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冻干流感、狂犬病和马尔堡慢病毒假型病毒,用于开发和分发基于中和试验的诊断试剂盒。

Lyophilisation of influenza, rabies and Marburg lentiviral pseudotype viruses for the development and distribution of a neutralisation -assay-based diagnostic kit.

作者信息

Mather Stuart T, Wright Edward, Scott Simon D, Temperton Nigel J

机构信息

Viral Pseudotype Unit (Medway), School of Pharmacy, University of Kent, Chatham Maritime, Kent, UK.

Viral Pseudotype Unit (Fitzrovia), Faculty of Science and Technology, University of Westminster, London, UK.

出版信息

J Virol Methods. 2014 Dec 15;210:51-8. doi: 10.1016/j.jviromet.2014.09.021. Epub 2014 Oct 5.

Abstract

Pseudotype viruses (PVs) are chimeric, replication-deficient virions that mimic wild-type virus entry mechanisms and can be safely employed in neutralisation assays, bypassing the need for high biosafety requirements and performing comparably to established serological assays. However, PV supernatant necessitates -80°C long-term storage and cold-chain maintenance during transport, which limits the scope of dissemination and application throughout resource-limited laboratories. We therefore investigated the effects of lyophilisation on influenza, rabies and Marburg PV stability, with a view to developing a pseudotype virus neutralisation assay (PVNA) based kit suitable for affordable global distribution. Infectivity of each PV was calculated after lyophilisation and immediate reconstitution, as well as subsequent to incubation of freeze-dried pellets at varying temperatures, humidities and timepoints. Integrity of glycoprotein structure following treatment was also assessed by employing lyophilised PVs in downstream PVNAs. In the presence of 0.5M sucrose-PBS cryoprotectant, each freeze-dried pseudotype was stably stored for 4 weeks at up to 37°C and could be neutralised to the same potency as unlyophilised PVs when employed in PVNAs. These results confirm the viability of a freeze-dried PVNA-based kit, which could significantly facilitate low-cost serology for a wide portfolio of emerging infectious viruses.

摘要

假型病毒(PVs)是嵌合的、复制缺陷型病毒粒子,可模拟野生型病毒的进入机制,能够安全地用于中和试验,无需高生物安全要求,且性能与既定的血清学检测相当。然而,PV上清液需要在-80°C长期储存,并在运输过程中保持冷链,这限制了其在资源有限实验室中的传播和应用范围。因此,我们研究了冻干对流感、狂犬病和马尔堡PV稳定性的影响,以期开发一种适用于全球广泛分发且价格低廉的基于假型病毒中和试验(PVNA)的试剂盒。在冻干并立即复溶后,以及在不同温度、湿度和时间点孵育冻干颗粒后,计算每种PV的感染性。通过在下游PVNA中使用冻干的PV,还评估了处理后糖蛋白结构的完整性。在存在0.5M蔗糖-PBS冷冻保护剂的情况下,每种冻干假型在高达37°C的温度下可稳定储存4周,并且在用于PVNA时可被中和至与未冻干的PV相同的效力。这些结果证实了基于冻干PVNA的试剂盒的可行性,这可显著促进针对多种新兴感染性病毒的低成本血清学检测。

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