Faculty of Medicine, Dentistry, & Health Sciences, The University of Melbourne, VIC 3010, Australia.
Small. 2014 Dec 10;10(23):4810-26. doi: 10.1002/smll.201401444. Epub 2014 Sep 19.
Intercellular signalling has been identified as a highly complex process, responsible for orchestrating many physiological functions. While conventional methods of investigation have been useful, their limitations are impeding further development. Microfluidics offers an opportunity to overcome some of these limitations. Most notably, microfluidic systems can emulate the in-vivo environments. Further, they enable exceptionally precise control of the microenvironment, allowing complex mechanisms to be selectively isolated and studied in detail. There has thus been a growing adoption of microfluidic platforms for investigation of cell signalling mechanisms. This review provides an overview of the different signalling mechanisms and discusses the methods used to study them, with a focus on the microfluidic devices developed for this purpose.
细胞间信号转导被认为是一个高度复杂的过程,负责协调许多生理功能。虽然传统的研究方法很有用,但它们的局限性阻碍了进一步的发展。微流控技术提供了克服这些限制的机会。最值得注意的是,微流控系统可以模拟体内环境。此外,它们能够非常精确地控制微环境,允许复杂的机制被选择性地分离出来并详细研究。因此,微流控平台越来越多地被用于研究细胞信号转导机制。本文综述了不同的信号转导机制,并讨论了用于研究这些机制的方法,重点介绍了为此目的开发的微流控器件。