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大蒜(Allium sativum L.)精油纳米乳液的制备及表征及其对橄榄瘿螨(蜱螨目:瘿螨科)的杀螨活性。

Formulation and characterization of garlic (Allium sativum L.) essential oil nanoemulsion and its acaricidal activity on eriophyid olive mites (Acari: Eriophyidae).

机构信息

Pesticide Chemistry Department, National Research Centre (NRC), 33 El Bohouth Street (former El Tahrir St.), Dokki, P.O. 12622, Giza, Egypt.

Plant Protection Department, National Research Centre (NRC), 33 El Bohouth Street (former El Tahrir St.), Dokki, P.O. 12622, Giza, Egypt.

出版信息

Environ Sci Pollut Res Int. 2018 Apr;25(11):10526-10537. doi: 10.1007/s11356-017-0752-1. Epub 2017 Nov 27.

DOI:10.1007/s11356-017-0752-1
PMID:29181754
Abstract

Green and nanoacaricides including essential oil (EO) nanoemulsions are important compounds to provide new, active, safe acaricides and lead to improvement of avoiding the risk of synthetic acaricides. This study was carried out for the first time on eriophyid mites to develop nanoemulsion of garlic essential oil by ultrasonic emulsification and evaluate its acaricidal activity against the two eriophyid olive mites Aceria oleae Nalepa and Tegolophus hassani (Keifer). Acute toxicity of nanoemulsion was also studied on male rats. Garlic EO was analyzed by gas chromatography-mass spectrometry (GC-MS), and the major compounds were diallyl sulfide (8.6%), diallyl disulfide (28.36%), dimethyl tetrasulfide (15.26%), trisulfide,di-2-propenyl (10.41%), and tetrasulfide,di-2-propenyl (9.67%). Garlic oil nanoemulsion with droplet size 93.4 nm was formulated by ultrasonic emulsification for 35 min. Emulsification time and oil and surfactant ratio correlated to the emulsion droplet size and stability. The formulated nanoemulsion showed high acaricidal activity against injurious eriophyid mites with LC 298.225 and 309.634 μg/ml, respectively. No signs of nanoemulsion toxicity were noted in treating rats; thus, it may be considered non-toxic to mammals. Stability of garlic oil nanoemulsion, high acaricidal activity, and the absence of organic toxic solvents make the formulation that may be a possible acaricidal product. Results suggest the possibility of developing suitable natural nanoacaricide from garlic oil.

摘要

绿色和纳米杀螨剂,包括精油(EO)纳米乳液,是提供新的、有效、安全的杀螨剂的重要化合物,并有助于避免合成杀螨剂的风险。本研究首次针对叶螨进行,通过超声乳化法制备大蒜精油纳米乳液,并评价其对两种橄榄叶螨(Aceria oleae Nalepa 和 Tegolophus hassani(Keifer))的杀螨活性。还研究了纳米乳液对雄性大鼠的急性毒性。大蒜精油通过气相色谱-质谱联用(GC-MS)进行分析,主要化合物为二烯丙基硫醚(8.6%)、二烯丙基二硫醚(28.36%)、二甲基四硫醚(15.26%)、三硫代二烯丙基(10.41%)和四硫代二烯丙基(9.67%)。通过超声乳化 35 分钟制备出粒径为 93.4nm 的大蒜油纳米乳液。乳化时间和油与表面活性剂的比例与乳液粒径和稳定性相关。所制备的纳米乳液对有害叶螨具有高杀螨活性,LC 298.225 和 309.634μg/ml。在治疗大鼠时未发现纳米乳液毒性迹象,因此,它可能被认为对哺乳动物无毒。大蒜油纳米乳液的稳定性、高杀螨活性以及没有有机溶剂使得该制剂可能成为一种潜在的杀螨剂产品。研究结果表明,从大蒜油中开发出合适的天然纳米杀螨剂是可行的。

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