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人细小病毒 4 灭活研究。

Studies on the inactivation of human parvovirus 4.

机构信息

Paul-Ehrlich-Institut, Langen, Germany.

出版信息

Transfusion. 2013 Oct;53(10 Pt 2):2585-92. doi: 10.1111/trf.12372. Epub 2013 Aug 19.

Abstract

BACKGROUND

Human parvovirus 4 (PARV4) is a novel parvovirus, which like parvovirus B19 (B19V) can be a contaminant of plasma pools used to prepare plasma-derived medicinal products. Inactivation studies of B19V have shown that it is more sensitive to virus inactivation strategies than animal parvoviruses. However, inactivation of PARV4 has not yet been specifically addressed.

STUDY DESIGN AND METHODS

Treatment of parvoviruses by heat or low-pH conditions causes externalization of the virus genome. Using nuclease treatment combined with real-time polymerase chain reaction, the extent of virus DNA externalization was used as an indirect measure of the inactivation of PARV4, B19V, and minute virus of mice (MVM) by pasteurization of albumin and by low-pH treatment. Infectivity studies were performed in parallel for B19V and MVM.

RESULTS

PARV4 showed greater resistance to pasteurization and low-pH treatment than B19V, although PARV4 was not as resistant as MVM. There was a 2- to 3-log reduction of encapsidated PARV4 DNA after pasteurization and low-pH treatment. In contrast, B19V was effectively inactivated while MVM was stable under these conditions. Divalent cations were found to have a stabilizing effect on PARV4 capsids. In the absence of divalent cations, even at neutral pH, there was a reduction of PARV4 titer, an effect not observed for B19V or MVM.

CONCLUSION

In the case of heat treatment and incubation at low pH, PARV4 shows intermediate resistance when compared to B19V and MVM. Divalent cations seem important for stabilizing PARV4 virus particles.

摘要

背景

人细小病毒 4(PARV4)是一种新型细小病毒,与细小病毒 B19(B19V)一样,可能是用于制备血浆衍生药物的血浆池的污染物。B19V 的失活动力学研究表明,与动物细小病毒相比,它对病毒失活动力学策略更为敏感。然而,PARV4 的失活尚未得到专门解决。

研究设计和方法

通过热或低 pH 条件处理细小病毒会导致病毒基因组的外化。使用核酸酶处理结合实时聚合酶链反应,将病毒 DNA 外化的程度用作间接测量 PARV4、B19V 和小鼠微小病毒(MVM)通过白蛋白巴氏消毒和低 pH 处理失活的指标。并行进行 B19V 和 MVM 的感染性研究。

结果

PARV4 对巴氏消毒和低 pH 处理的抵抗力大于 B19V,但 PARV4 的抵抗力不如 MVM。经过巴氏消毒和低 pH 处理后,包膜 PARV4 DNA 的减少量为 2-3 个对数。相比之下,B19V 在这些条件下有效失活,而 MVM 则稳定。二价阳离子被发现对 PARV4 衣壳具有稳定作用。在不存在二价阳离子的情况下,即使在中性 pH 下,PARV4 的滴度也会降低,而 B19V 或 MVM 则没有观察到这种情况。

结论

在热处理和低 pH 孵育的情况下,与 B19V 和 MVM 相比,PARV4 表现出中等的抵抗力。二价阳离子对于稳定 PARV4 病毒颗粒似乎很重要。

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