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马缨丹 L. 精油介导的纳米乳制剂在生物防治中的应用:杀蚊、抗菌和抗氧化活性测定。

Lantana camara L. essential oil mediated nano-emulsion formulation for biocontrol application: anti-mosquitocidal, anti-microbial and antioxidant assay.

机构信息

Department of Biochemistry, PSG College of Arts and Science, Tamil Nadu, Coimbatore, 641014, India.

Department of Chemistry, Research Institute of Physics and Chemistry, Jeonbuk National University, Jeonju, 54896, Republic of Korea.

出版信息

Arch Microbiol. 2022 Jun 13;204(7):388. doi: 10.1007/s00203-022-02975-x.

Abstract

Mosquitoes play an important role in the spread of vector-borne diseases and their management is highly essential. Plant extracts have been explored for their mosquitocidal activity against different types of vectors. The present work aimed to determine the larvicidal and pupicidal activity of Lantana camara L. essential oil-loaded nano-emulsion formulation for the control of pests. The synthesized essential oil-loaded nano-emulsion was subjected to evaluate the antioxidant potential and mosquito larvicidal properties. GC-MS analysis revealed that the essential oil of Lantana camara L. leaf contained 12 bioactive components. Caryophyllene oxide (15.81), n-Hexadecanoic acid (4.22), Davanone (6.49) and beta-Sesquiphellandrene (2.32) are the major compounds identified. The nano-emulsion was effective against A. aegypti immature stage (larvae and pupae) and adult mosquitoes in laboratory conditions. The LC was found to be 18.183 ppm (I), 23.337 ppm (II), 29.731 ppm (III), 38.943 ppm (IV) instars and 45.295 ppm (pupae), respectively. The LD and LD values for adult mosquitoes were 11.947 mg/cm and 47.716 mg/cm, respectively. The antioxidant activity of ascorbic acid (55.9%), glutathione (67.7%) and quercetin (48.6%) was recorded, respectively. The level of acetylcholinesterase (0.06 mM) and alkaline phosphatase (0.05 mM) activity significantly decreased from the control (0.12 mM) which revealed the efficacy of essential oil-loaded nano-emulsion to treat larvae. This study suggested that using an essential oil-loaded nano-emulsion formulation effectively controlled the mosquito vectors. It was also evidenced that the use of nano-emulsion has a great role in near future, especially in vector management.

摘要

蚊子在传播病媒传播疾病方面起着重要作用,因此对其进行管理是非常必要的。人们已经探索了植物提取物对不同类型病媒的杀蚊活性。本工作旨在确定负载印楝素的纳米乳液制剂对害虫的控制作用。合成的负载印楝素的纳米乳液制剂进行了评估,以评估其抗氧化潜力和蚊虫幼虫的杀灭性能。GC-MS 分析表明,印楝叶中的精油含有 12 种生物活性成分。鉴定出的主要化合物为石竹烯氧化物(15.81)、正十六烷酸(4.22)、大蓬内酯(6.49)和 β-倍半水芹烯(2.32)。纳米乳液制剂在实验室条件下对 A. aegypti 的幼虫和蛹期以及成蚊都有效果。LC 发现分别为 18.183 ppm(I)、23.337 ppm(II)、29.731 ppm(III)、38.943 ppm(IV)龄期和 45.295 ppm(蛹)。成蚊的 LD 和 LD 值分别为 11.947 mg/cm 和 47.716 mg/cm。分别记录了抗坏血酸(55.9%)、谷胱甘肽(67.7%)和槲皮素(48.6%)的抗氧化活性。乙酰胆碱酯酶(0.06 mM)和碱性磷酸酶(0.05 mM)的活性显著低于对照(0.12 mM),这表明负载印楝素的纳米乳液制剂对幼虫的治疗效果。本研究表明,使用负载印楝素的纳米乳液制剂可有效控制蚊虫媒介。还证明了纳米乳液的使用在不久的将来具有重要作用,尤其是在病媒管理方面。

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