Bae Chae Yun, Son Jaejung, Kim Hail, Park Je-Kyun
Department of Bio and Brain Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Sci Rep. 2017 May 2;7(1):1289. doi: 10.1038/s41598-017-01363-6.
Hydrogel sheets have emerged as a promising biomaterial scaffold for the encapsulation and transfer of multicellular structures. Although the improvement of the chemical interactions and the design of micro-scaled geometry have contributed to the development of multipurpose hydrogel scaffolds, the application of hydrogel sheets to assess multicellular structures is still challenging. To expand the technical applicability of hydrogel sheets, we here demonstrate that a single layer of the hydrogel sheet can be integrated as an interposed module in a microfluidic device for multicellular analysis. As a cell culture unit, encapsulated pancreatic insulinoma (MIN6) cells in the hydrogel sheet were labeled and examined via multiple microchannels. After obtaining simultaneously multi-labeled cells in the hydrogel sheet that had been incorporated into the microfluidic device, each modular hydrogel sheet was also recoverable and re-cultured without any distortion. The modular hydrogel sheet can be simply manipulated and conserved as a multicellular module in a three-dimensional (3D) in vitro culture platform. Using the modular concept of hydrogel sheets capable of cell culture and/or assay, an integrated multicellular analysis in the microfluidic device is expected to improve accessibility, scalability, and practicality for end users.
水凝胶片已成为一种用于封装和转移多细胞结构的很有前景的生物材料支架。尽管化学相互作用的改善和微观几何结构的设计推动了多功能水凝胶支架的发展,但将水凝胶片应用于评估多细胞结构仍具有挑战性。为了扩大水凝胶片的技术适用性,我们在此证明,单层水凝胶片可以作为一个插入模块集成到用于多细胞分析的微流控装置中。作为细胞培养单元,水凝胶片中封装的胰腺胰岛素瘤(MIN6)细胞通过多个微通道进行标记和检测。在将已整合到微流控装置中的水凝胶片中同时获得多标记细胞后,每个模块化水凝胶片也可回收并重新培养,且不会有任何变形。模块化水凝胶片可以在三维(3D)体外培养平台中作为多细胞模块进行简单操作和保存。利用能够进行细胞培养和/或检测的水凝胶片的模块化概念,微流控装置中的集成多细胞分析有望提高终端用户的可及性、可扩展性和实用性。