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Rapid Virucidal Activity of Japanese Saxifraga Species-Derived Condensed Tannins against SARS-CoV-2, Influenza A Virus, and Human Norovirus Surrogate Viruses

机译:日本虎耳草属缩合单宁对SARS-CoV-2、甲型流感病毒和人类诺如病毒替代病毒的快速杀病毒活性

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摘要

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), influenza A virus (IAV), and norovirus are global threats to human health. The application of effective virucidal agents, which contribute to the inactivation of viruses on hands and environmental surfaces, is important to facilitate robust virus infection control measures. Naturally derived virucidal disinfectants have attracted attention owing to their safety and eco-friendly properties. In this study, we showed that multiple Japanese Saxifraga species-derived fractions demonstrated rapid, potent virucidal activity against the SARS-CoV-2 ancestral strain and multiple variant strains, IAV, and two human norovirus surrogates: feline calicivirus (FCV) and murine norovirus (MNV). Condensed tannins were identified as active chemical constituents that play a central role in the virucidal activities of these fractions. At a concentration of 25 mu g/mL, the purified condensed tannin fraction Sst-2R induced significant reductions in the viral titers of the SARS-CoV-2 ancestral strain, IAV, and FCV (reductions of >= 3.13, >= 3.00, and 2.50 log(10) 50 tissue culture infective doses TCID50/mL, respectively) within 10 s of reaction time. Furthermore, at a concentration of 100 mu g/mL, Sst-2R induced a reduction of 1.75 log(10) TCID50/mL in the viral titers of MNV within 1 min. Western blotting and transmission electron microscopy analyses revealed that Sst-2R produced structural abnormalities in viral structural proteins and envelopes, resulting in the destruction of viral particles. Furthermore, Saxifraga species-derived fraction-containing cream showed virucidal activity against multiple viruses within 10 min. Our findings indicate that Saxifraga species-derived fractions containing condensed tannins can be used as disinfectants against multiple viruses on hands and environmental surfaces.IMPORTANCE SARS-CoV-2, IAV, and norovirus are highly contagious pathogens. The use of naturally derived components as novel virucidal/antiviral agents is currently attracting attention. We showed that fractions from extracts of Saxifraga species, in the form of a solution as well as a cream, exerted potent, rapid virucidal activities against SARS-CoV-2, IAV, and surrogates of human norovirus. Condensed tannins were found to play a central role in this activity. The in vitro cytotoxicity of the purified condensed tannin fraction at a concentration that exhibited some extent of virucidal activity was lower than that of 70 ethanol or 2,000 ppm sodium hypochlorite solution, which are popular virucidal disinfectants. Our study suggests that Saxifraga species-derived fractions containing condensed tannins can be used on hands and environmental surfaces as safe virucidal agents against multiple viruses. SARS-CoV-2, IAV, and norovirus are highly contagious pathogens. The use of naturally derived components as novel virucidal/antiviral agents is currently attracting attention.
机译:严重急性呼吸系统综合症冠状病毒 2 (SARS-CoV-2)、甲型流感病毒 (IAV) 和诺如病毒是对人类健康的全球威胁。使用有效的杀病毒剂有助于灭活手部和环境表面的病毒,对于促进强有力的病毒感染控制措施非常重要。天然来源的杀病毒消毒剂因其安全性和环保特性而备受关注。在这项研究中,我们发现多种日本虎耳草物种衍生的组分对 SARS-CoV-2 祖先菌株和多种变异菌株、IAV 和两种人类诺如病毒替代物:猫杯状病毒 (FCV) 和鼠诺如病毒 (MNV) 表现出快速、有效的杀病毒活性。缩合单宁被鉴定为活性化学成分,在这些馏分的杀病毒活性中起着核心作用。在浓度为25 μ g/mL时,纯化的缩合单宁组分Sst-2R诱导SARS-CoV-2祖先菌株、IAV和FCV的病毒滴度显著降低(分别降低>=3.13、>=3.00和2.50 log(10) 50%组织培养感染剂量[TCID50]/mL)在反应时间10 s内。此外,在100 μ g/mL浓度下,Sst-2R诱导MNV病毒滴度在1 min内降低1.75 log(10) TCID50/mL。Western blotting和透射电子显微镜分析显示,Sst-2R在病毒结构蛋白和包膜中产生结构异常,导致病毒颗粒被破坏。此外,虎耳草属来源的含组分乳膏在10分钟内显示出对多种病毒的杀病毒活性。我们的研究结果表明,含有缩合单宁的虎耳草物种衍生部分可用作手部和环境表面上多种病毒的消毒剂。重要性 SARS-CoV-2、IAV 和诺如病毒是高度传染性的病原体。使用天然成分作为新型杀病毒/抗病毒剂目前正引起人们的关注。我们发现,来自虎耳草属提取物的馏分以溶液和乳膏的形式,对 SARS-CoV-2、IAV 和人类诺如病毒的替代物具有有效、快速的杀病毒活性。研究发现,浓缩单宁在这项活动中起着核心作用。纯化的缩合单宁馏分在具有一定程度杀病毒活性的浓度下,其体外细胞毒性低于70%乙醇或2,000 ppm次氯酸钠溶液,后者是常用的杀病毒消毒剂。我们的研究表明,含有缩合单宁的虎耳草物种衍生馏分可以作为针对多种病毒的安全杀病毒剂用于手部和环境表面。SARS-CoV-2、IAV 和诺如病毒是高度传染性的病原体。使用天然成分作为新型杀病毒/抗病毒剂目前正引起人们的关注。

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