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Establishment and Clinical Applications of a Portable System for Capturing Influenza Viruses Released through Coughing

机译:捕获通过咳嗽释放的流感病毒的便携式系统的建立和临床应用

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摘要

Coughing plays an important role in influenza transmission; however, there is insufficient information regarding the viral load in cough because of the lack of convenient and reliable collection methods. We developed a portable airborne particle-collection system to measure the viral load; it is equipped with an air sampler to draw air and pass it through a gelatin membrane filter connected to a cone-shaped, megaphone-like device to guide the cough airflow to the membrane. The membrane was dissolved in a medium, and the viral load was measured using quantitative real-time reverse transcriptase-polymerase chain reaction and a plaque assay. The approximate viral recovery rate of this system was 10% in simulation experiments to collect and quantify the viral particles aerosolized by a nebulizer. Using this system, cough samples were collected from 56 influenza A patients. The total viral detection rate was 41% (23/56), and the viral loads varied significantly (from <10, less than the detection limit, to 2240 viral gene copies/cough). Viable viruses were detected from 3 samples with ≤18 plaque forming units per cough sample. The virus detection rates were similar among different groups of patients infected with different viral subtypes and during different influenza seasons. Among patients who did not receive antiviral treatment, viruses were detected in one of six cases in the vaccinated group and four of six cases in the unvaccinated group. We found cases with high viral titers in throat swabs or oral secretions but very low or undetectable in coughs and vice versa suggesting other possible anatomical sites where the viruses might be mixed into the cough. Our system is easy to operate, appropriate for bedside use, and is useful for comparing the viral load in cough samples from influenza patients under various conditions and settings. However, further large-scale studies are warranted to validate our results.
机译:咳嗽在流感传播中起着重要作用;然而,由于缺乏方便,可靠的采集方法,有关咳嗽病毒载量的信息不足。我们开发了一种便携式机载颗粒物收集系统来测量病毒载量。它配备了一个空气采样器,以吸入空气,并使空气通过连接到锥形,类似扩音器的装置的明胶膜过滤器,以将咳嗽气流引导到膜上。将膜溶解在培养基中,并使用定量实时逆转录酶-聚合酶链反应和噬斑测定法测量病毒载量。在模拟实验中,该系统的大约病毒回收率约为10%,以收集和量化由雾化器雾化的病毒颗粒。使用该系统,从56名甲型流感患者中收集了咳嗽样本。总病毒检出率为41%(23/56),病毒载量变化很大(从<10,低于检出限,到2240病毒基因拷贝/咳嗽)。从3个样本中检测到活病毒,每个咳嗽样本的噬菌斑形成单位≤18。在感染不同病毒亚型的不同组患者之间以及在不同的流感季节,病毒检出率相似。在未接受抗病毒治疗的患者中,接种组六例中的一例和未接种组六例中的四例中检测到病毒。我们发现在咽拭子或口腔分泌物中病毒滴度高的病例,但在咳嗽中极低或无法检测到的病例,反之亦然,这表明病毒可能混入咳嗽中的其他可能的解剖部位。我们的系统易于操作,适合在床边使用,并且可用于比较各种条件和环境下流感患者咳嗽样本中的病毒载量。但是,有必要进行进一步的大规模研究以验证我们的结果。

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