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工程原细胞:自组装与纳米级生产线的前景

Engineering protocells: prospects for self-assembly and nanoscale production-lines.

作者信息

Miller David M, Gulbis Jacqueline M

机构信息

The Walter and Eliza Hall Institute of Medical Research, Parkville VIC 3052, Australia.

Department of Medical Biology, The University of Melbourne, Parkville VIC 3052, Australia.

出版信息

Life (Basel). 2015 Mar 25;5(2):1019-53. doi: 10.3390/life5021019.

Abstract

The increasing ease of producing nucleic acids and proteins to specification offers potential for design and fabrication of artificial synthetic "organisms" with a myriad of possible capabilities. The prospects for these synthetic organisms are significant, with potential applications in diverse fields including synthesis of pharmaceuticals, sources of renewable fuel and environmental cleanup. Until now, artificial cell technology has been largely restricted to the modification and metabolic engineering of living unicellular organisms. This review discusses emerging possibilities for developing synthetic protocell "machines" assembled entirely from individual biological components. We describe a host of recent technological advances that could potentially be harnessed in design and construction of synthetic protocells, some of which have already been utilized toward these ends. More elaborate designs include options for building self-assembling machines by incorporating cellular transport and assembly machinery. We also discuss production in miniature, using microfluidic production lines. While there are still many unknowns in the design, engineering and optimization of protocells, current technologies are now tantalizingly close to the capabilities required to build the first prototype protocells with potential real-world applications.

摘要

按照特定规格生产核酸和蛋白质变得越来越容易,这为设计和制造具有无数可能能力的人工合成“生物体”提供了潜力。这些合成生物体的前景十分广阔,在包括药物合成、可再生燃料来源和环境清理在内的多个领域都有潜在应用。到目前为止,人工细胞技术在很大程度上局限于对活的单细胞生物体进行改造和代谢工程。本综述讨论了开发完全由单个生物组件组装而成的合成原细胞“机器”的新可能性。我们描述了一系列最近的技术进展,这些进展有可能用于合成原细胞的设计和构建,其中一些已经朝着这些目标得到了应用。更精细的设计包括通过整合细胞运输和组装机制来构建自组装机器的选项。我们还讨论了使用微流生产线进行微型生产。虽然在原细胞的设计、工程和优化方面仍有许多未知之处,但当前技术现在已非常接近构建具有潜在实际应用的首个原细胞原型所需的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5936/4500129/89121266e8df/life-05-01019-g001.jpg

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