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Stability of minute virus of mice against temperature and sodium hydroxide.

机译:小鼠微小病毒对温度和氢氧化钠的稳定性。

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摘要

Treatment with steam and/or dilute NaOH are commonly used techniques to disinfect manufacturing vessels and tools in the pharmaceutical industry. The aim of this procedure is sanitisation and inactivation of microbiological and viral contaminants. Here we describe the inactivation of the mouse parvovirus Minute Virus of Mice (MVM) under these conditions. Parvoviruses are known to be resistant to physico-chemical treatment and one representative of this family, the human parvovirus B19, is a potential contaminant of blood plasma. We show inactivation kinetics for MVM treated with wet-heat (70, 80, 90 degrees C) and with 0.01-1 M NaOH solutions (pH >/=11.9). Robust inactivation was only achieved at 90 degrees C for at least 10 min and in NaOH solutions of pH >/=12.8 (0.1 M NaOH). It was observed, that aggregation of viruses might protect viral particles from inactivation by NaOH. Therefore, appropriate sample preparation of spiking material is important for accurate simulation of the naturally occurring situation. The observed stability at pH 11.8 exceeds the previously reported upper limit of pH 9. Inactivation was due to disintegration of the viral capsid as assessed by accessibility of viral DNA for endonucleases.
机译:用蒸汽和/或稀NaOH处理是消毒制药行业中制造容器和工具的常用技术。该程序的目的是对微生物和病毒污染物进行消毒和灭活。在这里,我们描述了在这些条件下小鼠细小病毒小鼠微小病毒(MVM)的失活。细小病毒已知对物理化学治疗具有抗性,该家族的代表之一,细小病毒B19,是血浆的潜在污染物。我们显示了用湿热(70、80、90摄氏度)和0.01-1 M NaOH溶液(pH> / = 11.9)处理的MVM的失活动力学。仅在90摄氏度下至少10分钟内,且在pH> / = 12.8的NaOH溶液(0.1 M NaOH)中才能实现稳定的灭活。据观察,病毒聚集可保护病毒颗粒免于被NaOH灭活。因此,加标材料的适当样品制备对于准确模拟自然发生的情况非常重要。在pH 11.8时观察到的稳定性超过了先前报道的pH 9上限。灭活是由于病毒衣壳的崩解,通过病毒DNA对核酸内切酶的可及性评估。

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