Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW UK.
Angew Chem Int Ed Engl. 2010 Aug 9;49(34):5846-68. doi: 10.1002/anie.200906653.
Microdroplets in microfluidics offer a great number of opportunities in chemical and biological research. They provide a compartment in which species or reactions can be isolated, they are monodisperse and therefore suitable for quantitative studies, they offer the possibility to work with extremely small volumes, single cells, or single molecules, and are suitable for high-throughput experiments. The aim of this Review is to show the importance of these features in enabling new experiments in biology and chemistry. The recent advances in device fabrication are highlighted as are the remaining technological challenges. Examples are presented to show how compartmentalization, monodispersity, single-molecule sensitivity, and high throughput have been exploited in experiments that would have been extremely difficult outside the microfluidics platform.
微流控中的微滴在化学和生物研究中提供了大量的机会。它们提供了一个隔室,其中可以将物种或反应隔离开来;它们是单分散的,因此适合定量研究;它们提供了处理极小体积、单细胞或单分子的可能性,并且适合高通量实验。本综述的目的是展示这些特性在生物学和化学中实现新实验的重要性。突出了器件制造的最新进展,以及仍然存在的技术挑战。展示了如何在微流控平台之外极其困难的实验中利用分隔、单分散性、单分子灵敏度和高通量。