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Bottom-up approaches in synthetic biology and biomaterials for tissue engineering applications

机译:用于组织工程应用的合成生物学和生物材料的自下而上方法

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摘要

Synthetic biologists use engineering principles to design and construct genetic circuits for programming cells with novel functions. A bottom-up approach is commonly used to design and construct genetic circuits by piecing together functional modules that are capable of reprogramming cells with novel behavior. While genetic circuits control cell operations through the tight regulation of gene expression, a diverse array of environmental factors within the extracellular space also has a significant impact on cell behavior. This extracellular space offers an addition route for synthetic biologists to apply their engineering principles to program cell-responsive modules within the extracellular space using biomaterials. In this review, we discuss how taking a bottom-up approach to build genetic circuits using DNA modules can be applied to biomaterials for controlling cell behavior from the extracellular milieu. We suggest that, by collectively controlling intrinsic and extrinsic signals in synthetic biology and biomaterials, tissue engineering outcomes can be improved.
机译:合成生物学家使用工程原理设计和构建遗传电路,以对具有新颖功能的细胞进行编程。自底向上方法通常用于通过将能够重新编程具有新颖行为的细胞的功能模块拼接在一起来设计和构建遗传电路。尽管遗传回路通过基因表达的严格调节来控制细胞的运作,但细胞外空间内各种各样的环境因素也对细胞行为产生重大影响。这种细胞外空间为合成生物学家提供了另一条途径,使他们可以利用生物材料将其工程原理应用于细胞外空间内的细胞反应模块。在这篇综述中,我们讨论了采用自下而上的方法使用DNA模块构建遗传电路的方法如何应用于生物材料,以控制来自细胞外环境的细胞行为。我们建议,通过共同控制合成生物学和生物材料中的内在和外在信号,可以改善组织工程学成果。

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