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利用哈扎拉病毒作为克里米亚-刚果出血热病毒的替代物可在低生物安全水平下进行灭活研究。

Harnessing Hazara Virus as a Surrogate for Crimean-Congo Hemorrhagic Fever Virus Enables Inactivation Studies at a Low Biosafety Level.

作者信息

Olejnik Judith, Meier Kristina, Herrera Jarod N, DeStasio Daniel J, Deeney Dylan J, Flores Elizabeth Y, White Mitchell R, Hume Adam J, Mühlberger Elke

机构信息

Department of Virology, Immunology and Microbiology, Chobanian & Avedisian School of Medicine, Boston University, Boston, MA 02118, USA.

National Emerging Infectious Diseases Laboratories (NEIDL), Boston University, Boston, MA 02218, USA.

出版信息

Pathogens. 2025 Jul 15;14(7):700. doi: 10.3390/pathogens14070700.

Abstract

Research on highly pathogenic biosafety level 4 (BSL-4) viruses that are classified as Select Agents involves transferring inactivated materials to lower containment levels for further analysis. Compliance with Select Agent and BSL-4 safety regulations necessitates the validation and verification of inactivation procedures. To streamline this process, it would be beneficial to use surrogate BSL-2 viruses for inactivation studies. This not only simplifies BSL-4 work but also enables the testing and validation of inactivation procedures in research facilities that lack access to high-containment laboratories yet may receive samples containing highly pathogenic viruses that require efficient and complete inactivation. In this study, we used Hazara virus (HAZV) as a surrogate virus for Crimean-Congo hemorrhagic fever virus to show the efficacy of various inactivation methods. We demonstrate the successful inactivation of HAZV using TRIzol/TRIzol LS and aldehyde fixation. Importantly, the parameters of the aldehyde inactivation of cell pellets differed from those of the monolayers, highlighting the importance of inactivation validation. As part of this study, we also defined specific criteria that must be met by a BSL-2 virus to be used as a surrogate for a closely related BSL-4 virus. Defining these criteria helps identify suitable nonpathogenic surrogates for developing inactivation procedures for highly pathogenic viruses.

摘要

对被列为选择代理的高致病性生物安全4级(BSL-4)病毒的研究涉及将灭活材料转移到较低的防护水平进行进一步分析。遵守选择代理和BSL-4安全法规需要对灭活程序进行验证和核查。为简化这一过程,使用BSL-2替代病毒进行灭活研究将大有裨益。这不仅简化了BSL-4的工作,还能在无法进入高防护实验室但可能收到含有需要高效且完全灭活的高致病性病毒样本的研究机构中,对灭活程序进行测试和验证。在本研究中,我们使用哈扎拉病毒(HAZV)作为克里米亚-刚果出血热病毒的替代病毒,以展示各种灭活方法的效果。我们证明了使用TRIzol/TRIzol LS和醛固定法可成功灭活HAZV。重要的是,细胞沉淀的醛灭活参数与单层细胞的不同,凸显了灭活验证的重要性。作为本研究的一部分,我们还定义了一种BSL-2病毒用作密切相关的BSL-4病毒替代物时必须满足的特定标准。定义这些标准有助于识别合适的非致病性替代物,以开发高致病性病毒的灭活程序。

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