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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Mammalian designer cells: Engineering principles and biomedical applications
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Mammalian designer cells: Engineering principles and biomedical applications

机译:哺乳动物设计器单元:工程原理和生物医学应用

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摘要

Biotechnology is a widely interdisciplinary field focusing on the use of living cells or organisms to solve established problems in medicine, food production and agriculture. Synthetic biology, the science of engineering complex biological systems that do not exist in nature, continues to provide the biotechnology industry with tools, technologies and intellectual property leading to improved cellular performance. One key aspect of synthetic biology is the engineering of deliberately reprogrammed designer cells whose behavior can be controlled over time and space. This review discusses the most commonly used techniques to engineer mammalian designer cells; while control elements acting on the transcriptional and translational levels of target gene expression determine the kinetic and dynamic profiles, coupling them to a variety of extracellular stimuli permits their remote control with user-defined trigger signals. Designer mammalian cells with novel or improved biological functions not only directly improve the production efficiency during biopharmaceutical manufacturing but also open the door for cell-based treatment strategies in molecular and translational medicine. In the future, the rational combination of multiple sets of designer cells could permit the construction and regulation of higher-order systems with increased complexity, thereby enabling the molecular reprogramming of tissues, organisms or even populations with highest precision.
机译:生物技术是一个广泛的跨学科领域,致力于利用活细胞或生物解决医学,食品生产和农业中已存在的问题。合成生物学是自然界中不存在的工程复杂生物系统的科学,继续为生物技术产业提供工具,技术和知识产权,从而改善细胞性能。合成生物学的一个关键方面是对故意重新编程的设计器细胞进行工程设计,其行为可以随时间和空间进行控制。这篇评论讨论了最常用的工程化哺乳动物设计细胞的技术。而作用于靶基因表达的转录和翻译水平的控制元件决定了动力学和动态特性,将它们与多种细胞外刺激物结合在一起,即可通过用户定义的触发信号进行远程控制。具有新颖或改良生物学功能的设计哺乳动物细胞,不仅可以直接提高生物药物生产过程中的生产效率,而且还为分子和转化医学中基于细胞的治疗策略打开了大门。将来,多组设计器单元的合理组合可能允许以更高的复杂性构建和调节高阶系统,从而使组织,生物体甚至种群的分子能够以最高精确度进行分子重编程。

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