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当代和潜在未来登革热分子诊断中的问题。

Issues in contemporary and potential future molecular diagnostics for dengue.

机构信息

a Department of Medical Microbiology, Faculty of Medicine , University of Malaya , Kuala Lumpur , Malaysia.

出版信息

Expert Rev Mol Diagn. 2017 Mar;17(3):217-223. doi: 10.1080/14737159.2017.1275963. Epub 2016 Dec 30.

Abstract

Dengue has been the most common arbovirus infection worldwide with 2.5 billion people living in over 100 endemic tropical and subtropical regions. Due to the high number of asymptomatic cases and the signs and symptoms being rather unspecific, dengue cases are often under-reported and might influence dengue surveillance programs. Therefore, a rapid, easy to use, inexpensive, and highly sensitive and specific diagnostic tool is essential for early and accurate diagnosis to ease the clinical management of patients as well as for the development of new interventions. Areas covered: This report discusses the contemporary dengue diagnostic tool, mainly from the aspect of molecular diagnosis where an overview of several nuclei acid amplification tests has been included. Potential molecular diagnostic tools such as biosensor and microarray are also discussed in this report. Expert commentary: Rapidness and accuracy in terms of sensitivity and specificity is imperative in dengue diagnosis for both clinical management and surveillance of dengue to ensure early treatment and corrective control measures can be carried out. In the next five years it is expected that there will be newer tests developed using not only the lateral flow techniques but more specifically biosensors and nanotechnology. These new technologies will have to be validated with the appropriate number and category of samples and to address the issue of cross-reactivity.

摘要

登革热是全球最常见的虫媒病毒感染病,有超过 25 亿人生活在超过 100 个流行热带和亚热带地区。由于无症状病例数量众多,且症状较为不典型,登革热病例常常报告不足,这可能会影响登革热监测计划。因此,一种快速、易用、廉价、高度敏感和特异的诊断工具对于早期准确诊断至关重要,有助于减轻患者的临床管理负担,并为新干预措施的开发提供支持。

涵盖领域

本报告主要从分子诊断方面讨论了当代登革热诊断工具,其中包括对几种核酸扩增检测的概述。本报告还讨论了生物传感器和微阵列等潜在的分子诊断工具。

专家评论

在登革热诊断中,快速和准确性在灵敏度和特异性方面非常重要,这对于临床管理和登革热监测都至关重要,以确保能够进行早期治疗和采取纠正性控制措施。在未来五年内,预计将开发出更多使用横向流动技术,更具体地说是生物传感器和纳米技术的新型检测方法。这些新技术必须使用适当数量和类别样本进行验证,并解决交叉反应问题。

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