Assessment of a Low-Cost Mosquito-Borne Disease Early Warning System Integrating Molecular Mosquito and Arbovirus Surveillance.

IF 2.3 2区 农林科学 Q3 INFECTIOUS DISEASES
Nidya Jurado-Sánchez, Guillermo Espinosa-Reyes, Andreu Comas-García, Fernando Díaz Barriga-Martínez, Mauricio Comas-García, Sandra E Guerra-Palomares, Christian A García-Sepúlveda
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引用次数: 0

Abstract

Introduction: Arboviruses can be transmitted by Anophelinae (Anopheles genus) or Culicinae (Aedes and Culex genera) mosquitoes. Ecological and sociodemographic factors such as urbanisation, poverty, access to health systems and social inequality determine vector density and risk of disease transmission. Effective surveillance of vectors and arboviruses is crucial for guiding public health strategies.

Methods: We developed a low-cost molecular approach integrating mosquito and arbovirus surveillance and assessed its performance during 2021 in San Luis Potosí, Mexico. Our approach incorporates an innovative mosquito trap (Yoy trap), an ITS2-based mosquito molecular taxonomy assay and the use of FTA card preservation of arboviral RNA.

Results: A total of 16,319 mosquitoes were collected, Culex spp. genus being the most abundant (63.3%) followed by Aedes spp. (26.6%) and Anopheles spp. (4.7%). Our approach allowed us to characterise mosquito population dynamics including the centripetal expansion of mosquito range from city outskirts to urban areas. Viral RNA screening of 124 FTA cards identified the presence of four arboviruses in mosquitoes of the city of San Luis Potosi: DENV (6.5%), ZIKV (5.6%), CHIKV (1.6%) and WNV (3.2%).

Conclusions: This surveillance system detected DENV in mosquitoes 7 weeks prior to the first reported human case, further supporting the public health benefits deriving from the adoption of similar innovative, low-cost and robust surveillance systems.

结合蚊子分子和虫媒病毒监测的低成本蚊媒疾病预警系统的评估。
虫媒病毒可由按蚊科(按蚊属)或库蚊科(伊蚊属和库蚊属)传播。城市化、贫困、获得卫生系统和社会不平等等生态和社会人口因素决定了病媒密度和疾病传播风险。媒介和虫媒病毒的有效监测对于指导公共卫生战略至关重要。方法:我们开发了一种低成本的分子方法,将蚊子和虫媒病毒监测结合起来,并评估了该方法2021年在墨西哥圣路易斯Potosí的表现。我们的方法结合了一种创新的蚊子诱捕器(Yoy诱捕器)、一种基于its2的蚊子分子分类试验和使用FTA卡保存虫媒病毒RNA。结果:共捕获蚊虫16319只,以库蚊属最多(63.3%),其次为伊蚊(26.6%)和按蚊(4.7%);我们的方法使我们能够描述蚊子种群动态,包括蚊子范围从城市郊区向城市地区的向心扩张。对124张FTA卡片进行病毒RNA筛选,发现圣路易斯波托西市蚊虫中存在4种虫媒病毒:DENV(6.5%)、ZIKV(5.6%)、CHIKV(1.6%)和WNV(3.2%)。结论:该监测系统在首次报告人间病例前7周在蚊子中发现DENV,进一步支持采用类似的创新、低成本和强大的监测系统所带来的公共卫生效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Zoonoses and Public Health
Zoonoses and Public Health 医学-传染病学
CiteScore
5.30
自引率
4.20%
发文量
115
审稿时长
6-12 weeks
期刊介绍: Zoonoses and Public Health brings together veterinary and human health researchers and policy-makers by providing a venue for publishing integrated and global approaches to zoonoses and public health. The Editors will consider papers that focus on timely collaborative and multi-disciplinary research in zoonoses and public health. This journal provides rapid publication of original papers, reviews, and potential discussion papers embracing this collaborative spirit. Papers should advance the scientific knowledge of the sources, transmission, prevention and control of zoonoses and be authored by scientists with expertise in areas such as microbiology, virology, parasitology and epidemiology. Articles that incorporate recent data into new methods, applications, or approaches (e.g. statistical modeling) which enhance public health are strongly encouraged.
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