenario of Alzheimer’s disease. We set up the culturing conditions, assessed cell response, scaled down the three-dimensional models to be hosted in the organ-on-a-chip device, and cultured them both in static and in dynamic conditions. The results suggest that the device and three-dimensional models are exploitable for advanced engineered models representing brain features also in Alzheimer’s disease scenario.
机译:最近的研究结果强调了肠道菌群和大脑,被称为微生物 - 肠 - 脑轴之间的互连,并建议在微生物组成的改变可能会影响大脑功能,也是在阿尔茨海默氏病。为了研究微生物 - 肠脑轴线生化途径,在这项工作中,我们开发了一种创新的设备体外的微生物 - 肠 - 主力球员的工程多器官上的单芯片平台扼要用作模块化单元脑轴,并且基于胶原/透明质酸或胶原/聚(乙二醇)半互穿聚合物网络和β淀粉样前体蛋白 - 瑞典突变体表达H4的细胞,以模拟病理脑细胞的一种创新的三维模型阿尔茨海默氏症的情况。我们建立了培养条件下,评估细胞应答,按比例缩小的三维模型在器官上的单芯片设备被托管,并且培养他们都在静态和动态条件下。结果表明,该设备和三维模型是可利用的为代表的脑功能也是阿尔茨海默氏病的场景先进的工程款。

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