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Nucleic Acid-Based Sensing Techniques for Diagnostics and Surveillance of Influenza

机译:基于核酸的疾病诊断和甲型甲型监测的传感技术

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摘要

Influenza virus poses a threat to global health by causing seasonal outbreaks as well as three pandemics in the 20th century. In humans, disease is primarily caused by influenza A and B viruses, while influenza C virus causes mild disease mostly in children. Influenza D is an emerging virus found in cattle and pigs. To mitigate the morbidity and mortality associated with influenza, rapid and accurate diagnostic tests need to be deployed. However, the high genetic diversity displayed by influenza viruses presents a challenge to the development of a robust diagnostic test. Nucleic acid-based tests are more accurate than rapid antigen tests for influenza and are therefore better candidates to be used in both diagnostic and surveillance applications. Here, we review various nucleic acid-based techniques that have been applied towards the detection of influenza viruses in order to evaluate their utility as both diagnostic and surveillance tools. We discuss both traditional as well as novel methods to detect influenza viruses by covering techniques that require nucleic acid amplification or direct detection of viral RNA as well as comparing advantages and limitations for each method. There has been substantial progress in the development of nucleic acid-based sensing techniques for the detection of influenza virus. However, there is still an urgent need for a rapid and reliable influenza diagnostic test that can be used at point-of-care in order to enhance responsiveness to both seasonal and pandemic influenza outbreaks.
机译:流感病毒通过造成20世纪的季节性爆发以及三个流行病来构成对全球健康的威胁。在人类中,疾病主要是由流感A和B病毒引起的,而流感C病毒主要导致儿童温和的疾病。流感D是在牛和猪中发现的新兴病毒。为了减轻与流感相关的发病率和死亡率,需要部署快速和准确的诊断测试。然而,流感病毒显示的高遗传多样性对稳健诊断测试的发展提出了挑战。基于核酸的试验比流感的快速抗原试验更精确,因此更好地用于诊断和监测应用中的候选者。在此,我们审查了已经朝向甲型病毒检测的各种基于核酸的技术,以便评估它们作为诊断和监测工具的效用。我们通过覆盖需要核酸扩增或直接检测病毒RNA的技术来讨论传统和新的方法来检测流感病毒,以及比较每种方法的优点和限制。在检测流感病毒的基于核酸的传感技术方面存在显着进展。然而,仍然迫切需要一种快速且可靠的流感诊断测试,可以在护理点使用,以提高对季节性和大流行性流感爆发的反应。

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