Department of Chemistry, University of Washington, Seattle, WA, USA.
Department of Biomedical Engineering, Faculty of Engineering, Mahidol University, Nakorn Pathom, Thailand.
Nat Rev Chem. 2023 Jun;7(6):439-455. doi: 10.1038/s41570-023-00483-0. Epub 2023 Apr 17.
Open droplet microfluidic systems manipulate droplets on the picolitre-to-microlitre scale in an open environment. They combine the compartmentalization and control offered by traditional droplet-based microfluidics with the accessibility and ease-of-use of open microfluidics, bringing unique advantages to applications such as combinatorial reactions, droplet analysis and cell culture. Open systems provide direct access to droplets and allow on-demand droplet manipulation within the system without needing pumps or tubes, which makes the systems accessible to biologists without sophisticated setups. Furthermore, these systems can be produced with simple manufacturing and assembly steps that allow for manufacturing at scale and the translation of the method into clinical research. This Review introduces the different types of open droplet microfluidic system, presents the physical concepts leveraged by these systems and highlights key applications.
敞口液滴微流控系统在开放环境中以皮升至微升的规模操控液滴。它们将传统的基于液滴的微流控技术所提供的分隔和控制功能与开放微流控的易接近性和易用性相结合,为组合反应、液滴分析和细胞培养等应用带来了独特的优势。敞口系统可以直接接触液滴,并允许在系统内按需对液滴进行操作,而无需泵或管,这使得生物学家无需复杂的设置即可使用该系统。此外,这些系统可以通过简单的制造和组装步骤进行生产,从而实现大规模制造,并将该方法转化为临床研究。本综述介绍了不同类型的敞口液滴微流控系统,展示了这些系统所利用的物理概念,并重点介绍了关键应用。