Kerk Yi Jing, Jameel Aysha, Xing Xin-Hui, Zhang Chong
Institute of Biochemical Engineering Department of Chemical Engineering, Tsinghua University Beijing China.
MOE Key Laboratory of Industrial Biocatalysis Department of Chemical Engineering, Tsinghua University Beijing China.
Eng Biol. 2021 Oct 11;5(4):103-119. doi: 10.1049/enb2.12015. eCollection 2021 Dec.
Microfluidic devices with superior microscale fluid manipulation ability and large integration flexibility offer great advantages of high throughput, parallelisation and multifunctional automation. Such features have been extensively utilised to facilitate cell culture processes such as cell capturing and culturing under controllable and monitored conditions for cell-based assays. Incorporating functional components and microfabricated configurations offered different levels of fluid control and cell manipulation strategies to meet diverse culture demands. This review will discuss the advances of single-phase flow and droplet-based integrated microfluidic suspension cell culture systems and their applications for accelerated bioprocess development, high-throughput cell selection, drug screening and scientific research to insight cell biology. Challenges and future prospects for this dynamically developing field are also highlighted.
具有卓越微尺度流体操控能力和高度集成灵活性的微流控装置,具备高通量、并行化和多功能自动化等突出优势。这些特性已被广泛应用于促进细胞培养过程,例如在可控且可监测的条件下进行细胞捕获和培养,以用于基于细胞的分析。整合功能组件和微加工结构提供了不同程度的流体控制和细胞操控策略,以满足多样化的培养需求。本综述将讨论单相流和基于液滴的集成微流控悬浮细胞培养系统的进展,以及它们在加速生物工艺开发、高通量细胞筛选、药物筛选和洞察细胞生物学的科学研究中的应用。还将突出这一动态发展领域面临的挑战和未来前景。