Department of Chemistry, University of Victoria, Victoria, BC, Canada.
Trends Pharmacol Sci. 2021 Jul;42(7):518-526. doi: 10.1016/j.tips.2021.04.009. Epub 2021 May 13.
There is a point in the evolution of every new technology when questions need to be asked regarding its usefulness and impact. Although microfluidic technologies have drastically decreased the scales at which laboratory processes can be performed and have enabled scientific advances that would have otherwise not been possible, it is time to consider whether these technologies are more disruptive than enabling. Here, my aims are to introduce researchers in the broad fields of drug discovery and development to the advantages and disadvantages of microfluidic technologies, to highlight current work showing how microfluidic technologies can be used at different stages in the drug discovery and development process, to discuss how we can transfer academic breakthroughs in the field of microfluidic technologies to industrial environments, and to examine whether microfluidic technologies have the potential to cause a fundamental paradigm shift in the way that drug discovery and development occurs.
在每一项新技术的发展过程中,都有一个时刻需要考虑其有用性和影响。虽然微流控技术极大地降低了实验室过程可以进行的规模,并使原本不可能的科学进步成为可能,但现在是时候考虑这些技术是否具有更大的破坏性而不是启发性了。在这里,我的目的是向药物发现和开发领域的广泛研究人员介绍微流控技术的优缺点,强调当前的工作表明微流控技术如何可以在药物发现和开发过程的不同阶段使用,讨论我们如何将微流控技术领域的学术突破转移到工业环境中,并研究微流控技术是否有可能从根本上改变药物发现和开发的方式。