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Proposed use of spatial mortality assessments as part of the pesticide evaluation scheme for vector control

机译:建议将空间死亡率评估作为农药控制媒介的农药评估计划的一部分

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Background The WHO Pesticide Evaluation Scheme to evaluate the efficacy of insecticides does not include the testing of a lethal effect at a distance. A tool was developed to evaluate the spatial mortality of an insecticide product against adult mosquitoes at a distance under laboratory and field conditions. Operational implications are discussed. Methods Insecticide paint, Inesfly 5A IGR?, containing two organophosphates (OPs): chlorpyrifos and diazinon, and one insect growth regulator (IGR): pyriproxyfen, was the product tested. Laboratory tests were performed using “distance boxes” with surfaces treated with one layer of control or insecticide paint at a dose of 1 kg/6 sq m. Field tests were conducted up to 12 months in six experimental huts randomly allocated to control or one or two layers of insecticide paint at 1 kg/6 sq m. All distance tests were performed using reference-susceptible strains of Anopheles gambiae and Culex quinquefasciatus left overnight at a distance of 1 m from control or treated surfaces. Results After an overnight exposition at distances of 1 m, field and laboratory evaluations at 0 months after treatment (T0) yielded 100% mortality rates on surfaces treated with one layer at 1 kg/6 sq m against susceptible strains of An. gambiae and Cx. quinquefasciatus. Testing for long-term efficacy in the field gave mortality rates of 96-100% after an overnight exposition at a distance of 1 m for up to 12 months in huts where a larger volume was treated (walls and ceilings) with one or two layers of insecticide paint. Conclusion A comprehensive evaluation of the full profile of insecticide products, both upon contact and spatially, may help rationalize vector control efforts more efficiently. Treating a large enough volume may extend a product’s mortality efficacy in the long-term, which contact tests would fail to assess. It is hereby proposed to explore the development of cost effective methods to assess spatial mortality and to include them as one additional measurement of insecticide efficacy against mosquitoes and other arthropod vectors in WHOPES Phase I and Phase II studies.
机译:背景技术用于评估杀虫剂功效的WHO杀虫剂评估计划不包括远距离测试致死性。开发了一种工具来评估杀虫剂产品在实验室和野外条件下远距离对成年蚊子的空间死亡率。讨论了运营意义。方法测试产品为Inesfly 5A IGR?的杀虫剂涂料,其中含有两种有机磷酸盐(毒死and)和二嗪农,以及一种昆虫生长调节剂(IGR):吡虫杀。实验室测试是使用“距离盒”进行的,表面用一层1 kg / 6平方米的对照或杀虫剂涂料处理过。在六个实验小屋​​中进行了长达12个月的现场测试,这些实验小屋随机分配为1 kg / 6平方米的对照漆或一层或两层杀虫剂涂料。所有距离测试均使用冈比亚按蚊和库克斯库克斯菌的参考敏感菌株在距对照或处理表面1 m的距离处过夜放置。结果在隔夜曝光1 m后,处理后0个月(T0)的现场和实验室评估得出,在一层以1 kg / 6平方米的层处理的表面上,对易感An菌株的死亡率为100%。冈比亚和Cx。 quinquefasciatus。在野外进行长期疗效测试后,在经过1层或2层处理较大体积(墙壁和天花板)的小屋中,在距离1 m处过夜暴露长达12个月后,死亡率为96-100%杀虫剂涂料。结论对杀虫剂产品在接触时和在空间上的完整概况进行全面评估,可能有助于更有效地合理控制病媒。从长远来看,处理足够大的体积可能会延长产品的死亡率,而接触测试将无法对其进行评估。因此,建议在WHOPES I期和II期研究中探索开发经济有效的方法来评估空间死亡率,并将其作为对蚊子和其他节肢动物媒介的杀虫剂功效的另一种测量方法。

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