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Bio‐Orthogonal Bacterial Reactor for Remission of Heavy Metal Poisoning and ROS Elimination

机译:减少重金属中毒和消除ROS的生物正交细菌反应器

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摘要

Multitudinous industrial products in daily life put human health at risk of heavy metal exposure, and natural bacteria have displayed superior performance in bioadsorption and biodegradation of heavy metal. In this study, a bacteria‐based bioreactor is developed to precisely bioadsorb lead (Pb) ions, eliminate concomitant reactive oxygen species (ROS), and remit the injury of acute/chronic Pb poisoning. A nonpathogenic bacteria MG1655 (Bac) is decorated with antioxidative cerium oxide nanoparticles (Ceria) on the surface through a bio‐orthogonal reaction, and the complex bioreactor could spontaneously aggregate in organs with high concentration of Pb. Furthermore, the excess Pb is bioadsorbed by bacteria and the concomitant ROS is eliminated by Ceria nanoparticles. In vitro and in vivo studies demonstrate that this integral biotic/abiotic hybrid bioreactor successfully realizes detoxication of Pb and reparation of injury, also accompanied with inappreciable side effects.
机译:日常生活中的多种工业产品使人类健康面临重金属暴露的风险,天然细菌在重金属的生物吸附和生物降解方面表现出卓越的性能。在这项研究中,开发了一种基于细菌的生物反应器,以精确地生物吸附铅(Pb)离子,消除伴随的活性氧(ROS)并缓解急性/慢性Pb中毒的伤害。非致病性细菌MG1655(Bac)通过生物正交反应在表面饰有抗氧化氧化铈纳米颗粒(Ceria),并且复杂的生物反应器可以自发聚集在高浓度Pb的器官中。此外,过量的Pb被细菌生物吸附,而伴随的ROS被二氧化铈纳米颗粒消除。体外和体内研究表明,这种不可或缺的生物/非生物混合生物反应器成功实现了Pb的解毒和损伤修复,并且还伴有难以察觉的副作用。

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