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Rapid Fabrication of Hydrogel Microstructures Using UV-Induced Projection Printing

机译:UV诱导投影印刷技术快速制备水凝胶微结构

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Fabrication of hydrogel microstructures has attracted considerable attention. A large number of applications, such as fabricating tissue engineering scaffolds, delivering drugs to diseased tissue, and constructing extracellular matrix for studying cell behaviors, have been introduced. In this article, an ultraviolet (UV)-curing method based on a digital micromirror device (DMD) for fabricating poly(ethylene glycol) diacrylate (PEGDA) hydrogel microstructures was presented. By controlling UV projection in real-time using a DMD as digital dynamic mask instead of a physical mask, polymerization of the pre-polymer solution could be controlled to create custom-designed hydrogel microstructures. Arbitrary microstructures could also be fabricated within several seconds (5 s) using a single-exposure, providing a much higher efficiency than existing methods, while also offering a high degree of flexibility and repeatability. Moreover, different cell chains, which can be used for straightforwardly and effectively studying the cell interaction, were formed by fabricated PEGDA microstructures.
机译:水凝胶微结构的制备引起了相当大的关注。已经引入了许多应用,例如制造组织工程支架,将药物递送到患病组织以及构建用于研究细胞行为的细胞外基质。在本文中,提出了一种基于数字微镜器件(DMD)的紫外线(UV)固化方法,用于制造聚乙二醇(PEG)二丙烯酸酯(PEGDA)水凝胶微结构。通过使用DMD作为数字动态掩模而不是物理掩模实时控制UV投影,可以控制预聚物溶液的聚合,以创建定制设计的水凝胶微结构。也可以使用单次曝光在几秒钟内(<5 s)制造任意微结构,从而提供比现有方法高得多的效率,同时还提供高度的灵活性和可重复性。而且,通过制造的PEGDA微结构形成了可用于直接和有效地研究细胞相互作用的不同细胞链。

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