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Upgrading biomaterials with synthetic biological modules for advanced medical applications

机译:使用合成生物模块升级生物材料以用于高级医学应用

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One key aspect of synthetic biology is the development and characterization of modular biological building blocks that can be assembled to construct integrated cell-based circuits performing computational functions. Likewise, the idea of extracting biological modules from the cellular context has led to the development of in vitro operating systems. This principle has attracted substantial interest to extend the repertoire of functional materials by connecting them with modules derived from synthetic biology. In this respect, synthetic biological switches and sensors, as well as biological targeting or structure modules, have been employed to upgrade functions of polymers and solid inorganic material. The resulting systems hold great promise for a variety of applications in diagnosis, tissue engineering, and drug delivery. This review reflects on the most recent developments and critically discusses challenges concerning in vivo functionality and tolerance that must be addressed to allow the future translation of such synthetic biology-upgraded materials from the bench to the bedside. (C) 2016 Elsevier B.V. All rights reserved.
机译:合成生物学的一个关键方面是模块化生物构件的开发和表征,可以将其组装以构建执行计算功能的基于细胞的集成电路。同样,从细胞环境中提取生物模块的想法导致了体外操作系统的发展。通过将功能材料与合成生物学衍生的模块连接起来,该原理引起了人们极大的兴趣来扩展功能材料的功能范围。在这方面,已经采用合成生物开关和传感器以及生物靶向或结构模块来升级聚合物和固体无机材料的功能。最终的系统在诊断,组织工程和药物输送中的各种应用都具有广阔的前景。这篇综述反映了最新的进展,并严格讨论了有关体内功能和耐受性的挑战,必须解决这些挑战才能使这种合成生物学升级的材料从实验台到床边的未来转化。 (C)2016 Elsevier B.V.保留所有权利。

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