Development of a loop-mediated isothermal amplification detection assay for Dictyocaulus viviparus (Bloch, 1782) lungworm: DviLAMP.

IF 2.6 2区 农林科学 Q1 VETERINARY SCIENCES
Frontiers in Veterinary Science Pub Date : 2024-10-04 eCollection Date: 2024-01-01 DOI:10.3389/fvets.2024.1454065
Sirapat Nak-On, Paul Campbell, Maha Mansour Shalaby, Jennifer McIntyre, Alistair Antonopoulos, Thapana Chontananarth, Roz Laing
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引用次数: 0

Abstract

The bovine lungworm, Dictyocaulus viviparus (Bloch, 1782), is highly pathogenic and disease outbreaks can be difficult to predict and manage. Rapid and accurate diagnosis is vital, but without a sensitive diagnostic test this remains challenging in clinical practice. High performance molecular detection tools are therefore required to improve the diagnosis of this parasite and promote the implementation of strategic control measures. Loop-mediated isothermal amplification (LAMP), a rapid DNA assay, offers potential for field-based detection. Here we report a novel LAMP assay (DviLAMP), that was designed to target the D. viviparus internal transcribed spacer 2 (ITS2) ribosomal DNA region. Firstly, genomic DNA was extracted from a single D. viviparus L1 larva to amplify and clone the ITS2 into the recombinant plasmid (DviITS2). The DviLAMP successfully detected the target, with results shown by gel electrophoresis and real-time analysis, in addition to point-of-care amenable end-point detection: colorimetry and lateral flow dipstick (LFD). Analytical sensitivity can detect 0.5 ng DviITS2 following 45 min of incubation at 64°C, increasing to just 1 pg following 90 min of incubation. Using the same primers, other nematodes of cattle, Ostertagia ostertagi and Cooperia oncophora, were also detectable both by gel electrophoresis and real-time. However, when FITC and biotin tagged primers were incorporated to adapt the DviLAMP to LFD end-point detection, the LFD showed specific detection of D. viviparus. Further development of DviLAMP as a point-of-care test could significantly improve the sensitivity of lungworm diagnosis in the field.

开发环介导等温扩增检测法,用于检测肺线虫 Dictyocaulus viviparus (Bloch, 1782):DviLAMP。
牛肺吸虫(Dictyocaulus viviparus)(布洛赫,1782 年)具有高度致病性,疾病爆发难以预测和管理。快速、准确的诊断至关重要,但如果没有灵敏的诊断测试,这在临床实践中仍具有挑战性。因此,需要高性能的分子检测工具来改进对这种寄生虫的诊断,促进战略控制措施的实施。环路介导等温扩增(LAMP)是一种快速 DNA 检测方法,具有现场检测的潜力。在此,我们报告了一种新型 LAMP 检测方法(DviLAMP),该方法是针对 D. viviparus 内部转录间隔 2(ITS2)核糖体 DNA 区域设计的。首先,从单条D. viviparus L1幼虫中提取基因组DNA,扩增ITS2并克隆到重组质粒(DviITS2)中。DviLAMP 成功地检测到了目标物,其结果可通过凝胶电泳和实时分析来显示,此外还可通过比色法和侧流浸量尺(LFD)进行护理点检测。在 64°C 孵育 45 分钟后,分析灵敏度可检测到 0.5 纳克 DviITS2,孵育 90 分钟后,检测灵敏度可提高到 1 皮克。使用相同的引物,凝胶电泳和实时检测也能检测到牛的其他线虫--Ostertagia ostertagi 和 Cooperia oncophora。然而,当加入 FITC 和生物素标记引物使 DviLAMP 适应 LFD 终点检测时,LFD 显示出对 D. viviparus 的特异性检测。将 DviLAMP 进一步开发成一种护理点检测方法,可大大提高现场诊断肺线虫的灵敏度。
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来源期刊
Frontiers in Veterinary Science
Frontiers in Veterinary Science Veterinary-General Veterinary
CiteScore
4.80
自引率
9.40%
发文量
1870
审稿时长
14 weeks
期刊介绍: Frontiers in Veterinary Science is a global, peer-reviewed, Open Access journal that bridges animal and human health, brings a comparative approach to medical and surgical challenges, and advances innovative biotechnology and therapy. Veterinary research today is interdisciplinary, collaborative, and socially relevant, transforming how we understand and investigate animal health and disease. Fundamental research in emerging infectious diseases, predictive genomics, stem cell therapy, and translational modelling is grounded within the integrative social context of public and environmental health, wildlife conservation, novel biomarkers, societal well-being, and cutting-edge clinical practice and specialization. Frontiers in Veterinary Science brings a 21st-century approach—networked, collaborative, and Open Access—to communicate this progress and innovation to both the specialist and to the wider audience of readers in the field. Frontiers in Veterinary Science publishes articles on outstanding discoveries across a wide spectrum of translational, foundational, and clinical research. The journal''s mission is to bring all relevant veterinary sciences together on a single platform with the goal of improving animal and human health.
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