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载银纳米颗粒的微型机器人在水介质中杀灭细菌。

Microbots Decorated with Silver Nanoparticles Kill Bacteria in Aqueous Media.

机构信息

Max-Planck Institute for Intelligent Systems , Heisenbergstr. 3, 70569 Stuttgart, Germany.

Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology , Baldiri Reixac 10-12, 08028 Barcelona, Spain.

出版信息

ACS Appl Mater Interfaces. 2017 Jul 12;9(27):22093-22100. doi: 10.1021/acsami.7b03006. Epub 2017 Jun 28.

Abstract

Water contamination is one of the most persistent problems of public health. Resistance of some pathogens to conventional disinfectants can require the combination of multiple disinfectants or increased disinfectant doses, which may produce harmful byproducts. Here, we describe an efficient method for disinfecting Escherichia coli and removing the bacteria from contaminated water using water self-propelled Janus microbots decorated with silver nanoparticles (AgNPs). The structure of a spherical Janus microbot consists of a magnesium (Mg) microparticle as a template that also functions as propulsion source by producing hydrogen bubbles when in contact with water, an inner iron (Fe) magnetic layer for their remote guidance and collection, and an outer AgNP-coated gold (Au) layer for bacterial adhesion and improving bactericidal properties. The active motion of microbots increases the chances of the contact of AgNPs on the microbot surface with bacteria, which provokes the selective Ag release in their cytoplasm, and the microbot self-propulsion increases the diffusion of the released Ag ions. In addition, the AgNP-coated Au cap of the microbots has a dual capability of capturing bacteria and then killing them. Thus, we have demonstrated that AgNP-coated Janus microbots are capable of efficiently killing more than 80% of E. coli compared with colloidal AgNPs that killed only less than 35% of E. coli in contaminated water solutions in 15 min. After capture and extermination of bacteria, magnetic properties of the cap allow collection of microbots from water along with the captured dead bacteria, leaving water with no biological contaminants. The presented biocompatible Janus microbots offer an encouraging method for rapid disinfection of water.

摘要

水污染是公共卫生领域最持久的问题之一。一些病原体对传统消毒剂的抵抗力可能需要多种消毒剂的组合或增加消毒剂剂量,这可能会产生有害的副产物。在这里,我们描述了一种使用带有银纳米粒子 (AgNP) 的自推进 Janus 微机器人来消毒大肠杆菌并从受污染的水中去除细菌的有效方法。球形 Janus 微机器人的结构由镁 (Mg) 微球作为模板组成,当与水接触时,Mg 微球作为推进源产生氢气气泡,内部的铁 (Fe) 磁层用于远程引导和收集,以及外部的 AgNP 涂覆的金 (Au) 层用于细菌附着和提高杀菌性能。微机器人的主动运动增加了 AgNP 与微机器人表面接触的机会,这会导致 Ag 在细胞质中选择性释放,而微机器人的自推进会增加释放的 Ag 离子的扩散。此外,微机器人的 AgNP 涂覆的 Au 帽具有捕获细菌然后杀死它们的双重能力。因此,我们已经证明,与胶体 AgNPs 相比,AgNP 涂覆的 Janus 微机器人能够在 15 分钟内有效地杀死超过 80%的大肠杆菌,而胶体 AgNPs 仅能杀死受污染水溶液中不到 35%的大肠杆菌。在捕获和消灭细菌后,帽的磁性允许从水中收集微机器人以及捕获的死细菌,使水没有生物污染物。所提出的生物相容的 Janus 微机器人为快速消毒水提供了一种有希望的方法。

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