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Detection and clearance of a mosquito densovirus contaminant from laboratory stocks of Zika virus

机译:Zika病毒实验室股票蚊子污染物的检测与清除

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BACKGROUND The Zika virus (ZIKV) epidemics that affected South America in 2016 raised several research questions and prompted an increase in studies in the field. The transient and low viraemia observed in the course of ZIKV infection is a challenge for viral isolation from patient serum, which leads to many laboratories around the world sharing viral strains for their studies. C6/36 cells derived from Aedes albopictus larvae are commonly used for arbovirus isolation from clinical samples and for the preparation of viral stocks. OBJECTIVES Here, we report the contamination of two widely used ZIKV strains by Brevidensovirus, here designated as mosquito densovirus (MDV). METHODS Molecular and immunological techniques were used to analyse the MDV contamination of ZIKV stocks. Also, virus passages in mammalian cell line and infecting susceptible mice were used to MDV clearance from ZIKV stocks. FINDINGS MDV contamination was confirmed by molecular and immunological techniques and likely originated from C6/36 cultures commonly used to grow viral stocks. We applied two protocols that successfully eliminated MDV contamination from ZIKV stocks, and these protocols can be widely applied in the field. As MDV does not infect vertebrate cells, we performed serial passages of contaminated stocks using a mammalian cell line and infecting susceptible mice prior to re-isolating ZIKV from the animals’ blood serum. MDV elimination was confirmed with immunostaining, polymerase chain reaction (PCR), and analysis of the mosquitoes that were allowed to feed on the infected mice. MAIN CONCLUSIONS Since the putative impact of viral contaminants in ZIKV strains generally used for research purposes is unknown, researchers working in the field must be aware of potential contaminants and test viral stocks to certify sample purity.
机译:背景技术2016年影响南美洲的Zika病毒(ZIKV)流行病提出了几个研究问题,并提示了该领域的研究增加。在ZIKV感染过程中观察到的瞬态和低恶血症是患者血清病毒分离的挑战,这导致世界各地的许多实验室分享病毒菌株的研究。衍生自AEDES Albopictus幼虫的C6 / 36细胞通常用于临床样品和制备病毒股的术术分离。目的在这里,我们报告了Brividensovirus的两个广泛使用的Zikv菌株的污染,这里被指定为蚊子滋养病毒(MDV)。方法采用分子和免疫学技术分析ZIKV股的MDV污染。此外,哺乳动物细胞系和感染易感小鼠的病毒通道用于来自ZIKV股的MDV间隙。发现MDV污染通过分子和免疫学技术证实,可能源于常用于生长病毒股的C6 / 36培养物。我们应用了两种协议,即成功消除了ZIKV股票的MDV污染,这些方案可以广泛应用于现场。由于MDV不感染脊椎动物细胞,我们使用哺乳动物细胞系进行污染的股票的串行通道,并在从动物的血液中再分离ZIKV之前感染易感小鼠。用免疫染色,聚合酶链反应(PCR)确认MDV消除,并分析允许在感染的小鼠上喂养的蚊子。主要结论是由于病毒污染物在ZIKV菌株中的推定影响通常用于研究目的,因此在该领域工作的研究人员必须了解潜在的污染物和测试病毒股,以证明样品纯度。

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