Department of Bacteriology, Capital Institute of Pediatricsgrid.418633.b, Beijing, China.
Microbiol Spectr. 2022 Oct 26;10(5):e0271422. doi: 10.1128/spectrum.02714-22. Epub 2022 Sep 26.
Monkeypox virus (MPXV) is a human pathogenic virus that belongs to the genus . In 2022, MPXV caused an unprecedented number of infections in many countries. As it is difficult to distinguish MPXV from other pathogens by its symptoms in the early stage of infection, a rapid and reliable assay for MPXV detection is needed. In this study, we developed a loop-mediated isothermal amplification (LAMP) assay for the specific detection of MPXV and evaluated its application in simulated clinical samples. The A27L-1 and F3L-1 primer sets were identified as the optimal primers, and 63°C was the most appropriate reaction temperature for sequence amplification. The detection limits of the LAMP assay using primer sets A27L-1 and F3L-1 were both 20 copies/reaction mixture, which were >100-fold higher in terms of sensitivity, compared with conventional PCR. The LAMP assay findings were negative for all 21 non-MPXV pathogens, confirming the high specificity of our assay. All three types of simulated clinical samples were clearly identified by our LAMP assay, and the detection limits were consistent with the sensitivity results, indicating efficient clinical sample identification. Our rapid and reliable MPXV LAMP assay could be useful for MPXV detection and on-site diagnosis, especially in primary hospitals and rural areas. MPXV outbreaks rapidly grew in the first half of 2022, and this virus has been recognized as an increasing public health threat, particularly in the context of the COVID-19 pandemic. Thus, developing reliable and fast detection methods for MPXV is necessary.
猴痘病毒(MPXV)是一种人类致病病毒,属于. 在 2022 年,MPXV 在许多国家引起了前所未有的感染。由于在感染的早期阶段,其症状难以与其他病原体区分,因此需要一种快速可靠的 MPXV 检测方法。在这项研究中,我们开发了一种用于特异性检测 MPXV 的环介导等温扩增(LAMP)检测方法,并评估了其在模拟临床样本中的应用。A27L-1 和 F3L-1 引物组被确定为最佳引物,63°C 是序列扩增最适宜的反应温度。使用引物组 A27L-1 和 F3L-1 的 LAMP 检测方法的检测限均为 20 个拷贝/反应混合物,与常规 PCR 相比,灵敏度提高了 100 倍以上。该 LAMP 检测方法对 21 种非 MPXV 病原体均呈阴性,证实了该检测方法的高特异性。三种类型的模拟临床样本均通过我们的 LAMP 检测方法清楚地识别出来,且检测限与灵敏度结果一致,表明该方法能够有效地对临床样本进行识别。我们的快速可靠的 MPXV LAMP 检测方法可用于 MPXV 检测和现场诊断,特别是在基层医院和农村地区。2022 年上半年,MPXV 疫情迅速蔓延,该病毒已被认为是日益严重的公共卫生威胁,尤其是在 COVID-19 大流行的背景下。因此,开发可靠快速的 MPXV 检测方法是必要的。