Edwards Natasha, Reboud Julien, Yan Xiaoxiang, Guo Xin, Cooper Jonathan M, Wadsworth Jemma, Waters Ryan, Mioulet Valerie, King Donald P, Shaw Andrew E
The Pirbright Institute, Woking, United Kingdom.
Division of Biomedical Engineering, School of Engineering, University of Glasgow, Glasgow, United Kingdom.
Front Microbiol. 2024 Jul 31;15:1429288. doi: 10.3389/fmicb.2024.1429288. eCollection 2024.
Foot-and-mouth disease (FMD) is a highly contagious viral disease of cloven-hoofed animals responsible for economic losses that amount to >$20 billion annually. Rapid recognition of FMD cases provides vital information to guide control programmes. A range of point-of-need amplification technologies have been developed which allow sensitive detection of the causative virus (FMDV) in the field at locations remote from laboratories. Here we describe a novel system to detect FMDV RNA using loop-mediated isothermal amplification (LAMP). This test was evaluated using a panel of FMDV isolates ( = 79) and RNA standards demonstrating capability to amplify viral genome directly from clinical material in the absence of nucleic acid extraction. This extraction-free RT-LAMP assay was transferred to a bespoke closed-system lateral flow test (LFT) that was used in combination with a low-cost hand-held heater. Our results show that the RT-LAMP-LFT assay retains a high level of diagnostic and analytical sensitivity when using direct clinical material, with a limit of detection under 80 copies per reaction. Together, our data support the potential for the use of this assay at the point-of-need to facilitate rapid feedback on the status of suspect cases.
口蹄疫(FMD)是一种偶蹄类动物的高度传染性病毒性疾病,每年造成的经济损失超过200亿美元。快速识别口蹄疫病例可为控制计划提供重要信息。现已开发出一系列即时需求扩增技术,可在远离实验室的现场灵敏检测致病病毒(口蹄疫病毒,FMDV)。在此,我们描述一种使用环介导等温扩增(LAMP)检测FMDV RNA的新型系统。使用一组FMDV分离株(n = 79)和RNA标准品对该检测方法进行了评估,结果表明该方法能够在不进行核酸提取的情况下直接从临床材料中扩增病毒基因组。这种无需提取核酸的逆转录LAMP检测方法被转移至定制的封闭系统侧向流动检测(LFT)中,并与低成本的手持式加热器结合使用。我们的结果表明,当使用直接临床材料时,逆转录LAMP-LFT检测方法保持了较高的诊断和分析灵敏度,每个反应的检测限低于80拷贝。总之,我们的数据支持了在即时需求情况下使用该检测方法以促进对疑似病例状况进行快速反馈的潜力。