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首页> 外文期刊>Future microbiology >Rethinking approaches to improve the utilization of nucleic acid amplification tests for detection and characterization of influenza A in diagnostic and reference laboratories.
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Rethinking approaches to improve the utilization of nucleic acid amplification tests for detection and characterization of influenza A in diagnostic and reference laboratories.

机译:对在诊断和参考实验室中改善核酸扩增测试用于检测和鉴定甲型流感的方法的重新思考。

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摘要

Influenza A virus (IFVA) is a significant cause of respiratory infections worldwide and was also responsible for a recent pandemic in 2009. Laboratory identification of IFVA can guide antiviral therapy, assist in cohorting of patients and prevent antibiotic use. Characterization of the virus can track the emergence of novel strains, identify resistance and determine how circulating strains match with vaccine components. The gold standard for detection and characterization of IFVA is nucleic acid amplification technology (e.g., reverse transcriptase PCR [RT-PCR]), which must contend with a constantly evolving viral genome. Although molecular technology has been available for over two decades, there is still an operational gap between assay design and utilization of these tests for the diagnosis and characterization of IFVA. This review will discuss issues surrounding the implementation and use of RT-PCR for the identification and characterization of IFVA, and speculate on why RT-PCR has not been used more widely in clinical laboratories or moved closer to the patient. Newer, less widely used technologies that may change our laboratory practices will be identified and the authors will close with an attempt to identify some future applications of RT-PCR-based technologies for the detection and characterization of IFVA.
机译:甲型流感病毒(IFVA)是全球呼吸道感染的重要原因,也是造成2009年近期大流行的原因。IFVA的实验室鉴定可以指导抗病毒治疗,协助患者分组和预防抗生素的使用。病毒的表征可以追踪新菌株的出现,鉴定抗药性并确定循环株与疫苗成分的匹配方式。用于检测和表征IFVA的金标准是核酸扩增技术(例如逆转录酶PCR [RT-PCR]),该技术必须应对不断发展的病毒基因组。尽管分子技术已经使用了二十多年,但在分析设计和利用这些测试来诊断和表征IFVA方面仍然存在操作差距。这篇综述将讨论围绕RT-PCR的实施和使用来鉴定和表征IFVA的问题,并推测为什么RT-PCR尚未在临床实验室中得到更广泛的使用或越来越靠近患者。将会发现可能会改变我们实验室操作方式的较新的,使用较少的技术,作者将试图确定基于RT-PCR的技术在IFVA的检测和表征方面的未来应用。

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