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精油配方可用作害虫防治的新工具。

Essential oil formulations useful as a new tool for insect pest control.

作者信息

Moretti Mario D L, Sanna-Passino Giovanni, Demontis Stefania, Bazzoni Emanuela

机构信息

Dipartimento di Scienze del Farmaco, Universita di Sassari, Via Muroni 23/a, 07100 Sassari, Italy.

出版信息

AAPS PharmSciTech. 2002;3(2):E13. doi: 10.1208/pt030213.

Abstract

This study investigated the effects of some essential oils on Limantria dispar (Lepidoptera: Lymantridae, gypsy moth) larvae, one of the most serious pests of cork oak forests. The essential oils were first formulated as oil in water (o/w) emulsions and used in laboratory bioassays to assess their lethal concentration (LC50). Microcapsules containing the most promising oils (Rosmarinus officinalis and Thymus herba-barona) were then prepared by a phase separation process, followed by freeze-drying. The formulations thus obtained, characterized in terms of essential oil content and composition, morphology, storage stability, and release profile, were tested on gypsy moth larvae. The results showed that the tested oils possess interesting larvicidal effects that make them suitable for application in integrated control strategies. The microencapsulation process gave high encapsulation yields (over 98%) with both essential oils, which have different chemical compositions. The microcapsules had toxic effects at a concentration similar to that usually employed for localized treatments with microgranular synthetic pesticides. Toxicity appeared to be maximized when the microparticles adhered to the typical hair structures of several defoliator families. These formulations seem to be able to protect the core material against environmental agents and could be considered for use in controlled drug release systems. The natural active principles they contain could provide an alternative system in insect pest control.

摘要

本研究调查了某些精油对舞毒蛾(鳞翅目:枯叶蛾科,吉普赛蛾)幼虫的影响,舞毒蛾是栓皮栎林最严重的害虫之一。首先将精油配制成水包油(o/w)乳液,并用于实验室生物测定以评估其致死浓度(LC50)。然后通过相分离法制备含有最有前景的精油(迷迭香和百里香)的微胶囊,随后进行冷冻干燥。对由此获得的制剂在精油含量和组成、形态、储存稳定性和释放曲线方面进行表征,并在吉普赛蛾幼虫上进行测试。结果表明,所测试的精油具有有趣的杀幼虫作用,使其适用于综合防治策略。微囊化过程对两种化学成分不同的精油都具有高包封率(超过98%)。微胶囊在与通常用于微颗粒合成农药局部处理的浓度相似时具有毒性作用。当微粒附着在几个食叶害虫科的典型毛发结构上时,毒性似乎最大。这些制剂似乎能够保护核心材料免受环境因素影响,可考虑用于控释药物系统。它们所含的天然活性成分可为害虫防治提供替代系统。

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