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电极化纳米表面会产生具有反应活性的含氧和含氯物种,从而使微生物失活。

Electrically polarized nanoscale surfaces generate reactive oxygenated and chlorinated species for deactivation of microorganisms.

机构信息

School of Chemical and Biomolecular Sciences, Southern Illinois University, Carbondale, IL 62901, USA.

Carbondale High School, Carbondale, IL 62901, USA.

出版信息

Sci Adv. 2024 Aug 2;10(31):eado5555. doi: 10.1126/sciadv.ado5555.

Abstract

Because of the decreasing supply of new antibiotics, recent outbreaks of infectious diseases, and the emergence of antibiotic-resistant microorganisms, it is imperative to develop new effective strategies for deactivating a broad spectrum of microorganisms and viruses. We have implemented electrically polarized nanoscale metallic (ENM) coatings that deactivate a wide range of microorganisms including Gram-negative and Gram-positive bacteria with greater than 6-log reduction in less than 10 minutes of treatment. The electrically polarized devices were also effective in deactivating lentivirus and . The key to the high deactivation effectiveness of ENM devices is electrochemical production of micromolar cuprous ions, which mediated reduction of oxygen to hydrogen peroxide. Formation of highly damaging species, hydroxyl radicals and hypochlorous acid, from hydrogen peroxide contributed to antimicrobial properties of the ENM devices. The electric polarization of nanoscale coatings represents an unconventional tool for deactivating a broad spectrum of microorganisms through in situ production of reactive oxygenated and chlorinated species.

摘要

由于新抗生素的供应减少、传染病的最近爆发以及抗生素耐药微生物的出现,开发新的有效策略来灭活广谱微生物和病毒势在必行。我们已经实施了电极化纳米级金属(ENM)涂层,这些涂层可以在不到 10 分钟的治疗时间内使包括革兰氏阴性和革兰氏阳性细菌在内的多种微生物失活,减少超过 6 个对数级。电极化装置也能有效地使慢病毒和 HIV 失活。ENM 装置高灭活效率的关键是电化学产生毫摩尔浓度的亚铜离子,从而介导氧气还原为过氧化氢。过氧化氢形成的高损伤性物质,羟基自由基和次氯酸,为 ENM 装置的抗菌特性做出了贡献。纳米级涂层的电极化通过原位产生活性氧化和氯化物质,代表了一种用于灭活广谱微生物的非传统工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8acd/11636998/1d23b350e718/sciadv.ado5555-f1.jpg

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