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呼吸器收集和检测 SARS-CoV-2 的诊断性能。

Diagnostic performance of respirators for collection and detection of SARS-CoV-2.

机构信息

Department of Micro-nano System Engineering, Korea University, Seoul, 02841, Republic of Korea.

Asia Pacific Influenza Institute, Korea University College of Medicine, Seoul, 08308, Republic of Korea.

出版信息

Sci Rep. 2023 Aug 15;13(1):13277. doi: 10.1038/s41598-023-39789-w.

Abstract

Respirators, called as face mask, have been used to protect the wearer from the outside harmful air environment and prevent any virus from being released to neighbors from potentially infected exhaled breath. The antiviral effectiveness of respirators has not only been researched scientifically, but has also become a global issue due to society's obligation to wear respirators. In this paper, we report the results of a study on the collection and detection of viruses contained in exhaled breath using respirators. The inner electrostatic filter was carefully selected for virus collection because it does not come in direct contact with either human skin or the external environment. In the study of a healthy control group, it was confirmed that a large amount of DNA and biomolecules such as exosomes were collected from the respirator exposed to exhalation, and the amount of collection increased in proportion to the wearing time. We conducted experiments using a total of 72 paired samples with nasopharyngeal swabs and respirator samples. Out of these samples, fifty tested positive for SARS-CoV-2 and twenty-two tested negative. The PCR results of the NPS and respirator samples showed a high level of agreement, with a positive percent agreement of ≥ 90% and a negative percent agreement of ≥ 99%. Furthermore, there was a notable level of concordance between RCA-flow tests and PCR when examining the respirator samples. These results suggest that this is a non-invasive, quick and easy method of collecting samples from subjects using a respirator, which can significantly reduce the hassle of waiting at airports or public places and concerns about cross-contamination. Furthermore, we expect miniaturized technologies to integrate PCR detection into respirators in the near future.

摘要

口罩又被称作呼吸器,被用来保护佩戴者免受外界有害空气环境的影响,并防止潜在感染者呼出的呼吸飞沫向周围环境释放任何病毒。呼吸器的抗病毒效果不仅已经过科学研究,而且由于社会有佩戴呼吸器的义务,它已经成为一个全球性问题。在本文中,我们报告了一项使用呼吸器收集和检测呼出呼吸中所含病毒的研究结果。由于内静电过滤器不会直接接触到人体皮肤或外部环境,因此我们精心选择它来收集病毒。在对健康对照组的研究中,我们证实从暴露于呼气的呼吸器中收集到了大量的 DNA 和生物分子,如外泌体,并且收集的数量与佩戴时间成正比增加。我们总共使用了 72 对鼻咽拭子和呼吸器样本进行了实验。在这些样本中,有 50 个样本对 SARS-CoV-2 呈阳性,22 个样本呈阴性。NPS 和呼吸器样本的 PCR 结果显示出高度的一致性,阳性符合率≥90%,阴性符合率≥99%。此外,在检查呼吸器样本时,RCA-flow 测试与 PCR 之间也存在显著的一致性。这些结果表明,这是一种使用呼吸器从受试者身上采集样本的非侵入性、快速且简便的方法,可以大大减少在机场或公共场所等待和交叉污染的麻烦。此外,我们预计小型化技术将在不久的将来把 PCR 检测集成到呼吸器中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49ad/10427661/52e6e50397f1/41598_2023_39789_Fig1_HTML.jpg

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