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首页> 外文期刊>Coatings >A New Sterilization Strategy Using TiO2 Nanotubes for Production of Free Radicals that Eliminate Viruses and Application of a Treatment Strategy to Combat Infections Caused by Emerging SARS-CoV-2 during the COVID-19 Pandemic
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A New Sterilization Strategy Using TiO2 Nanotubes for Production of Free Radicals that Eliminate Viruses and Application of a Treatment Strategy to Combat Infections Caused by Emerging SARS-CoV-2 during the COVID-19 Pandemic

机译:使用TiO2纳米管生产的新的灭菌策略,用于生产自由基,消除病毒和应用治疗策略,在Covid-19流行期间对新兴SARS-COV-2产生的感染进行打击感染

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Synthesized titanium oxide nanoparticles (TiO2-NPs) nanotubes were used for the disinfection of new emerging corona virus-19 (SARS-CoV-2) in this study. The newly synthesized TiO2-NPs (nanotubes) were characterized by chemical spectroscopic analysis Fourier-transform infrared spectroscopy and ultraviolet FT-IR and UV. The chemical purity and Zeta potential distribution of the TiO2-NPs (nanotubes) were evaluated to confirm their nano-range, and their surface morphology was determined by scanning electron microscopy (SEM), transmission electron microscopy (TEM), high-resolution transmission electron microscopy (HR-TEM), and energy dispersive X-ray analysis (EDX). The antiviral activity of the TiO2-NPs (nanotubes) against SARS-CoV-2 was evaluated using 10% (Dimethyl sulfoxide) DMSO and dist.H2O using a cytotoxicity assay and inhibitory concentration assay (to determine the cytotoxic half concentration CC50 and half maximal inhibitory concentration IC50). The current results confirmed that TiO2-NPs exhibit strong anti-SARS-CoV-2 activity at very low cytotoxic concentrations in vitro with a non-significant selectivity index (CC50/IC50 ≤ 1). The obtained results indicate that TiO2-NPs and nanotubes have potent antiviral activity at a very low concentrations (IC50 = 568.6 ng/mL), with a weak cytotoxic effect on the cellular host (CC50 = 399.1 ng/mL). Thus, we highly recommend the use of TiO2-NPs (nanotubes) in vitro and in wall coatings as a potent disinfectant to combat SARS-CoV-2 with little irritation of the cellular hosts. Furthermore, we also recommend more and excessive prospective studies on the complexation of natural active or natural compounds with TiO2-NPs (nanotubes) to minimize their cytotoxicity, enhance their antiviral activity, and increase their inhibition of SARS-CoV-2.
机译:合成的氧化钛纳米颗粒(TiO2-NPS)纳米管用于本研究中新兴电晕病毒-19(SARS-COV-2)的消毒。通过化学光谱分析傅里叶变换红外光谱和紫外线FT-IR和UV,以新合成的TiO2-NPS(纳米管)特征在于化学光谱分析。评价TiO2-NPS(纳米管)的化学纯度和Zeta电位分布以确认它们的纳米范围,并且通过扫描电子显微镜(SEM),透射电子显微镜(TEM),高分辨率传输电子测定它们的表面形态显微镜(HR-TEM)和能量分散X射线分析(EDX)。使用细胞毒性测定和抑制浓度测定法评价抗SARS-COV-2对SARS-COV-2的抗病毒活性,并使用细胞毒性测定和抑制浓度测定(确定细胞毒性半浓度CC50和半最大抑制浓度IC50)。目前的结果证实,TiO2-NPS在非常低的细胞毒性浓度下在体外具有非显着选择性指数(CC50 /IC50≤1)的强抗SARS-COV-2活性。所得结果表明,TiO2-NPS和纳米管在非常低浓度(IC50 = 568.6ng / ml)下具有有效的抗病毒活性,对细胞宿主的细胞毒性效应弱(CC50 = 399.1ng / ml)。因此,我们强烈建议在体外和壁涂层中使用TiO2-NPS(纳米管)作为对抗SARS-COV-2的有效消毒,几乎没有刺激细胞宿主。此外,我们还建议更多且过度的前瞻性研究与TiO2-NPS(纳米管)的天然活性或天然化合物的络合络合,以最大限度地减少其细胞毒性,增强其抗病毒活性,并增加其对SARS-COV-2的抑制。

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