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Human Coronavirus 229E Remains Infectious on Common Touch Surface Materials

机译:人类冠状病毒229E在普通触摸表面材料上仍具有感染力

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ABSTRACT The evolution of new and reemerging historic virulent strains of respiratory viruses from animal reservoirs is a significant threat to human health. Inefficient human-to-human transmission of zoonotic strains may initially limit the spread of transmission, but an infection may be contracted by touching contaminated surfaces. Enveloped viruses are often susceptible to environmental stresses, but the human coronaviruses responsible for severe acute respiratory syndrome (SARS) and Middle East respiratory syndrome (MERS) have recently caused increasing concern of contact transmission during outbreaks. We report here that pathogenic human coronavirus 229E remained infectious in a human lung cell culture model following at least 5?days of persistence on a range of common nonbiocidal surface materials, including polytetrafluoroethylene (Teflon; PTFE), polyvinyl chloride (PVC), ceramic tiles, glass, silicone rubber, and stainless steel. We have shown previously that noroviruses are destroyed on copper alloy surfaces. In this new study, human coronavirus 229E was rapidly inactivated on a range of copper alloys (within a few minutes for simulated fingertip contamination) and Cu/Zn brasses were very effective at lower copper concentration. Exposure to copper destroyed the viral genomes and irreversibly affected virus morphology, including disintegration of envelope and dispersal of surface spikes. Cu(I) and Cu(II) moieties were responsible for the inactivation, which was enhanced by reactive oxygen species generation on alloy surfaces, resulting in even faster inactivation than was seen with nonenveloped viruses on copper. Consequently, copper alloy surfaces could be employed in communal areas and at any mass gatherings to help reduce transmission of respiratory viruses from contaminated surfaces and protect the public health. IMPORTANCE Respiratory viruses are responsible for more deaths globally than any other infectious agent. Animal coronaviruses that “host jump” to humans result in severe infections with high mortality, such as severe acute respiratory syndrome (SARS) and, more recently, Middle East respiratory syndrome (MERS). We show here that a closely related human coronavirus, 229E, which causes upper respiratory tract infection in healthy individuals and serious disease in patients with comorbidities, remained infectious on surface materials common to public and domestic areas for several days. The low infectious dose means that this is a significant infection risk to anyone touching a contaminated surface. However, rapid inactivation, irreversible destruction of viral RNA, and massive structural damage were observed in coronavirus exposed to copper and copper alloy surfaces. Incorporation of copper alloy surfaces in conjunction with effective cleaning regimens and good clinical practice could help to control transmission of respiratory coronaviruses, including MERS and SARS.
机译:摘要动物源性呼吸道病毒的新的和重新出现的历史性毒株的进化对人类健康构成重大威胁。人畜共患病毒株在人与人之间的低效传播最初可能会限制传播的传播,但通过接触受污染的表面可能会感染。包膜病毒通常容易受到环境压力的影响,但是最近引起严重急性呼吸综合症(SARS)和中东呼吸综合症(MERS)的人类冠状病毒引起了人们对暴发期间接触传播的日益关注。我们在此报告,在一系列常见的非生物杀伤性表面材料(包括聚四氟乙烯(Teflon; PTFE),聚氯乙烯(PVC),瓷砖)上存在至少5天的持久性后,病原性人冠状病毒229E在人肺细胞培养模型中仍然具有传染性,玻璃,硅橡胶和不锈钢。先前我们已经证明诺如病毒在铜合金表面被破坏。在这项新研究中,人类冠状病毒229E在一系列铜合金上迅速失活(在几分钟内被模拟的指尖污染),而Cu / Zn黄铜在较低的铜浓度下非常有效。暴露于铜会破坏病毒基因组并不可逆转地影响病毒的形态,包括包膜的解体和表面尖峰的散布。 Cu(I)和Cu(II)部分是失活的原因,合金表面活性氧的产生增强了这种失活,导致灭活的速度甚至比铜上无包膜的病毒还要快。因此,铜合金表面可用于公共区域和任何群众聚会,以帮助减少呼吸道病毒从受污染表面传播,并保护公众健康。重要信息呼吸道病毒在全球造成的死亡人数比其他任何感染因素都要多。 “宿主向人跳跃”的动物冠状病毒会导致高死亡率的严重感染,例如严重急性呼吸道综合症(SARS)和最近的中东呼吸综合症(MERS)。我们在这里显示,密切相关的人类冠状病毒229E(在健康个体中引起上呼吸道感染,在合并症患者中引起严重疾病)在公共和家庭区域通用的表面材料上仍具有感染力。低感染剂量意味着对任何接触受污染表面的人来说,这都是很大的感染风险。然而,在暴露于铜和铜合金表面的冠状病毒中,观察到快速失活,病毒RNA不可逆转的破坏以及大量的结构破坏。铜合金表面的结合以及有效的清洁方案和良好的临床实践可帮助控制包括MERS和SARS在内的呼吸道冠状病毒的传播。

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