Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.
Lab Chip. 2015 Jun 7;15(11):2379-87. doi: 10.1039/c5lc00239g.
Cell-containing hydrogel modules as cell-hydrogel microunits for creating a physiologically relevant 3D in vivo-like microenvironment with multiple cell types and unique extracellular matrix (ECM) compositions facilitate long-term cell maintenance and bioassays. To date, there have been many important advances in microfluidic bioassays, which incorporate hydrogel scaffolds into surface-accessible microchambers, driven by the strong demand for the application of spatiotemporally defined biochemical stimuli to construct in vivo-like conditions and perform real-time imaging of cell-matrix interactions. In keeping with the trend of fostering collaborations among biologists, clinicians, and microfluidic engineers, it is essential to create a simpler approach for coupling cell-containing hydrogel modules and an automated bioassay platform in a user-friendly format. In this article, we review recent progress in hydrogel-incorporated microfluidics for long-term cell maintenance and discuss some of the simpler and user-friendly 3D bioassay techniques combined with cell-containing hydrogel modules that can be applied to mutually beneficial collaborations with non-engineers. We anticipate that this modular and user-friendly format interfaced with existing laboratory infrastructure will help address several clinical questions in ways that extend well beyond the current 2D cell-culture systems.
细胞水凝胶模块作为细胞-水凝胶微单元,可创建具有多种细胞类型和独特细胞外基质 (ECM) 组成的生理相关的 3D 类活体微环境,有利于长期细胞维持和生物测定。迄今为止,微流控生物测定已经取得了许多重要进展,将水凝胶支架整合到表面可访问的微腔中,这是由于强烈需要应用时空定义的生化刺激来构建类活体条件并实时成像细胞-基质相互作用。为了顺应促进生物学家、临床医生和微流控工程师之间合作的趋势,以用户友好的格式创建一种更简单的方法来结合含有细胞的水凝胶模块和自动化生物测定平台是至关重要的。在本文中,我们回顾了用于长期细胞维持的水凝胶微流控技术的最新进展,并讨论了一些更简单和用户友好的 3D 生物测定技术,这些技术与含有细胞的水凝胶模块相结合,可以应用于与非工程师的互利合作。我们预计,这种模块化和用户友好的格式与现有的实验室基础设施接口,将有助于以超越当前 2D 细胞培养系统的方式解决几个临床问题。