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首页> 外文期刊>Journal of Clinical Microbiology >Evaluation and Clinical Validation of an Alcohol-Based Transport Medium for Preservation and Inactivation of Respiratory Viruses
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Evaluation and Clinical Validation of an Alcohol-Based Transport Medium for Preservation and Inactivation of Respiratory Viruses

机译:酒精性呼吸道病毒保存和灭活的运输介质的评估和临床验证

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The clinical and public health importance of influenza and other respiratory viruses has accelerated the development of highly sensitive molecular diagnostics, but data are limited regarding preanalytical stages of diagnostic testing. We evaluated CyMol, an alcohol-based transport medium, for its ability to maintain specimen integrity for up to 21 days of storage at various temperatures; for its ability to inactivate virus; and for its compatibility with antigen- or nucleic acid-based diagnostics for respiratory viruses in clinical samples. In mock-infected samples, both universal transport medium (UTM-RT) and CyMol maintained equivalent viral quantities for at least 14 days at room temperature or colder, whereas a dry swab collection maintained viral quantities only if refrigerated or frozen. CyMol inactivated influenza virus within 5 min of sample immersion. UTM-RT- and CyMol-collected nasal swab specimens from 73 symptomatic students attending a campus health clinic were positive for a respiratory virus in 56.2% of subjects by multiplex PCR testing, including influenza A and B viruses, rhinovirus/enteroviruses, coronaviruses, respiratory syncytial virus, parainfluenza viruses, metapneumovirus, and adenovirus. Detection by PCR was equivalent in UTM-RT- and CyMol-collected specimens and in self- and staff-collected swabs. Direct fluorescent antibody (DFA) testing was substantially less sensitive (23.3%) than multiplex PCR, and DFA testing from UTM-RT-collected swabs was more sensitive than that from CyMol-collected swabs. These data indicate that an alcohol-based transport medium such as CyMol preserves respiratory virus integrity, rapidly inactivates viruses, and is compatible with PCR-based respiratory diagnostics.
机译:流感和其他呼吸道病毒对临床和公共卫生的重要性加速了高度敏感的分子诊断技术的发展,但是有关诊断测试的分析前阶段的数据有限。我们评估了基于醇的运输介质CyMol在各种温度下最多可保存21天的样品完整性的能力。具有灭活病毒的能力;并与临床样品中呼吸道病毒的基于抗原或核酸的诊断试剂兼容。在模拟感染的样品中,通用转运介质(UTM-RT)和CyMol在室温或更低温度下至少保持14天的等效病毒量,而干拭子收集仅在冷藏或冷冻后才保持病毒量。样品浸入后5分钟内,CyMol灭活的流感病毒。来自73位有症状的学生的UTM-RT和CyMol收集的鼻拭子样本在校园卫生诊所就诊,通过多重PCR检测,在56.2%的受试者中呼吸道病毒呈阳性,包括甲型和乙型流感病毒,鼻病毒/肠病毒,冠状病毒,呼吸道合胞病毒,副流感病毒,间质肺病毒和腺病毒。在UTM-RT和CyMol收集的标本中以及在自己和工作人员收集的拭子中,通过PCR进行的检测是等效的。直接荧光抗体(DFA)检测的敏感性(23.3%)比多重PCR低得多,并且UTM-RT收集的拭子的DFA检测比CyMol收集的拭子更敏感。这些数据表明,基于醇的运输介质(例如CyMol)可以保留呼吸道病毒的完整性,迅速使病毒失活并与基于PCR的呼吸道诊断兼容。

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