Marshall David J, Reisdorf Erik, Harms Gerda, Beaty Edward, Moser Michael J, Lee Wai-Ming, Gern James E, Nolte Frederick S, Shult Pete, Prudent James R
EraGen Biosciences Inc, Madison, WI 53717, USA.
J Clin Microbiol. 2007 Dec;45(12):3875-82. doi: 10.1128/JCM.00838-07. Epub 2007 Oct 10.
There are numerous viral and bacterial causes of respiratory disease. To enable rapid and sensitive detection of even the most prevalent causes, there is a need for more-simplified testing systems that enable researchers and clinicians to perform multiplexed molecular diagnostics quickly and easily. To this end, a new multiplexed molecular test called the MultiCode-PLx respiratory virus panel (PLx-RVP) was developed and then implemented in a public health laboratory setting. A total of 687 respiratory samples were analyzed for the presence of 17 viruses that commonly cause respiratory disease. As a comparator, the samples were also tested using a standard testing algorithm that included the use of a real-time influenza virus A and B reverse transcription-PCR test and routine viral culture identification. The standard testing algorithm identified 503 (73%) samples as positive and 184 as negative. Analyzing the same 687 samples, the PLx-RVP assay detected one or more targets in 528 (77%) samples and found 159 samples negative for all targets. There were 25 discordant results between the two systems; 14 samples were positive for viruses not routinely tested for by the Wisconsin State Laboratory of Hygiene, and 13 of these were confirmed by real-time PCR. When the results of the standard testing algorithm were considered "true positives," the PLx-RVP assay showed an overall sensitivity of 99% and an overall specificity of 87%. In total, the PLx-RVP assay detected an additional 40 viral infections, of which 11 were mixed infections.
呼吸道疾病有众多病毒和细菌病因。为了能够快速、灵敏地检测出哪怕是最常见的病因,需要更简化的检测系统,使研究人员和临床医生能够快速、轻松地进行多重分子诊断。为此,开发了一种名为MultiCode-PLx呼吸道病毒检测板(PLx-RVP)的新型多重分子检测方法,并在公共卫生实验室环境中实施。共对687份呼吸道样本进行分析,检测通常导致呼吸道疾病的17种病毒的存在情况。作为对照,还使用一种标准检测算法对样本进行检测,该算法包括使用实时甲型和乙型流感病毒逆转录-聚合酶链反应检测以及常规病毒培养鉴定。标准检测算法将503份(73%)样本鉴定为阳性,184份为阴性。对相同的687份样本进行分析,PLx-RVP检测在528份(77%)样本中检测到一个或多个靶点,发现159份样本所有靶点均为阴性。两个系统之间有25个不一致的结果;14份样本检测出威斯康星州卫生实验室未常规检测的病毒呈阳性,其中13份经实时聚合酶链反应确认。当将标准检测算法的结果视为“真阳性”时,PLx-RVP检测的总体灵敏度为99%,总体特异性为87%。PLx-RVP检测总共检测出另外40例病毒感染,其中11例为混合感染。