基孔肯雅
白纹伊蚊
登革热
寨卡病毒
载体(分子生物学)
欧洲联盟
风险分析(工程)
灭蚊
病媒控制
RNA干扰
生物
生物技术
业务
病毒学
生态学
工程类
疟疾
埃及伊蚊
遗传学
病毒
电压
重组DNA
幼虫
经济政策
核糖核酸
免疫学
感应电动机
电气工程
基因
作者
Ruth Müller,Miklós Bálint,Kornelia Hardes,Henner Hollert,Sven Klimpel,Eileen Knorr,Judith Kochmann,Kwang‐Zin Lee,Marion Mehring,Steffen U. Pauls,Greet Smets,Antje Steinbrink,Andreas Vilcinskas
标识
DOI:10.1016/j.biotechadv.2023.108167
摘要
The Asian tiger mosquito Aedes albopictus is currently spreading across Europe, facilitated by climate change and global transportation. It is a vector of arboviruses causing human diseases such as chikungunya, dengue hemorrhagic fever and Zika fever. For the majority of these diseases, no vaccines or therapeutics are available. Options for the control of Ae. albopictus are limited by European regulations introduced to protect biodiversity by restricting or phasing out the use of pesticides, genetically modified organisms (GMOs) or products of genome editing. Alternative solutions are thus urgently needed to avoid a future scenario in which Europe faces a choice between prioritizing human health or biodiversity when it comes to Aedes-vectored pathogens. To ensure regulatory compliance and public acceptance, these solutions should preferably not be based on chemicals or GMOs and must be cost-efficient and specific. The present review aims to synthesize available evidence on RNAi-based mosquito vector control and its potential for application in the European Union. The recent literature has identified some potential target sites in Ae. albopictus and formulations for delivery. However, we found little information concerning non-target effects on the environment or human health, on social aspects, regulatory frameworks, or on management perspectives. We propose optimal designs for RNAi-based vector control tools against Ae. albopictus (target product profiles), discuss their efficacy and reflect on potential risks to environmental health and the importance of societal aspects. The roadmap from design to application will provide readers with a comprehensive perspective on the application of emerging RNAi-based vector control tools for the suppression of Ae. albopictus populations with special focus on Europe.
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