Validation of improved automated nucleic acid extraction methods for direct detection of polioviruses for global polio eradication

IF 2.2 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Stacey Jeffries Miles , Chelsea Harrington , Hong Sun , Ashley Deas , M. Steven Oberste , W. Allan Nix , Everardo Vega , Nancy Gerloff
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引用次数: 0

Abstract

Polioviruses (PV), the main causative agent of acute flaccid paralysis (AFP), are positive-sense single-stranded RNA viruses of the family Picornaviridae. As we approach polio eradication, accurate and timely detection of poliovirus in stool from AFP cases becomes vital to success for the eradication efforts. Direct detection of PV from clinical diagnostic samples using nucleic acid (NA) extraction and real-time reverse transcriptase polymerase chain reaction (rRT-PCR) instead of the current standard method of virus isolation in culture, eliminates the long turn-around time to diagnosis and the need for high viral titer amplification in laboratories. An essential component of direct detection of PV from AFP surveillance samples is the efficient extraction of NA. Potential supply chain issues and lack of vendor presence in certain areas of the world necessitates the validation of multiple NA extraction methods. Using retrospective PV-positive surveillance samples (n=104), two extraction kits were compared to the previously validated Zymo Research Quick-RNA™ Viral Kit. The Roche High Pure Viral RNA Kit, a column-based manual extraction method, and the MagMaX™ Pathogen RNA/DNA kit used in the automated Kingfisher Flex system were both non-inferior to the Zymo kit, with similar rates of PV detection in pivotal rRT-PCR assays, such as pan-poliovirus (PanPV), poliovirus serotype 2 (PV2), and wild poliovirus serotype 1 (WPV1). These important assays allow the identification and differentiation of PV genotypes and serotypes and are fundamental to the GPLN program. Validation of two additional kits provides feasible alternatives to the current piloted method of NA extraction for poliovirus rRT-PCR assays.

验证用于直接检测脊髓灰质炎病毒的改进型自动核酸提取方法,促进全球根除脊髓灰质炎。
脊髓灰质炎病毒(PV)是急性弛缓性麻痹(AFP)的主要病原体,属于脊髓灰质炎病毒科(Picornaviridae)的正感单链 RNA 病毒。随着根除脊髓灰质炎工作的日益临近,准确及时地检测急性弛缓性麻痹病例粪便中的脊髓灰质炎病毒对根除工作的成功至关重要。使用核酸(NA)提取和实时逆转录酶聚合酶链反应(rRT-PCR)从临床诊断样本中直接检测脊髓灰质炎病毒,而不是采用目前在培养基中分离病毒的标准方法,这样就避免了诊断周转时间过长的问题,也不需要在实验室中进行高病毒滴度扩增。从 AFP 监测样本中直接检测 PV 的一个基本要素是有效提取 NA。由于潜在的供应链问题以及世界某些地区缺乏供应商,因此需要对多种 NA 提取方法进行验证。利用回顾性 PV 阳性监测样本(n=104),将两种提取试剂盒与之前验证过的 Zymo Research Quick-RNATM 病毒试剂盒进行了比较。罗氏高纯度病毒 RNA 试剂盒是一种柱式手动提取方法,而在自动 Kingfisher Flex 系统中使用的 Magmax 病原体 RNA/DNA 试剂盒与 Zymo 试剂盒相比并不逊色,在关键的 rRT-PCR 检测(如泛脊髓灰质炎病毒 (PanPV)、脊髓灰质炎病毒血清 2 型 (PV2) 和脊髓灰质炎病毒血清 1 型 (WPV1))中的 PV 检出率相似。这些重要的检测方法可以鉴定和区分脊髓灰质炎病毒基因型和血清型,是 GPLN 计划的基础。另外两种试剂盒的验证为脊髓灰质炎病毒 rRT-PCR 检测提供了可行的替代方法,以取代目前公认的 NA 提取方法。
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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
209
审稿时长
41 days
期刊介绍: The Journal of Virological Methods focuses on original, high quality research papers that describe novel and comprehensively tested methods which enhance human, animal, plant, bacterial or environmental virology and prions research and discovery. The methods may include, but not limited to, the study of: Viral components and morphology- Virus isolation, propagation and development of viral vectors- Viral pathogenesis, oncogenesis, vaccines and antivirals- Virus replication, host-pathogen interactions and responses- Virus transmission, prevention, control and treatment- Viral metagenomics and virome- Virus ecology, adaption and evolution- Applied virology such as nanotechnology- Viral diagnosis with novelty and comprehensive evaluation. We seek articles, systematic reviews, meta-analyses and laboratory protocols that include comprehensive technical details with statistical confirmations that provide validations against current best practice, international standards or quality assurance programs and which advance knowledge in virology leading to improved medical, veterinary or agricultural practices and management.
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