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Resistance of Aerosolized Bacterial Viruses to Relative Humidity and Temperature

机译:气溶胶化细菌病毒对相对湿度和温度的抗性

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The use of aerosolized bacteriophages as surrogates for hazardous viruses might simplify and accelerate the discovery of links between viral components and their persistence in the airborne state under diverse environmental conditions. In this study, four structurally distinct lytic phages, MS2 (single-stranded RNA [ssRNA]), ?6 (double-stranded RNA [dsRNA]), ?X174 (single-stranded DNA [ssDNA]), and PR772 (double-stranded DNA [dsDNA]), were nebulized into a rotating chamber and exposed to various levels of relative humidity (RH) and temperature as well as to germicidal UV radiation. The aerosolized viral particles were allowed to remain airborne for up to 14 h before being sampled for analysis by plaque assays and quantitative PCRs. Phages ?6 and MS2 were the most resistant at low levels of relative humidity, while ?X174 was more resistant at 80% RH. Phage ?6 lost its infectivity immediately after exposure to 30°C and 80% RH. The infectivity of all tested phages rapidly declined as a function of the exposure time to UVC radiation, phage MS2 being the most resistant. Taken altogether, our data indicate that these aerosolized phages behave differently under various environmental conditions and highlight the necessity of carefully selecting viral simulants in bioaerosol studies.
机译:使用雾化的噬菌体作为危险病毒的替代物可能会简化和加速发现病毒成分及其在各种环境条件下在空气中的持久性之间的联系。在这项研究中,四个结构独特的裂解噬菌体分别为MS2(单链RNA [ssRNA])、? 6(双链RNA [dsRNA])、? X174(单链DNA [ssDNA])和PR772(双链DNA)。链DNA [dsDNA])被雾化到旋转室中,并暴露于各种水平的相对湿度(RH)和温度以及杀菌紫外线辐射中。雾化的病毒颗粒可以在空气中停留14小时,然后再进行噬菌斑测定和定量PCR分析。 α6和MS2噬菌体在低水平的相对湿度下抵抗力最强,而XX174在80%RH的抵抗力更强。噬菌体α6在暴露于30°C和80%RH后立即失去感染性。所有测试的噬菌体的传染性都随着暴露于UVC辐射的时间而迅速下降,噬菌体MS2的抵抗力最强。总而言之,我们的数据表明这些雾化的噬菌体在各种环境条件下的行为各不相同,并突出了在生物雾化研究中仔细选择病毒模拟物的必要性。

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