Nan Lang, Cao Yang, Yuan Shuai, Shum Ho Cheung
Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Department of Electrical and Electronic Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China.
Microsyst Nanoeng. 2020 Sep 7;6:70. doi: 10.1038/s41378-020-0180-0. eCollection 2020.
Aqueous two-phase system (ATPS) droplets have demonstrated superior compatibility over conventional water-in-oil droplets for various biological assays. However, the ultralow interfacial tension hampers efficient and stable droplet generation, limiting further development and more extensive use of such approaches. Here, we present a simple strategy to employ oil as a transient medium for ATPS droplet generation. Two methods based on passive flow focusing and active pico-injection are demonstrated to generate water-water-oil double emulsions, achieving a high generation frequency of ~2.4 kHz. Through evaporation of the oil to break the double emulsions, the aqueous core can be released to form uniform-sized water-in-water droplets. Moreover, this technique can be used to fabricate aqueous microgels, and the introduction of the oil medium enables integration of droplet sorting to produce single-cell-laden hydrogels with a harvest rate of over 90%. We believe that the demonstrated high-throughput generation and sorting of ATPS droplets represent an important tool to advance droplet-based tissue engineering and single-cell analyses.
双水相体系(ATPS)液滴在各种生物学检测中已显示出比传统油包水液滴具有更好的兼容性。然而,超低的界面张力阻碍了高效稳定的液滴生成,限制了此类方法的进一步发展和更广泛应用。在此,我们提出一种简单策略,即采用油作为ATPS液滴生成的瞬态介质。基于被动流动聚焦和主动皮升注射的两种方法被证明可生成水 - 水 - 油双乳液,实现了约2.4 kHz的高生成频率。通过油的蒸发来打破双乳液,水相核心可被释放以形成尺寸均匀的水包水液滴。此外,该技术可用于制造水性微凝胶,引入油介质能够整合液滴分选,以超过90%的收获率生产负载单细胞的水凝胶。我们认为,所展示的ATPS液滴的高通量生成和分选是推进基于液滴的组织工程和单细胞分析的重要工具。