Ding Lin, Oh Steve, Shrestha Jesus, Lam Alan, Wang Yaqing, Radfar Payar, Warkiani Majid Ebrahimi
Smart MCs Pty Ltd, Ultimo, Sydney, 2007, Australia.
Stem Cell Group, Bioprocessing Technology Institute, Agency for Science, Technology and Research (A*STAR), Singapore, 138668, Singapore.
Biotechnol Adv. 2023 Dec;69:108271. doi: 10.1016/j.biotechadv.2023.108271. Epub 2023 Oct 14.
Stem cells are specialised cells characterised by their unique ability to both self-renew and transform into a wide array of specialised cell types. The widespread interest in stem cells for regenerative medicine and cultivated meat has led to a significant demand for these cells in both research and practical applications. Despite the growing need for stem cell manufacturing, the industry faces significant obstacles, including high costs for equipment and maintenance, complicated operation, and low product quality and yield. Microfluidic technology presents a promising solution to the abovementioned challenges. As an innovative approach for manipulating liquids and cells within microchannels, microfluidics offers a plethora of advantages at an industrial scale. These benefits encompass low setup costs, ease of operation and multiplexing, minimal energy consumption, and the added advantage of being labour-free. This review presents a thorough examination of the prominent microfluidic technologies employed in stem cell research and explores their promising applications in the burgeoning stem cell industry. It thoroughly examines how microfluidics can enhance cell harvesting from tissue samples, facilitate mixing and cryopreservation, streamline microcarrier production, and efficiently conduct cell separation, purification, washing, and final cell formulation post-culture.
干细胞是一类特殊的细胞,其特点是具有自我更新以及转化为多种特化细胞类型的独特能力。再生医学和人造肉领域对干细胞的广泛关注使得科研和实际应用中对这些细胞的需求大幅增加。尽管干细胞制造的需求不断增长,但该行业面临着重大障碍,包括设备和维护成本高昂、操作复杂以及产品质量和产量较低。微流控技术为上述挑战提供了一个有前景的解决方案。作为一种在微通道内操控液体和细胞的创新方法,微流控技术在工业规模上具有诸多优势。这些优势包括设置成本低、易于操作和多重操作、能耗极小,以及无需人工的额外优势。本综述全面考察了干细胞研究中使用的主要微流控技术,并探讨了它们在新兴的干细胞产业中的潜在应用。它深入研究了微流控技术如何能够增强从组织样本中获取细胞的能力、促进混合和冷冻保存、简化微载体生产,以及在细胞培养后高效进行细胞分离、纯化、洗涤和最终细胞制剂制备。