Enhanced mosquitocidal efficacy of pyrethroid insecticides by nanometric emulsion preparation towards Culex pipiens larvae with biochemical and molecular docking studies.

Q1 Nursing
Nehad E M Taktak, Mohamed E I Badawy, Osama M Awad, Nadia E Abou El-Ela, Salwa M Abdallah
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引用次数: 0

Abstract

Background: The growing threat of vector-borne diseases and environmental pollution with conventional pesticides has led to the search for nanotechnology applications to prepare alternative products.

Methods: In the current study, four pyrethroid insecticides include alpha-cypermethrin, deltamethrin, lambda-cyhalothrin, and permethrin were incorporated into stable nanoemulsions. The optimization of nanoemulsions is designed based on the active ingredient, solvent, surfactant, sonication time, sonication cycle, and sonication energy by factorial analysis. The nanoscale emulsions' droplet size and morphology were measured by dynamic light scattering (DLS) and transmission electron microscopy (TEM), respectively. The toxicity of nanoemulsions against Culex pipiens larvae was evaluated and compared with the technical and commercial formulations. The in vitro assay of adenosine triphosphatase (ATPase), carboxylesterase (CaE), and glutathione-S-transferase (GST) were also investigated. Furthermore, molecular docking was examined to assess the binding interactions between the tested pyrethroids and the target enzymes. Also, an ecotoxicological assessment of potential effects of the tested products on the freshwater alga Raphidocelis subcapitata was determined according to OECD and EPA methods. The emulsifible concentration (EC50) and NOEC (no observed effect concentration) values were estimated for each insecticide and graded according to the GHS to determine the risk profile in aquatic life.

Results: The mean droplet diameter and zeta potential of the prepared pyrethroid nanoemulsions were found to be in the range of 72.00-172.00 nm and - 0.539 to - 15.40 mV, respectively. All insecticides' nanoemulsions showed significantly high toxicity (1.5-2-fold) against C. pipiens larvae compared to the technical and EC. The biochemical activity data proved that all products significantly inhibited ATPase. However, GST and CaE were significantly activated. Docking results proved that the pyrethroids exhibited a higher binding affinity with CaE and GST than ATPase. The docking scores ranged from - 4.33 to - 10.01 kcal/mol. Further, the biosafety studies of the nanopesticides in comparison with the active ingredient and commercial EC were carried out against the freshwater alga R. subcapitata and the mosquitocidal concentration of nanopesticides was found to be non-toxic.

Conclusion: The mosquitocidal efficacy of nano-pyrethroids formulated in a greener approach could become an alternative to using conventional pesticide application in an environmentally friendly manner.

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通过生化和分子对接研究提高拟除虫菊酯杀虫剂纳米乳剂对喙库蚊幼虫的杀蚊效力。
背景:传统杀虫剂对病媒传播疾病和环境污染的威胁日益严重,因此人们开始寻求应用纳米技术制备替代产品:本研究将四种拟除虫菊酯杀虫剂(包括甲型氯氰菊酯、溴氰菊酯、氯氰菊酯和氯菊酯)加入稳定的纳米乳剂中。通过因子分析,根据有效成分、溶剂、表面活性剂、超声时间、超声周期和超声能量对纳米乳剂进行了优化设计。通过动态光散射(DLS)和透射电子显微镜(TEM)分别测量了纳米级乳液的液滴大小和形态。评估了纳米乳剂对库蚊幼虫的毒性,并与工业制剂和商业制剂进行了比较。还研究了腺苷三磷酸酶(ATPase)、羧酸酯酶(CaE)和谷胱甘肽-S-转移酶(GST)的体外检测。此外,还进行了分子对接试验,以评估受测拟除虫菊酯与目标酶之间的结合相互作用。此外,还根据经合组织(OECD)和美国环保署(EPA)的方法,对受试产品对淡水藻类 Raphidocelis subcapitata 的潜在影响进行了生态毒理学评估。估算了每种杀虫剂的乳化浓度(EC50)和无观测效应浓度(NOEC)值,并根据全球统一制度进行了分级,以确定其对水生生物的风险概况:结果:制备的拟除虫菊酯纳米乳液的平均液滴直径和 zeta 电位分别为 72.00-172.00 nm 和 - 0.539-15.40 mV。所有杀虫剂的纳米乳剂对琵鹭幼虫的毒性(1.5-2 倍)均明显高于工业级和 EC 级杀虫剂。生化活性数据证明,所有产品都对 ATPase 有明显的抑制作用。不过,GST 和 CaE 被明显激活。对接结果表明,拟除虫菊酯与 CaE 和 GST 的结合亲和力高于与 ATPase 的结合亲和力。对接得分范围为 - 4.33 至 - 10.01 kcal/mol。此外,纳米杀虫剂与活性成分和商业 EC 相比,对淡水藻类 R. subcapitata 进行了生物安全性研究,发现纳米杀虫剂的杀蚊浓度是无毒的:结论:以更环保的方法配制的纳米拟除虫菊酯的杀蚊功效可以成为以环保方式施用传统杀虫剂的替代品。
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
CiteScore
6.50
自引率
0.00%
发文量
25
审稿时长
10 weeks
期刊介绍: The journal accepts papers of original research which are not being considered for publication elsewhere and which contribute to the advancement of knowledge of Public Health at large
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