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Current and Emerging Technologies for the Detection of Norovirus from Shellfish

机译:用于检测贝类诺如病毒的最新技术

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摘要

Reports of norovirus infections associated with the consumption of contaminated bivalve molluscan shellfish negatively impact both consumers and commercial shellfish operators. Current virus recovery and PCR detection methods can be expensive and time consuming. Due to the lack of rapid, user-friendly and onsite/infield methods, it has been difficult to establish an effective virus monitoring regime that is able to identify contamination points across the production line (i.e., farm-to-plate) to ensure shellfish quality. The focus of this review is to evaluate current norovirus detection methods and discuss emerging approaches. Recent advances in omics-based detection approaches have the potential to identify novel biomarkers that can be incorporated into rapid detection kits for onsite use. Furthermore, some omics techniques have the potential to simultaneously detect multiple enteric viruses that cause human disease. Other emerging technologies discussed include microfluidic, aptamer and biosensor-based detection methods developed to detect norovirus with high sensitivity from a simple matrix. Many of these approaches have the potential to be developed as user-friendly onsite detection kits with minimal costs. However, more collaborative efforts on research and development will be required to commercialize such products. Once developed, these emerging technologies could provide a way forward that minimizes public health risks associated with shellfish consumption.
机译:与食用受污染的双壳贝类软体动物贝类相关的诺如病毒感染报告对消费者和商业贝类经营者均产生负面影响。当前的病毒恢复和PCR检测方法可能是昂贵且费时的。由于缺乏快速,用户友好和现场/现场的方法,因此难以建立有效的病毒监控机制,该机制能够识别整个生产线(即从农场到盘子)的污染点以确保贝类质量。这篇综述的重点是评估当前的诺如病毒检测方法并讨论新兴方法。基于组学的检测方法的最新进展具有识别可以整合到现场使用的快速检测试剂盒中的新型生物标志物的潜力。此外,某些组学技术具有同时检测导致人类疾病的多种肠病毒的潜力。讨论的其他新兴技术包括微流控技术,适体和基于生物传感器的检测方法,旨在从简单的基质以高灵敏度检测诺如病毒。这些方法中的许多方法都有可能以最低的成本开发为用户友好的现场检测套件。但是,要使此类产品商业化,将需要在研发方面进行更多的协作。这些新兴技术一经开发,便可以提供一种前进道路,使与贝类消费相关的公共健康风险最小化。

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