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Prospects and applications of synergistic noble metal nanoparticle-bacterial hybrid systems

机译:前景和应用程序协同高贵金属nanoparticle-bacterial混合动力系统

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摘要

Hybrid systems composed of living cells and nanomaterials have been attracting great interest in various fields of research ranging from materials science to biomedicine. In particular, the interfacing of noble metal nanoparticles and bacterial cells in a single architecture aims to generate hybrid systems that combine the unique physicochemical properties of the metals and biological attributes of the microbial cells. While the bacterial cells provide effector and scaffolding functions, the metallic component endows the hybrid system with multifunctional capabilities. This synergistic effort seeks to fabricate living materials with improved functions and new properties that surpass their individual components. Herein, we provide an overview of this research field and the strategies for obtaining hybrid systems, and we summarize recent biological applications, challenges and current prospects in this exciting new arena.
机译:活细胞和组成的混合动力系统纳米材料引起了极大的兴趣从各领域的研究生物医学材料科学。贵金属纳米颗粒和接口细菌细胞在一个架构旨在生成结合独特的混合动力系统金属的物理化学性质微生物细胞的生物属性。而细菌细胞为效应和脚手架功能,金属组件赋予与多功能的混合动力系统功能。制造材料改善生活功能和超越他们的新属性各个组件。这个研究领域的概述策略获得混合动力系统,我们总结最近的生物应用,在这个激动人心的挑战和当前的前景新的舞台。

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