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Virus Inactivation in Water Using Laser-Induced Graphene Filters

机译:使用激光诱导的石墨烯过滤器在水中灭活病毒

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摘要

Interest in the pathogenesis, detection, and prevention of viral infections has increased broadly in many fields of research over the past year. The development of water treatment technology to combat viral infection by inactivation or disinfection might play a key role in infection prevention in places where drinking water sources are biologically contaminated. Laser-induced graphene (LIG) has antimicrobial and antifouling surface effects mainly because of its electrochemical properties and texture, and LIG-based water filters have been used for the inactivation of bacteria. However, the antiviral activity of LIG-based filters has not yet been explored. Here we show that LIG filters also have antiviral effects by applying electrical potential during filtration of the model prototypic poxvirus Vaccinia lister. This antiviral activity of the LIG filters was compared with its antibacterial activity, which showed that higher voltages were required for the inactivation of viruses compared to that of bacteria. The generation of reactive oxygen species, along with surface electrical effects, played a role in the mechanism of virus inactivation. This new property of LIG highlights its potential for use in water and wastewater treatment for the electrochemical disinfection of various pathogenic microorganisms, including bacteria and viruses.
机译:在过去一年的许多研究领域,对病理发生,检测和预防病毒感染的兴趣在广泛上升。通过灭活或消毒来解决病毒感染的水处理技术的发展可能在饮用水来源生物污染的地方感染预防的关键作用。激光诱导的石墨烯(LIG)具有抗微生物和防污表面效果,主要是因为其电化学性质和质地,并且基于LIG的水过滤器已被用于灭活细菌。然而,尚未探索基于LIG的过滤器的抗病毒活性。在这里,我们表明LIG过滤器通过在模型原型POXVIRUS痘苗主义者的过滤期间施加电势也具有抗病毒效应。将LIG过滤器的这种抗病毒活性与其抗菌活性进行比较,这表明与细菌相比,病毒的灭活需要较高的电压。反应性氧物种以及表面电效应的产生在病毒失活机制中起作用。 Lig的这种新性质凸显了水和废水处理的可能性,用于各种致病微生物的电化学消毒,包括细菌和病毒。

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