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On-Chip Fabrication of Cell-Attached Microstructures using Photo-Cross-Linkable Biodegradable Hydrogel

机译:使用光交叉连接的可生物降解水凝胶芯片制备细胞附着的微结构

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摘要

We developed a procedure for fabricating movable biological cell structures using biodegradable materials on a microfluidic chip. A photo-cross-linkable biodegradable hydrogel gelatin methacrylate (GelMA) was used to fabricate arbitrary microstructure shapes under a microscope using patterned ultraviolet light. The GelMA microstructures were movable inside the microfluidic channel after applying a hydrophobic coating material. The fabricated microstructures were self-assembled inside the microfluidic chip using our method of fluid forcing. The synthesis procedure of GelMA was optimized by changing the dialysis temperature, which kept the GelMA at a suitable pH for cell culture. RLC-18 rat liver cells (Riken BioResource Research Center, Tsukuba, Japan) were cultured inside the GelMA and on the GelMA microstructures to check cell growth. The cells were then stretched for 1 day in the cell culture and grew well on the GelMA microstructures. However, they did not grow well inside the GelMA microstructures. The GelMA microstructures were partially dissolved after 4 days of cell culture because of their biodegradability after the cells were placed on the microstructures. The results indicated that the proposed procedure used to fabricate cell structures using GelMA can be used as a building block to assemble three-dimensional tissue-like cell structures in vitro inside microfluidic devices.
机译:我们开发了一种使用微流控芯片上的可生物降解材料制造可移动生物细胞结构的程序。使用可光交联的可生物降解的水凝胶甲基丙烯酸明胶(GelMA)在显微镜下使用图案化的紫外线来制造任意的微观结构形状。施加疏水性涂料后,GelMA微结构可在微流体通道内部移动。使用我们的流体强迫方法,将制造的微结构自组装在微流控芯片中。通过改变透析温度优化了GelMA的合成程序,从而将GelMA保持在适合细胞培养的pH值下。在GelMA内部和GelMA微结构上培养了RLC-18大鼠肝细胞(日本筑波的Riken生物资源研究中心),以检查细胞的生长。然后将细胞在细胞培养物中拉伸1天,并在GelMA微结构上生长良好。但是,它们在GelMA微结构内部生长不好。细胞培养4天后,GelMA微结构部分溶解,这是因为将细胞放置在微结构上后它们的生物降解能力。结果表明,所提出的用于使用GelMA来制造细胞结构的程序可以用作在微流体装置中体外组装三维组织样细胞结构的基础。

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