基于核酸序列的扩增与 CRISPR-Cas12a 检测相结合的检测轮状病毒 A 的快速可视化方法。

Yue Chen, Junhua Wu, E-Bin Gao, Yanbo Lu, Haiyan Qiu
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摘要

导言。轮状病毒 A 是引起 5 岁以下儿童腹泻的最常见病原体,可导致脱水、电解质失衡、酸中毒、心肌炎、惊厥、肺炎等严重并发症,并危及生命。目前急需一种快速有效的核酸检测策略,以实现早期诊断和治疗,防止轮状病毒传播和相关并发症的发生。本文旨在开发一种基于核酸序列的扩增(NASBA)-Cas12a系统,利用荧光强度或侧流条带检测轮状病毒A。将NASBA技术与簇状规则间隔短回文重复序列-Cas12a系统相结合,建立了检测轮状病毒A的NASBA-Cas12a系统。NASBA-Cas12a系统可在37 ℃下70分钟内检测出轮状病毒A,且与其他病毒无交叉反应,检测限为1.2拷贝μl-1。该系统的灵敏度为 100%,特异性为 90%,阳性预测值为 97.22%,阴性预测值为 100%。卡帕值为 0.933,表明 NASBA-Cas12a 系统与反转录-PCR 系统高度一致。NASBA-Cas12a系统检测轮状病毒A的灵敏度和特异性都很高,具有很大的临床应用潜力。
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A rapid visualization method for detecting rotavirus A by combining nuclear acid sequence-based amplification with the CRISPR-Cas12a assay.

Introduction. Rotavirus A is the most common pathogen causing diarrhoea in children less than 5 years, leading to severe complications such as dehydration, electrolyte imbalances, acidosis, myocarditis, convulsions, pneumonia, and other life-threatening conditions.Gap statement. There is an urgent need for a rapid and efficient nucleic acid detection strategy to enable early diagnosis and treatment, preventing rotavirus transmission and associated complications.Aim. This article aimed to develop a nuclear acid sequence-based amplification (NASBA)-Cas12a system for detecting rotavirus A using fluorescence intensity or lateral flow strips.Methodology. The NASBA technology was combined with the clustered regularly interspaced short palindromic repeats-Cas12a system to establish a NASBA-Cas12a system for detecting rotavirus A.Results. The NASBA-Cas12a system could detect rotavirus A at 37 ℃ within 70 min and had no cross-reactivity with other viruses, achieving a limit of detection of 1.2 copies μl-1. This system demonstrated a sensitivity of 100%, specificity of 90%, positive predictive value of 97.22% and negative predictive value of 100%. The kappa value was 0.933, indicating that the NASBA-Cas12a system was highly consistent with reverse transcription-PCR.Conclusion. The NASBA-Cas12a system exhibited high sensitivity and specificity for detecting rotavirus A, showing great potential for clinical application.

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