Blázquez Ana-Belén, Jiménez de Oya Nereida
Departamento de Biotecnología, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA-CSIC), Ctra. de La Coruña, km 7.5, 28040 Madrid, Spain.
Synth Syst Biotechnol. 2024 Oct 26;10(1):194-206. doi: 10.1016/j.synbio.2024.10.005. eCollection 2025.
Flaviviruses affect the lives of millions of people in endemic regions and also have the potential to impact non-endemic areas. Factors such as climate change, global warming, deforestation, and increased travel and trade are linked to the spread of flaviviruses into new habitats and host species. Given the absence of specific treatments and the limited availability of vaccines, it is imperative to understand the biology of flaviviruses and develop rapid and sensitive diagnostic tests. These measures are essential for preventing the transmission of these potentially life-threatening pathogens. Flavivirus infections are mainly diagnosed using conventional methods. However, these techniques present several drawbacks, including high expenses, time-consuming procedures, and the need for skilled professionals. The search for fast, easy-to-use, and affordable alternative techniques as a feasible solution for developing countries is leading to the search for new methods in the diagnosis of flaviviruses, such as biosensors. This review provides a comprehensive overview of different biosensor detection strategies for flaviviruses and describes recent advances in diagnostic technologies. Finally, we explore their future prospects and potential applications in pathogen detection. This review serves as a valuable resource to understand advances in ongoing research into new biosensor-based diagnostic methods for flaviviruses.
黄病毒影响着流行地区数百万人的生活,并且也有可能影响非流行地区。气候变化、全球变暖、森林砍伐以及旅行和贸易增加等因素与黄病毒传播到新栖息地和宿主物种有关。鉴于缺乏特效治疗方法且疫苗供应有限,了解黄病毒生物学特性并开发快速灵敏的诊断测试势在必行。这些措施对于预防这些潜在的危及生命的病原体传播至关重要。黄病毒感染主要采用传统方法进行诊断。然而,这些技术存在几个缺点,包括费用高昂、程序耗时以及需要专业技术人员。在发展中国家,寻求快速、易用且经济实惠的替代技术作为可行解决方案,促使人们寻找黄病毒诊断的新方法,如生物传感器。本综述全面概述了黄病毒的不同生物传感器检测策略,并描述了诊断技术的最新进展。最后,我们探讨了它们在病原体检测中的未来前景和潜在应用。本综述是了解基于新型生物传感器的黄病毒诊断方法正在进行的研究进展的宝贵资源。