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单萜类化合物及其乙酰衍生物对埃及伊蚊(双翅目:蚊科)幼虫的结构-活性关系。

Structure-activity relationships of monoterpenes and acetyl derivatives against Aedes aegypti (Diptera: Culicidae) larvae.

机构信息

Plant Protection Division, Central Institute of Medicinal and Aromatic Plants, Lucknow, India.

出版信息

Pest Manag Sci. 2013 Nov;69(11):1235-8. doi: 10.1002/ps.3488. Epub 2013 Mar 21.

DOI:10.1002/ps.3488
PMID:23908002
Abstract

BACKGROUND

Dengue fever virus transmitted by Aedes aegypti causes lethal mortalities of human beings, and, because of the lack of any vaccine, management of this vector, especially with phytochemicals, is essential. In the present investigation, the structure-activity relationship of monoterpenes and their acetyl derivatives was studied to identify structural features that are responsible for mosquitocidal activity.

RESULTS

Derivatization of monoterpenes (eugenol, geraniol, linalool, L-menthol and terpeniole) followed by structure-activity relationship studies identified all five acetyl derivatives as having enhanced mosquitocidal activity against fourth-instar larvae of Aedes aegypti. Acetylation of the hydroxyl group in general increased activity in comparison with hydroxyl compounds. Based on LC50 values (ppm), the activities could be placed in the following order: eugenyl acetate (50.2) > linalyl acetate (119.7) > terpinyl acetate (287.1) > menthyl acetate (308.4) > geranyl acetate (325.5), as compared with monoterpenoids: eugenol (82.8) > linalool (242.6) > terpineol (331.7) > L-menthol (365.8) > geraniol (415.0). In eugenyl acetate, the presence of an aromatic ring and a side chain with an allylic double bond makes it most effective.

CONCLUSION

Bioactive functional groups identified in the study may contribute to the understanding of larvicidal activity of acetyl derivatives and may help in the development of ecofriendly mosquito larvicidal compounds.

摘要

背景

埃及伊蚊传播的登革热病毒导致人类致命死亡率,由于缺乏任何疫苗,因此管理这种媒介,特别是使用植物化学物质,是必不可少的。在本研究中,研究了单萜及其乙酰衍生物的构效关系,以确定负责杀蚊活性的结构特征。

结果

单萜(丁香酚、香叶醇、芳樟醇、L-薄荷醇和萜品醇)的衍生化及其构效关系研究确定了所有五个乙酰衍生物都对埃及伊蚊的第四龄幼虫具有增强的杀蚊活性。与羟基化合物相比,羟基的乙酰化通常会增加活性。根据 LC50 值(ppm),活性可按以下顺序排列:丁香酚乙酸酯(50.2)>乙酸芳樟酯(119.7)>乙酸松油酯(287.1)>乙酸薄荷醇(308.4)>乙酸香叶醇(325.5),与单萜类相比:丁香酚(82.8)>芳樟醇(242.6)>萜品醇(331.7)> L-薄荷醇(365.8)>香叶醇(415.0)。在丁香酚乙酸酯中,芳环和烯丙基双键的存在使其最有效。

结论

本研究中鉴定的生物活性官能团可能有助于理解乙酰衍生物的杀幼虫活性,并有助于开发环保型蚊虫幼虫化合物。

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