利用分子诊断工具 Intelli-OVI 监测新出现的 SARS-CoV-2 变体的微盘多重方法。

IF 5.4 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Md Belal Hossain, Yoshikazu Uchiyama, Samiul Alam Rajib, Akhinur Rahman, Mitsuyoshi Takatori, Benjy Jek Yang Tan, Kenji Sugata, Mami Nagashima, Mamiyo Kawakami, Hitoshi Ito, Ryota Kumagai, Kenji Sadamasu, Yasuhiro Ogi, Tatsuya Kawaguchi, Tomokazu Tamura, Takasuke Fukuhara, Masahiro Ono, Kazuhisa Yoshimura, Yorifumi Satou
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引用次数: 0

摘要

背景:包括 SARS-CoV-2 在内的高传播病毒经常发生新的突变,这些突变可通过高通量测序法检测到。然而,有必要开发一种快速、非昂贵的替代方法。在此,我们开发了一种新型多重 DNA 检测方法 Intelli-OVI,用于分析 SARS-CoV-2 的现有突变和新型突变:我们开发的 Intelli-OVI 包括基于微盘的 IntelliPlex 方法和客观变异识别 (OVI) 计算算法。我们分析了包括废水在内的 250 多份 SARS-CoV-2 阳性样本,以验证该方法的有效性:结果:IntelliPlex 使用印有独特图案的微芯片作为 DNA 探针的标记共轭物,而 OVI 可以利用 IntelliPlex 方法获得的多维数据同时鉴定多个变异体。重要的是,新的变异可通过信号的减少来识别,这表明出现了新的变异病毒,同时也提示我们需要设计更多的引物和探针。我们根据新变异病毒的出现升级了探针面板,并证明 Intelli-OVI 通过同时使用 35 种不同的探针,有效地鉴定出了 20 多种不同的 SARS-CoV-2 变异病毒:结论:正如我们在本研究中以 SARS-CoV-2 为例所展示的那样,Intelli-OVI 可以进行升级,以跟上病毒的快速发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A micro-disc-based multiplex method for monitoring emerging SARS-CoV-2 variants using the molecular diagnostic tool Intelli-OVI

A micro-disc-based multiplex method for monitoring emerging SARS-CoV-2 variants using the molecular diagnostic tool Intelli-OVI
Highly transmissible viruses including SARS-CoV-2 frequently accumulate novel mutations that are detected via high-throughput sequencing. However, there is a need to develop an alternative rapid and non-expensive approach. Here we developed a novel multiplex DNA detection method Intelli-OVI for analysing existing and novel mutations of SARS-CoV-2. We have developed Intelli-OVI that includes the micro-disc-based method IntelliPlex and computational algorithms of objective variant identification (OVI). More than 250 SARS-CoV-2 positive samples including wastewater ones were analysed to verify the efficiency of the method. IntelliPlex uses micro-discs printed with a unique pictorial pattern as a labelling conjugate for DNA probes, and OVI allows simultaneous identification of several variants using multidimensional data obtained by the IntelliPlex method. Importantly, de novo mutations can be identified by decreased signals, which indicates that there is an emergence of de novo variant virus as well as prompts the need to design additional primers and probes. We have upgraded probe panel according to the emergence of new variants and demonstrated that Intelli-OVI efficiently identified more than 20 different SARS-CoV-2 variants by using 35 different probes simultaneously. Intelli-OVI can be upgraded to keep up with rapidly evolving viruses as we showed in this study using SARS-CoV-2 as an example and may be suitable for other viruses but would need to be validated. As the COVID-19 pandemic progresses, it is increasingly becoming important to be able to detect emerging new variants of concerns of SARS-CoV-2, the virus that causes COVID-19, for accurate surveillance and timely interventions. We developed a rapid diagnostic method for detecting multiple SARS-CoV-2 variants and tested it using various starting materials such as sputum, nasopharyngeal swabs and wastewater. The method could accurately detect multiple subvariants of Omicron and showed potential for rapid adaptability to detect the virus as it evolves. This technology could enable continuous monitoring of emerging SARS-CoV-2 variants and the opportunity to intercept transmission with timely interventions to prevent viral spread. Hossain et al. establish a molecular diagnostic tool that can rapidly distinguish various SARS-CoV-2 variants by combining multiplex DNA detection and bioinformatics approaches. This approach can be useful in timely detection of newly emerging SARS-CoV-2 variants of concern.
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