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Optical cell separation from three-dimensional environment in photodegradable hydrogels for pure culture techniques

机译:用于纯培养技术的可光降解水凝胶中三维环境中的光学细胞分离

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摘要

Cell sorting is an essential and efficient experimental tool for the isolation and characterization of target cells. A three-dimensional environment is crucial in determining cell behavior and cell fate in biological analysis. Herein, we have applied photodegradable hydrogels to optical cell separation from a 3D environment using a computer-controlled light irradiation system. The hydrogel is composed of photocleavable tetra-arm polyethylene glycol and gelatin, which optimized cytocompatibility to adjust a composition of crosslinker and gelatin. Local light irradiation could degrade the hydrogel corresponding to the micropattern image designed on a laptop; minimum resolution of photodegradation was estimated at 20 µm. Light irradiation separated an encapsulated fluorescent microbead without any contamination of neighbor beads, even at multiple targets. Upon selective separation of target cells in the hydrogels, the separated cells have grown on another dish, resulting in pure culture. Cell encapsulation, light irradiation and degradation products exhibited negligible cytotoxicity in overall process.
机译:细胞分选是用于靶细胞的分离和表征的重要且有效的实验工具。三维环境对于在生物学分析中确定细胞行为和细胞命运至关重要。本文中,我们已使用计算机控制的光辐照系统将可光降解水凝胶应用于从3D环境中分离光学细胞的过程。水凝胶由可光裂解的四臂聚乙二醇和明胶组成,它们优化了细胞相容性,可调节交联剂和明胶的组成。局部光照射可能会降解与笔记本电脑上设计的微图案图像相对应的水凝胶;光降解的最小分辨率估计为20μm。光照射分离了封装的荧光微珠,即使在多个目标处也没有任何相邻珠的污染。在水凝胶中选择性分离靶细胞后,分离的细胞在另一个培养皿中生长,从而得到纯培养物。细胞封装,光照射和降解产物在整个过程中表现出可忽略的细胞毒性。

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