Liu Chang, Xu Xiaoyu
College of Chemistry and Material Science Shandong Agricultural University Taian China.
Smart Med. 2025 Apr 4;4(2):e70002. doi: 10.1002/smmd.70002. eCollection 2025 Jun.
Droplet microfluidics has emerged as a breakthrough technology that is changing our comprehension of single-cell and their associated research. By separating individual cells within tiny droplets, ranging from nanoliters to picoliters using microfluidic devices, this innovative approach has revolutionized investigations at the single-cell level. Each of these droplets serves as a distinct experimental reaction vessel, enabling thorough exploration of cellular phenotypic variations, interactions between cells or cell-microorganisms as well as genomic insights. This review paper presents a comprehensive overview of the current state-of-the-art in droplet microfluidics, which has made single-cell analysis a practical approach for biological research. The review delves into the technological advancements in single-cell encapsulation techniques within droplet microfluidics, elucidating their applications in high-throughput single-cell screening, intercellular and cell-microorganism interactions, and genomic analysis. Furthermore, it discusses the advantages and constraints of droplet microfluidic technology, shedding light on critical factors such as throughput and versatile integration. Lastly, the paper outlines the potential avenues for future research in this rapidly evolving field.
微滴微流控技术已成为一项突破性技术,正在改变我们对单细胞及其相关研究的理解。通过使用微流控设备在从纳升到皮升的微小液滴中分离单个细胞,这种创新方法彻底改变了单细胞水平的研究。这些液滴中的每一个都充当一个独特的实验反应容器,能够深入探索细胞表型变异、细胞间或细胞与微生物之间的相互作用以及基因组见解。这篇综述文章全面概述了微滴微流控技术的当前最新状态,该技术已使单细胞分析成为生物学研究的一种实用方法。该综述深入探讨了微滴微流控技术中单细胞封装技术的技术进步,阐明了它们在高通量单细胞筛选、细胞间和细胞与微生物相互作用以及基因组分析中的应用。此外,它还讨论了微滴微流控技术的优点和局限性,揭示了诸如通量和多功能集成等关键因素。最后,本文概述了这个快速发展领域未来研究的潜在途径。