Zhang Caiyun, Zeng Yi, Xu Na, Zhang Zhiling
Institute of Biology and Medicine, College of Life Sciences and Health, Wuhan University of Science and Technology, Wuhan 430065, Hubei, China.
College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, Hubei, China.
Sheng Wu Gong Cheng Xue Bao. 2023 Jan 25;39(1):74-85. doi: 10.13345/j.cjb.220341.
Droplet microfluidics technology offers refined control over the flows of multiple fluids in micro/nano-scale, enabling fabrication of micro/nano-droplets with precisely adjustable structures and compositions in a high-throughput manner. With the combination of proper hydrogel materials and preparation methods, single or multiple cells can be efficiently encapsulated into hydrogels to produce cell-loaded hydrogel microspheres. The cell-loaded hydrogel microspheres can provide a three-dimensional, relatively independent and controllable microenvironment for cell proliferation and differentiation, which is of great value for three-dimensional cell culture, tissue engineering and regenerative medicine, stem cell research, single cell study and many other biological science fields. In this review, the preparation methods of cell-loaded hydrogel microspheres based on droplet microfluidics and its applications in biomedical field are summarized and future prospects are proposed.
微滴微流控技术能够在微纳尺度上对多种流体的流动进行精确控制,从而能够以高通量的方式制造出结构和成分可精确调节的微纳液滴。通过将合适的水凝胶材料与制备方法相结合,可以将单个或多个细胞有效地封装到水凝胶中,以制备负载细胞的水凝胶微球。负载细胞的水凝胶微球能够为细胞增殖和分化提供一个三维的、相对独立且可控的微环境,这对于三维细胞培养、组织工程与再生医学、干细胞研究、单细胞研究以及许多其他生物科学领域都具有重要价值。在这篇综述中,总结了基于微滴微流控技术的负载细胞水凝胶微球的制备方法及其在生物医学领域的应用,并提出了未来展望。