Artificial cell design: reconstructing biology for life science applications.

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Basusree Ghosh
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引用次数: 0

Abstract

Artificial cells are developed to redesign novel biological functions in a programmable and tunable manner. Although it aims to reconstitute living cell features and address 'origin of life' related questions, rapid development over the years has transformed artificial cells into an engineering tool with huge potential in applied biotechnology. Although the application of artificial cells was introduced decades ago as drug carriers, applications in other sectors are relatively new and could become possible with the technological advancement that can modulate its designing principles. Artificial cells are non-living system that includes no prerequisite designing modules for their formation and therefore allow freedom of assembling desired biological machinery within a physical boundary devoid of complex contemporary living-cell counterparts. As stimuli-responsive biomimetic tools, artificial cells are programmed to sense the surrounding, recognise their target, activate its function and perform the defined task. With the advantage of their customised design, artificial cells are being studied in biosensing, drug delivery, anti-cancer therapeutics or artificial photosynthesis type fields. This mini-review highlights those advanced fields where artificial cells with a minimalistic setup are developed as user-defined custom-made microreactors, targeting to reshape our future 'life'.

人工细胞设计:为生命科学应用重建生物学。
人工细胞的开发是为了以可编程和可调整的方式重新设计新的生物功能。虽然人工细胞的目的是重建活细胞特征,解决与 "生命起源 "相关的问题,但多年来的快速发展已使人工细胞成为一种工程工具,在应用生物技术领域具有巨大潜力。虽然人工细胞在几十年前就被用作药物载体,但在其他领域的应用相对较新,随着技术的进步,人工细胞的设计原理也可能发生改变。人造细胞是一种非生命系统,其形成不包含任何先决设计模块,因此可以在一个物理边界内自由组装所需的生物机制,而不像当代活细胞那样复杂。作为刺激响应型生物仿生工具,人工细胞可通过编程感知周围环境、识别目标、激活功能并执行既定任务。人工细胞具有定制设计的优势,目前正在生物传感、药物输送、抗癌治疗或人工光合作用等领域进行研究。这篇微型综述将重点介绍那些先进的领域,在这些领域中,人工细胞以用户定义的定制微反应器的形式进行开发,以重塑我们未来的 "生活"。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
94
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