DeNies Maxwell S, Liu Allen P, Schnell Santiago
Cellular and Molecular Biology Graduate Program, University of Michigan Medical School, Ann Arbor, Michigan, USA.
Department of Mechanical Engineering, University of Michigan, Ann Arbor, Michigan, USA.
Biomol Concepts. 2020 Jan 24;11(1):23-31. doi: 10.1515/bmc-2020-0003.
The ability to construct a functional system from its individual components is foundational to understanding how it works. Synthetic biology is a broad field that draws from principles of engineering and computer science to create new biological systems or parts with novel function. While this has drawn well-deserved acclaim within the biotechnology community, application of synthetic biology methodologies to study biological systems has potential to fundamentally change how biomedical research is conducted by providing researchers with improved experimental control. While the concepts behind synthetic biology are not new, we present evidence supporting why the current research environment is conducive for integration of synthetic biology approaches within biomedical research. In this perspective we explore the idea of synthetic biology as a discovery science research tool and provide examples of both top-down and bottom-up approaches that have already been used to answer important physiology questions at both the organismal and molecular level.
从其各个组件构建功能系统的能力是理解其工作原理的基础。合成生物学是一个广泛的领域,它借鉴工程学和计算机科学原理来创建具有新功能的新生物系统或部件。虽然这在生物技术界赢得了应有的赞誉,但将合成生物学方法应用于生物系统研究有可能从根本上改变生物医学研究的开展方式,为研究人员提供更好的实验控制。虽然合成生物学背后的概念并不新鲜,但我们提供证据支持为什么当前的研究环境有利于将合成生物学方法整合到生物医学研究中。在这个视角中,我们探讨合成生物学作为一种发现科学研究工具的理念,并提供已用于在机体和分子水平回答重要生理学问题的自上而下和自下而上方法的示例。