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马缨丹精油及其纳米乳液的体外杀幼虫效果及其对致倦库蚊的酶抑制动力学

In vitro larvicidal efficacy of Lantana camara essential oil and its nanoemulsion and enzyme inhibition kinetics against Anopheles culicifacies.

机构信息

Department of Biotechnology, Indira Gandhi National Tribal University, Amarkantak, Madhya Pradesh, 484887, India.

R&D, Hikal Limited, Hinjawadi, Pune, Maharashtra, India.

出版信息

Sci Rep. 2024 Jul 15;14(1):16325. doi: 10.1038/s41598-024-67148-w.

Abstract

Mosquitoes are important vectors for the transmission of several infectious diseases that lead to huge morbidity and mortality. The exhaustive use of synthetic insecticides has led to widespread resistance and environmental pollution. Using essential oils and nano-emulsions as novel insecticides is a promising alternative approach for controlling vector borne diseases. In the current study, Lantana camara EO and NE were evaluated for their larvicidal and pupicidal activities against Anopheles culicifacies. The inhibitory effect of EO and NE on AChE, NSE (α/β), and GST was also evaluated and compared. GC-MS analysis of oil displayed 61 major peaks. The stable nano-emulsion with an observed hydrodynamic diameter of 147.62 nm was formed using the o/w method. The nano-emulsion exhibited good larvicidal (LC50 50.35 ppm and LC90 222.84 ppm) and pupicidal (LC50 54.82 ppm and LC90 174.58 ppm) activities. Biochemical evaluations revealed that LCEO and LCNE inhibited AChE, NSE (α/β), and GST, displaying LCNE to be a potent binder to AChE and NSE enzyme, whereas LCEO showed higher binding potency towards GST. The nano-emulsion provides us with novel opportunities to target different mosquito enzymes with improved insecticidal efficacy. Due to its natural origin, it can be further developed as a safer and more potent larvicide/insecticide capable of combating emerging insecticide resistance.

摘要

蚊子是多种传染病的重要传播媒介,这些传染病导致了巨大的发病率和死亡率。合成杀虫剂的过度使用导致了广泛的抗药性和环境污染。使用精油和纳米乳液作为新型杀虫剂是控制媒介传播疾病的一种有前途的替代方法。在本研究中,评估了马缨丹精油和纳米乳液对致倦库蚊幼虫和蛹的杀幼虫和杀蛹活性。还评估并比较了精油和纳米乳液对 AChE、NSE(α/β)和 GST 的抑制作用。油的 GC-MS 分析显示有 61 个主要峰。使用 o/w 方法形成了具有观察到的水力直径为 147.62nm 的稳定纳米乳液。纳米乳液表现出良好的杀幼虫(LC50 为 50.35ppm 和 LC90 为 222.84ppm)和杀蛹(LC50 为 54.82ppm 和 LC90 为 174.58ppm)活性。生化评价表明,LCEO 和 LCNE 抑制了 AChE、NSE(α/β)和 GST,LCNE 显示出对 AChE 和 NSE 酶的更强结合能力,而 LCEO 对 GST 显示出更高的结合能力。纳米乳液为我们提供了新的机会,可以针对不同的蚊子酶,提高杀虫效果。由于其天然来源,它可以进一步开发为一种更安全、更有效的杀幼虫剂/杀虫剂,能够对抗新兴的杀虫剂抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e994/11250815/6d9d2c365b45/41598_2024_67148_Fig1_HTML.jpg

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