Supplementary General Sciences Department, Faculty of Oral and Dental Medicine, Future University in Egypt, Cairo 11835, Egypt.
Department of Entomology, Faculty of Science, Benha University, Benha 13518, Egypt.
Molecules. 2022 Apr 8;27(8):2424. doi: 10.3390/molecules27082424.
(1) Background: Mosquito control with essential oils is a growing demand. This work evaluated the novel larvicidal and adulticidal activity of fennel and green tea oils and their Layered double hydroxides (LDHs) nanohybrid against () in both laboratory and field conditions and evaluated their effect against non-target organisms; (2) Methods: Two types of nanoclays, MgAl-LDH and NiAl-LDH were synthesized and characterized using PXRD, TEM and SEM, whereas their elemental analysis was accomplished by SEM-EDX; (3) Results: Mg and Ni LDHs were synthesized by the co-precipitation method. The adsorption and desorption of active ingredients were conducted using LC MS/MS, with reference to the SEM-EXD analysis. The desorption process of MgAl-LDH intercalated green tea oil was conducted using ethanol, and reveled significant peaks related to polyphenols and flavonoids like Vanillin, Catechin, Daidzein, Ellagic acid, Naringenin, Myricetin and Syringic acid with concentrations of 0.76, 0.73, 0.67, 0.59, 0.52, 0.44 and 0.42 μg/g, respectively. The larvicidal LC values of fennel oil, Mg-LDH-F, and Ni-LDH-F were 843.88, 451.95, 550.12 ppm, respectively, whereas the corresponding values of green tea were 938.93, 530.46, and 769.94 ppm. The larval reduction percentage of fennel oil and Mg-LDH-F reached 90.1 and 96.2%, 24 h PT and their persistence reached five and seven days PT, respectively. The reduction percentage of green tea oil and Mg-LDH-GT reached 88.00 and 92.01%, 24 h PT and their persistence reached five and six days PT, respectively. Against adults, Mg-LDH-GT and Ni-LDH-GT were less effective than green tea oil as their LC values were 5.45, 25.90, and 35.39%, respectively. The reduction in adult density PT with fennel oil, Mg-LDH-F, green tea oil, and Mg-LDH-GT reached 83.1, 100, 77.0, and 99.0%, respectively, 24 h PT and were effective for three days. Mg-LDH-GT and Mg-LDH-F increased the predation (71% and 69%), respectively; (4) Conclusions: For the first time, Mg-LDH-GT and Mg-LDH-F was the best system loaded with relatively good desorption release to its active ingredients and significantly affected larvae and adults in both laboratory and field circumstances, and it could be included in mosquito control.
(1)背景:利用精油进行蚊虫控制是一种日益增长的需求。本研究评估了茴香和绿茶油及其层状双氢氧化物(LDHs)纳米杂化物在实验室和野外条件下对 ()的新型杀幼虫和杀成虫活性,并评估了它们对非靶标生物的影响;(2)方法:合成了两种类型的纳米粘土,MgAl-LDH 和 NiAl-LDH,并通过 PXRD、TEM 和 SEM 进行了表征,而其元素分析则通过 SEM-EDX 完成;(3)结果:通过共沉淀法合成了 Mg 和 Ni LDHs。采用 LC-MS/MS 进行活性成分的吸附和解吸,参考 SEM-EXD 分析。使用乙醇进行 MgAl-LDH 插层绿茶油的解吸过程,揭示了与儿茶素、表儿茶素、大豆苷元、鞣花酸、柚皮苷、杨梅素和丁香酸等多酚和类黄酮相关的显著峰,其浓度分别为 0.76、0.73、0.67、0.59、0.52、0.44 和 0.42μg/g。茴香油、Mg-LDH-F 和 Ni-LDH-F 的杀幼虫 LC 值分别为 843.88、451.95 和 550.12 ppm,而绿茶的相应值分别为 938.93、530.46 和 769.94 ppm。茴香油和 Mg-LDH-F 的幼虫减少率分别达到 90.1%和 96.2%,24 小时 PT,其持久性达到 5 天和 7 天 PT。绿茶油和 Mg-LDH-GT 的幼虫减少率分别达到 88.00%和 92.01%,24 小时 PT,其持久性达到 5 天和 6 天 PT。在成虫方面,Mg-LDH-GT 和 Ni-LDH-GT 的 LC 值分别为 5.45%、25.90%和 35.39%,因此对成虫的效果不如绿茶油。24 小时 PT 时,成虫密度降低率分别为 83.1%、100%、77.0%和 99.0%,持续时间为 3 天。Mg-LDH-GT 和 Mg-LDH-F 分别使捕食率增加了 71%和 69%;(4)结论:这是首次报道 Mg-LDH-GT 和 Mg-LDH-F 是负载相对较好的解吸释放其活性成分的最佳体系,显著影响了实验室和野外条件下的 和成虫,并可用于蚊虫控制。