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Inactivation of RNA Viruses by Gamma Irradiation: A Study on Mitigating Factors

机译:γ射线辐照灭活RNA病毒:缓解因素的研究

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摘要

Effective inactivation of biosafety level 4 (BSL-4) pathogens is vital in order to study these agents safely. Gamma irradiation is a commonly used method for the inactivation of BSL-4 viruses, which among other advantages, facilitates the study of inactivated yet morphologically intact virions. The reported values for susceptibility of viruses to inactivation by gamma irradiation are sometimes inconsistent, likely due to differences in experimental protocols. We analyzed the effects of common sample attributes on the inactivation of a recombinant vesicular stomatitis virus expressing the Zaire ebolavirus glycoprotein and green fluorescent protein. Using this surrogate virus, we found that sample volume and protein content of the sample modulated viral inactivation by gamma irradiation but that air volume within the sample container and the addition of external disinfectant surrounding the sample did not. These data identify several factors which alter viral susceptibility to inactivation and highlight the usefulness of lower biosafety level surrogate viruses for such studies. Our results underscore the need to validate inactivation protocols of BSL-4 pathogens using “worst-case scenario” procedures to ensure complete sample inactivation.
机译:为了安全地研究这些病原体,有效地灭活4级生物安全性(BSL-4)病原体至关重要。伽马射线辐照是BSL-4病毒灭活的常用方法,除其他优点外,它还有助于研究灭活但形态完整的病毒体。有时,由于实验规程的差异,所报道的病毒对伽玛射线辐照灭活的敏感性值并不一致。我们分析了常见样品属性对表达扎伊尔埃博拉病毒糖蛋白和绿色荧光蛋白的重组水泡性口腔炎病毒失活的影响。使用这种替代病毒,我们发现样品的样品量和蛋白质含量通过伽马射线辐射来调节病毒的灭活作用,但样品容器内的空气量和样品周围的外部消毒剂却没有。这些数据确定了改变病毒对失活敏感性的几个因素,并突出了较低生物安全水平的替代病毒在此类研究中的有用性。我们的结果强调需要使用“最坏情况”程序来验证BSL-4病原体的灭活方案,以确保样品完全灭活。

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