Zhou Xiaoxiang, Zhu Libo, Li Weihao, Liu Quanjun
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, No. 2, Sipailou, Nanjing 210096, People's Republic of China.
Anal Methods. 2022 Mar 24;14(12):1181-1186. doi: 10.1039/d1ay01820e.
Three-dimensional (3D) hydrogel microspheres have attracted increasing attention as cell culture carriers. The system of hydrogel microspheres provides great advantages for cell growth owing to its high surface-to-volume ratio and biocompatible environment. However, an integrated system that includes microsphere generation, microsphere capture and culture together has not been realized yet. Here we present a multifunctional microfluidic device to accomplish the overall process including cell-laden microsphere generation, online demulsification and dynamic-culture. The microfluidic device can produce massive monodispersed alginate microspheres and allows us to immobilize the alginate microspheres and record bacterial growth. Moreover, the microspheres provide a suitable environment through the mechanical properties of soft tissues, leading to high cell viability, proliferation, activity and biocompatibility. We believe that this versatile and biocompatible platform will provide a more reliable analysis tool for tissue engineering and cell therapy.
三维(3D)水凝胶微球作为细胞培养载体已引起越来越多的关注。水凝胶微球系统因其高的表面积与体积比和生物相容的环境为细胞生长提供了巨大优势。然而,一个包括微球生成、微球捕获和培养一体化的系统尚未实现。在此,我们展示一种多功能微流控装置以完成包括载细胞微球生成、在线破乳和动态培养的整个过程。该微流控装置能够产生大量单分散的藻酸盐微球,并使我们能够固定藻酸盐微球并记录细菌生长。此外,微球通过软组织的机械性能提供了一个合适的环境,从而导致高的细胞活力、增殖、活性和生物相容性。我们相信这个多功能且生物相容的平台将为组织工程和细胞治疗提供一个更可靠的分析工具。