Zhang Lexiang, Parvin Rokshana, Chen Mingshuo, Hu Dingmeng, Fan Qihui, Ye Fangfu
Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou, Zhejiang, 325000, China; Zhejiang Engineering Research Center for Tissue Repair Materials, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang, 325000, China.
Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine, Vision and Brain Health), Wenzhou, Zhejiang, 325000, China; Zhejiang Engineering Research Center for Tissue Repair Materials, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang, 325000, China; Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
Biosens Bioelectron. 2023 May 15;228:115213. doi: 10.1016/j.bios.2023.115213. Epub 2023 Mar 8.
Droplet microfluidic technology has revolutionized biomolecular analytical research, as it has the capability to reserve the genotype-to-phenotype linkage and assist for revealing the heterogeneity. Massive and uniform picolitre droplets feature dividing solution to the level that single cell and single molecule in each droplet can be visualized, barcoded, and analyzed. Then, the droplet assays can unfold intensive genomic data, offer high sensitivity, and screen and sort from a large number of combinations or phenotypes. Based on these unique advantages, this review focuses on up-to-date research concerning diverse screening applications utilizing droplet microfluidic technology. The emerging progress of droplet microfluidic technology is first introduced, including efficient and scaling-up in droplets encapsulation, and prevalent batch operations. Then the new implementations of droplet-based digital detection assays and single-cell muti-omics sequencing are briefly examined, along with related applications such as drug susceptibility testing, multiplexing for cancer subtype identification, interactions of virus-to-host, and multimodal and spatiotemporal analysis. Meanwhile, we specialize in droplet-based large-scale combinational screening regarding desired phenotypes, with an emphasis on sorting for immune cells, antibodies, enzymatic properties, and proteins produced by directed evolution methods. Finally, some challenges, deployment and future perspective of droplet microfluidics technology in practice are also discussed.
微滴微流控技术彻底改变了生物分子分析研究,因为它能够保留基因型与表型的联系,并有助于揭示异质性。大量且均匀的皮升级微滴具有将溶液分割到每个微滴中的单细胞和单分子都能被可视化、编码和分析的水平。然后,微滴分析可以展现密集的基因组数据,提供高灵敏度,并从大量组合或表型中进行筛选和分类。基于这些独特优势,本综述聚焦于利用微滴微流控技术进行各种筛选应用的最新研究。首先介绍了微滴微流控技术的新进展,包括微滴封装的高效性和规模化以及普遍的批量操作。然后简要探讨了基于微滴的数字检测分析和单细胞多组学测序的新应用,以及相关应用,如药物敏感性测试、癌症亚型鉴定的多重分析、病毒与宿主的相互作用以及多模态和时空分析。同时,我们专注于基于微滴的针对所需表型的大规模组合筛选,重点是对免疫细胞、抗体、酶特性以及通过定向进化方法产生的蛋白质进行分选。最后,还讨论了微滴微流控技术在实际应用中的一些挑战、部署和未来展望。