首页> 美国卫生研究院文献>Molecules >Surfactantless Emulsions Containing Eugenol for Imidacloprid Solubilization: Physicochemical Characterization and Toxicity against Insecticide-Resistant Cimex lectularius
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Surfactantless Emulsions Containing Eugenol for Imidacloprid Solubilization: Physicochemical Characterization and Toxicity against Insecticide-Resistant Cimex lectularius

机译:含丁香酚的无表面活性剂乳液对吡虫啉的增溶作用:抗杀虫剂Cimex lectularius的理化特性和毒性

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摘要

Synthetic insecticides have been used for a long time as one of the most effective tools for insect pest control. However, the re-emergence of insect pests and their fast development of resistance, as has occurred for pyrethroid-resistant bed bugs L., make it necessary to develop new and safe strategies for effective pest control. This has fostered the research on new eco-sustainable formulations based on essential oils, which allows reducing the impact associated with the intensive use of synthetic insecticides on the environment and their effects on human health. This research explores the stability of water/eugenol/ethanol surfactantless emulsions loaded with imidacloprid (0.003 wt%), and their toxicity against a resistant bed bug strain. The results have shown that these emulsions enable the solubilization of a poorly water-soluble drug, such as the imidacloprid, without any significant modification of their stability. Furthermore, the application of the obtained formulations against the pyrethroid-resistant bed bug results in mortality in the 50–85% range upon topical and spray applications, with the increase of the eugenol content enhancing the effectiveness of the formulations. It may be expected that the ternary water/eugenol/ethanol mixtures could be further developed in the preparation of ready to use formulations, enabling the dispersion of insecticides for pest control.
机译:合成杀虫剂作为控制虫害的最有效工具之一已被长期使用。但是,正如对拟除虫菊酯有抗药性的臭虫L.所发生的那样,害虫的重新出现及其快速发展的抗性使得有必要开发有效的害虫防治新的安全策略。这促进了对基于精油的新型生态可持续配方的研究,该配方可减少与大量使用合成杀虫剂相关的对环境的影响及其对人体健康的影响。这项研究探索了载有吡虫啉(0.003 wt%)的水/丁香酚/乙醇无表面活性剂乳液的稳定性,以及它们对耐药性臭虫菌株的毒性。结果表明,这些乳剂能够溶解水溶性差的药物,例如吡虫啉,而其稳定性没有任何显着改变。此外,将获得的制剂用于抗拟除虫菊酯的臭虫后,局部和喷雾施用导致死亡率在50-85%范围内,丁香酚含量的增加增强了制剂的有效性。可以预期,在准备使用的制剂时,可以进一步开发三元水/丁香酚/乙醇混合物,从而能够分散杀虫剂以控制害虫。

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