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Controllable cancer cell growth using UV patterned hydrogels via DMD-based modulating projection printing

机译:通过基于DMD的调制投影打印,使用UV图案化水凝胶控制癌细胞的生长

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Fabrication of cell growth environment in vitro to control the cell spatial arrangement and proliferation is an indispensable technique for cell-based technologies. Previously several developed micropatterning methods such as soft lithography required relatively complicated operations, which leads to difficulties in the following research to investigate the effects of different cell growth patterns. This manuscript introduces a DMD-based projection technique to quickly pattern a poly(ethylene) glycol diacrylate (PEGDA)-based hydrogel on common glass substrates, which were used to control the growth patterns of cells. Compared with other methods, employed with digital dynamic mask, polymerisation of PEGDA solution can be induced to create arbitrary shape microstructures with high efficiency, flexibility and repeatability. The time duration of UV exposure is less than 10 s by controlling the projected illumination pattern. The resistance to cell attachment enables patterned PEGDA-coated film to be employed to hinder cell adhesion while the blank area allowing cells to grow in various patterns and sizes.
机译:体外制造细胞生长环境以控制细胞空间排列和增殖是基于细胞的技术必不可少的技术。以前,诸如软光刻之类的几种发达的微图案化方法需要相对复杂的操作,这导致在随后的研究中难以研究不同细胞生长方式的影响。该手稿介绍了一种基于DMD的投影技术,该技术可在常见的玻璃基板上快速对基于聚乙二醇二丙烯酸酯(PEGDA)的水凝胶进行图案化,以控制细胞的生长方式。与数字动态掩膜所采用的其他方法相比,可以诱导PEGDA溶液的聚合,从而以高效,灵活和可重复的方式创建任意形状的微观结构。通过控制投射的照明图案,紫外线暴露的持续时间小于10 s。对细胞附着的抗性使得图案化的PEGDA涂层薄膜可以用来阻止细胞粘附,而空白区域则允许细胞以各种图案和尺寸生长。

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