Synthetic Biology: Approaches, Opportunities, Applications and Challenges

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引用次数: 3

Abstract

Synthetic biology (SynBio) is a very vast field of research that produces new biological parts, appliances, and systems. It is the application of engineering principles to design and construct new bio-based biologicals, devices and systems that exhibit functions not present in nature or to redesign the existing systems to perform specific tasks. Synthetic biology varies from other disciplines including system biology, biotechnology and genetic engineering. For instance, while system biology focuses on obtaining a quantitative understanding of the naturally existing biology systems, the synthetic biology focuses on engineering, designing, and synthesis of new novel biological functions utilizing the biological information drawn from systems biology analysis. SB utilizes computer algorithms to alter genetic sequence before synthesizing them in the laboratory. Moreover, SB employed gene shuffling and refactoring tools that may alter thousands of genetic elements of an organism at once. In the present article, we aim to discuss the basic approaches of synthetic biology. Furthermore, the application of synthetic biology on biomedical science, drug discovery development, bioenergy and agriculture will also be discussed. Finally the challenges facing the researchers in the field of synthetic biology such as those technical, ethical and safety will be also highlighted.
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合成生物学:途径、机遇、应用和挑战
合成生物学(SynBio)是一个非常广阔的研究领域,它生产新的生物部件、设备和系统。它是应用工程原理来设计和构建新的生物基生物制品、设备和系统,这些生物制品、设备和系统表现出自然界不存在的功能,或重新设计现有系统以执行特定任务。合成生物学不同于其他学科,包括系统生物学、生物技术和基因工程。例如,系统生物学侧重于对自然存在的生物系统进行定量理解,而合成生物学则侧重于利用从系统生物学分析中获得的生物信息进行工程、设计和合成新的生物功能。在实验室合成之前,SB利用计算机算法改变基因序列。此外,合成生物学使用基因重组和重构工具,可以一次改变生物体的数千个遗传元素。在本文中,我们旨在讨论合成生物学的基本方法。此外,还将讨论合成生物学在生物医学科学、药物发现开发、生物能源和农业方面的应用。最后还将重点介绍合成生物学研究人员在技术、伦理和安全等方面面临的挑战。
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