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Microfluidic Platform for the Long-Term On-Chip Cultivation of Mammalian Cells for Lab-On-A-Chip Applications

机译:微流控平台用于芯片实验室应用的哺乳动物细胞的长期片上培养

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摘要

Lab-on-a-Chip (LoC) applications for the long-term analysis of mammalian cells are still very rare due to the lack of convenient cell cultivation devices. The difficulties are the integration of suitable supply structures, the need of expensive equipment like an incubator and sophisticated pumps as well as the choice of material. The presented device is made out of hard, but non-cytotoxic materials (silicon and glass) and contains two vertical arranged membranes out of hydrogel. The porous membranes are used to separate the culture chamber from two supply channels for gases and nutrients. The cells are fed continuously by diffusion through the membranes without the need of an incubator and low requirements on the supply of medium to the assembly. The diffusion of oxygen is modelled in order to find the optimal dimensions of the chamber. The chip is connected via 3D-printed holders to the macroscopic world. The holders are coated with Parlyene C to ensure that only biocompatible materials are in contact with the culture medium. The experiments with MDCK-cells show the successful seeding inside the chip, culturing and passaging. Consequently, the presented platform is a step towards Lab-on-a-Chip applications that require long-term cultivation of mammalian cells.
机译:由于缺乏便利的细胞培养装置,用于哺乳动物细胞长期分析的芯片实验室(LoC)应用仍然非常少见。困难在于合适的供应结构的整合,对诸如孵化器和精密泵之类的昂贵设备的需求以及材料的选择。所展示的设备是由坚硬但无细胞毒性的材料(硅和玻璃)制成,并包含两个垂直排列的水凝胶膜。多孔膜用于将培养室与两个气体和养分供应通道分隔开。通过扩散穿过细胞膜连续喂食细胞,而无需培养箱,并且对向组件供应培养基的要求低。对氧气的扩散进行建模,以找到腔室的最佳尺寸。该芯片通过3D打印的支架连接到宏观世界。保持器涂有Parlyene C,以确保只有生物相容性材料与培养基接触。用MDCK细胞进行的实验表明,在芯片内部成功播种,培养和传代。因此,提出的平台是向需要长期培养哺乳动物细胞的芯片实验室应用迈出的一步。

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