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首页> 外文期刊>Journal of clinical virology: The official publication of the Pan American Society for Clinical Virology >Evaluation of a rapid molecular algorithm for detection of pandemic influenza A (H1N1) 2009 virus and screening for a key oseltamivir resistance (H275Y) substitution in neuraminidase.
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Evaluation of a rapid molecular algorithm for detection of pandemic influenza A (H1N1) 2009 virus and screening for a key oseltamivir resistance (H275Y) substitution in neuraminidase.

机译:快速分子算法的评估,以检测大流行性甲型流感(H1N1)2009病毒并筛选神经氨酸酶中​​关键的奥司他韦耐药性(H275Y)替代。

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摘要

BACKGROUND: Rapid and specific molecular tests for identification of the recently identified pandemic influenza A/H1N1 2009 virus as well as rapid molecular tests to identify antiviral resistant strains are urgently needed. OBJECTIVES: We have evaluated the performance of two novel reverse transcriptase polymerase chain reactions (RT-PCRs) targeting specifically hemagglutinin and neuraminidase of pandemic influenza A/H1N1 virus in combination with a conserved matrix PCR. In addition, we investigated the performance of a novel discrimination RT-PCR for detection of the H275Y resistance mutation in the neuraminidase gene. STUDY DESIGN: Clinical performance of both subtype specific RT-PCR assays was evaluated through analysis of 684 throat swaps collected from individuals meeting the WHO case definition for the novel pandemic influenza virus. Analytical performance was analyzed through testing of 10-fold serial dilutions of RNA derived from the first Dutch sequenced and cultured confirmed case of novel pandemic influenza infection. Specificity and discriminative capacities of the H275Y discrimination assay were performed by testing wild type and recombinant H275Y pandemic influenza. RESULTS: 121 throat swaps collected from April 2009 to July 2009 were positive by at least two out of three RT-PCRs, and negative for the seasonal H3/H1 subtype specific RT-PCR assays. 117 of these were tested positive for all three (Ct-values from 15.1 to 36.8). No oseltamivir resistance was detected. CONCLUSIONS: We present a sensitive and specific approach for detection of pandemic influenza A/H1N1 2009 and a rapid RT-PCR assay detecting a primary oseltamivir resistance mutation which can be incorporated easily into clinical virology algorithms.
机译:背景:迫切需要用于鉴定最近鉴定出的大流行性流感A / H1N1 2009病毒的快速和特异性分子检测,以及用于鉴定抗病毒耐药株的快速分子检测。目的:我们结合保守的基质PCR,评估了两种针对大流行性流感A / H1N1病毒的血凝素和神经氨酸酶的新型反转录酶聚合酶链反应(RT-PCR)的性能。此外,我们调查了新型鉴别RT-PCR在神经氨酸酶基因中检测H275Y抗性突变的性能。研究设计:这两种亚型的特异性RT-PCR分析的临床表现是通过分析从满足WHO新型大流行性流感病毒病例定义的个体收集的684个喉咙互换来评估的。通过测试10倍系列稀释的RNA稀释液的分析性能,这些稀释液来自于首次荷兰测序和培养的新型大流行性流感感染确诊病例。通过测试野生型和重组H275Y大流行性流感来进行H275Y鉴别测定的特异性和判别能力。结果:从2009年4月至2009年7月收集的121个喉咙互换中,至少有三分之二的RT-PCR呈阳性,而季节性H3 / H1亚型特异性RT-PCR测定呈阴性。其中的117个对所有三个测试均为阳性(Ct值从15.1至36.8)。未检测到奥司他韦抗药性。结论:我们提出了一种灵敏而特异的检测大流行性流感A / H1N1 2009的方法,以及一种快速RT-PCR检测原发性奥司他韦耐药性突变的方法,该突变可轻松纳入临床病毒学算法中。

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