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多重检测可同时检测和鉴定临床及废水样本中引起关注的新冠病毒变异株。

Multiplex Assays Enable Simultaneous Detection and Identification of SARS-CoV-2 Variants of Concern in Clinical and Wastewater Samples.

作者信息

Liu Yanming, Kumblathan Teresa, Joyce Michael A, Tyrrell D Lorne, Tipples Graham, Pang Xiaoli, Li Xing-Fang, Le X Chris

机构信息

Division of Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta T6G 2G3, Canada.

Li Ka Shing Institute of Virology, Department of Medical Microbiology and Immunology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta T6G 2E1, Canada.

出版信息

ACS Meas Sci Au. 2023 Apr 21;3(4):258-268. doi: 10.1021/acsmeasuresciau.3c00005. eCollection 2023 Aug 16.

Abstract

The targeted screening and sequencing approaches for COVID-19 surveillance need to be adjusted to fit the evolving surveillance objectives which necessarily change over time. We present the development of variant screening assays that can be applied to new targets in a timely manner and enable multiplexing of targets for efficient implementation in the laboratory. By targeting the HV69/70 deletion for Alpha, K417N for Beta, K417T for Gamma, and HV69/70 deletion plus K417N for sub-variants BA.1, BA.3, BA.4, and BA.5 of Omicron, we achieved simultaneous detection and differentiation of Alpha, Beta, Gamma, and Omicron in a single assay. Targeting both T478K and P681R mutations enabled specific detection of the Delta variant. The multiplex assays used in combination, targeting K417N and T478K, specifically detected the Omicron sub-variant BA.2. The limits of detection for the five variants of concern were 4-16 copies of the viral RNA per reaction. Both assays achieved 100% clinical sensitivity and 100% specificity. Analyses of 377 clinical samples and 24 wastewater samples revealed the Delta variant in 100 clinical samples (nasopharyngeal and throat swab) collected in November 2021. Omicron BA.1 was detected in 79 nasopharyngeal swab samples collected in January 2022. Alpha, Beta, and Gamma variants were detected in 24 wastewater samples collected in May-June 2021 from two major cities of Alberta (Canada), and the results were consistent with the clinical cases of multiple variants reported in the community.

摘要

用于新冠病毒监测的靶向筛查和测序方法需要进行调整,以适应不断演变的监测目标,这些目标必然会随时间而变化。我们展示了变异体筛查检测方法的开发,该方法能够及时应用于新的靶点,并能对靶点进行多重检测,以便在实验室中高效实施。通过针对 Alpha 变异体的 HV69/70 缺失、Beta 变异体的 K417N、Gamma 变异体的 K417T,以及奥密克戎的 BA.1、BA.3、BA.4 和 BA.5 亚变体的 HV69/70 缺失加 K417N,我们在一次检测中实现了对 Alpha、Beta、Gamma 和奥密克戎的同时检测和区分。针对 T478K 和 P681R 突变能够特异性检测德尔塔变异体。联合使用针对 K417N 和 T478K 的多重检测方法,能够特异性检测奥密克戎亚变体 BA.2。这五种关注变异体的检测限为每个反应 4 - 16 份病毒 RNA。两种检测方法均实现了 100%的临床敏感性和 100%的特异性。对 377 份临床样本和 24 份污水样本的分析显示,在 2021 年 11 月采集的 100 份临床样本(鼻咽和咽喉拭子)中检测到了德尔塔变异体。在 2022 年 1 月采集的 79 份鼻咽拭子样本中检测到了奥密克戎 BA.1。在 2021 年 5 月至 6 月从加拿大艾伯塔省的两个主要城市采集的 24 份污水样本中检测到了 Alpha、Beta 和 Gamma 变异体,结果与社区报告的多种变异体临床病例一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba56/10436367/5c848ac5124b/tg3c00005_0002.jpg

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