Construction of Microenvironment Structures for the Study of Cell Behavior using DMD-based Optical Projection Lithography

Zhixing Ge, Haibo Yu, Wenguang Yang, Lianqing Liu
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Abstract

The construction of the microenvironment is of great importance for the study of cell behaviors such as motility and viability. The morphology and mechanical properties of cells can be affected by the microenvironment and interactions between cells. There have been numerous studies on cell-cell and cell-microenvironment interactions. However, these studies are generally time-consuming and complicated for the following reasons: firstly, constructing the microenvironment is complex, as the microenvironment itself is complicated; secondly, the internal characteristics of different components of the microenvironment are highly variable and difficult to simulate. Using a digital micromirror device (DMD)-based optical projection lithography system, we have developed a new method for cell studies: by employing a digital dynamic mask, poly(ethylene glycol) dimethacrylate (PEGDMA)-based hydrogels could be easily designed with a wide variety of patterns. Those structures can be rationally designed to be functional, as different modules can mimic the microenvironment and restrict the migration of cells. Furthermore, 4% paraformaldehyde can be mixed into the PEGDMA and cured using UV exposure. Paraformaldehyde in hydrogels had a moderate impact on the viability of cells.
基于dmd的光学投影光刻技术用于细胞行为研究的微环境结构构建
微环境的构建对于研究细胞的运动和活力等行为具有重要意义。细胞的形态和力学性能会受到微环境和细胞间相互作用的影响。关于细胞-细胞和细胞-微环境相互作用的研究很多。然而,这些研究通常耗时且复杂,原因如下:首先,微环境的构建是复杂的,因为微环境本身是复杂的;其次,微环境中不同组成部分的内部特征变化很大,难以模拟。利用基于数字微镜装置(DMD)的光学投影光刻系统,我们开发了一种新的细胞研究方法:通过采用数字动态掩模,聚乙二醇二甲基丙烯酸酯(PEGDMA)为基础的水凝胶可以很容易地设计出各种各样的图案。这些结构可以合理地设计成功能性的,因为不同的模块可以模拟微环境并限制细胞的迁移。此外,4%的多聚甲醛可以混入PEGDMA和固化使用紫外线曝光。水凝胶中的多聚甲醛对细胞活力有中等程度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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