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开发无杀虫剂诱捕蚊帐以控制蚊子并应对疟疾媒介控制中的抗药性:一种新的思维方式。

Development of an Insecticide-Free Trapping Bednet to Control Mosquitoes and Manage Resistance in Malaria Vector Control: A New Way of Thinking.

作者信息

Mouhamadou Chouaibou S, Luan Kun, Fodjo Behi K, West Andre J, McCord Marian G, Apperson Charles S, Roe R Michael

机构信息

Centre Suisse de Recherches Scientifiques en Côte d'Ivoire (CSRS), 01BP, Abidjan 1301, Cote d'Ivoire.

Department of Entomology and Plant Pathology, Campus Box 7647, 3230 Ligon Street, North Carolina State University, Raleigh, NC 27695, USA.

出版信息

Insects. 2020 Oct 26;11(11):732. doi: 10.3390/insects11110732.

Abstract

Mosquito-borne malaria kills 429,000 people each year with the problem being acute in sub-Saharan Africa. The successes gained with long-lasting pyrethroid-treated bednets are now in jeopardy because of wide-spread, pyrethroid resistance in mosquitoes. Using crowd modeling theory normalized for standard bednet architecture, we were able to design an attract-trap-kill technology for mosquitoes that does not require insecticides. Using three-dimensional polyester knitting and heat fixation, trap funnels were developed with high capture efficacy with no egression under worst-case laboratory conditions. Field testing in Africa in WHO huts with Gen1-3 T (trap)-Nets validated our model, and as predicted, Gen3 had the highest efficacy with a 4.3-fold greater trap-kill rate with no deterrence or repellency compared to Permanet 2.0, the most common bednet in Africa. A T-Net population model was developed based on field data to predict community-level mosquito control compared to a pyrethroid bednet. This model showed the Gen3 non-insecticidal T-Net under field conditions in Africa against pyrethroid resistant mosquitoes was 12.7-fold more efficacious than single chemical, pyrethroid-treated nets.

摘要

蚊媒传播的疟疾每年导致42.9万人死亡,这一问题在撒哈拉以南非洲地区尤为严重。由于蚊子对拟除虫菊酯产生广泛抗性,长期使用经拟除虫菊酯处理的蚊帐所取得的成效如今受到威胁。利用针对标准蚊帐结构进行归一化处理的群体建模理论,我们得以设计出一种无需杀虫剂的诱捕杀灭蚊子技术。通过三维聚酯编织和热固定工艺,开发出了诱捕漏斗,在最坏的实验室条件下具有高捕获效率且无逃逸现象。在非洲的世卫组织试验 hut 中使用第1代至第3代 T(诱捕)蚊帐进行现场测试验证了我们的模型,正如所预测的那样,与非洲最常见的蚊帐 Permanet 2.0相比,第3代蚊帐具有最高的功效,诱捕杀灭率高出4.3倍,且无威慑或驱避作用。基于现场数据开发了一个T蚊帐种群模型,以预测与拟除虫菊酯蚊帐相比的社区层面蚊虫控制情况。该模型表明,在非洲野外条件下,第3代非杀虫T蚊帐针对对拟除虫菊酯具有抗性的蚊子,其效果比单一化学拟除虫菊酯处理蚊帐高出12.7倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1f1/7692756/e486450a1ca8/insects-11-00732-g001.jpg

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