Impact of Nanoparticles Synthesized From Azadirachta indica (A. Juss) for Targeted Control of Malarial, Dengue, and Filariasis Vectors With Minimized Aquatic Toxicity

IF 1.5 Q4 ENGINEERING, ENVIRONMENTAL Environmental Quality Management Pub Date : 2024-11-05 DOI:10.1002/tqem.22348
Perumal Vivekanandhan, Mansour I Almansour, Sulaiman Ali Alharbi, Mohammad Javed Ansari
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Abstract

In the present study, biogenic silver nanoparticles (AgNPs) synthesized using Azadirachta indica leaf extract were evaluated for their toxic effects on both target and non-target species. The botanical synthesized nanoparticles were tested against Anopheles stephensi, Aedes aegypti, and Culex quinquefasciatus and non-targeted species Artemia salina and Eudrilus eugeniae at 24 h posttreatment. AgNPs were characterized using the following analytical techniques: UV-Vis spectroscopy, FT-IR, x-ray diffraction (XRD), energy-dispersive x-ray spectroscopy (EDX), and scanning electron microscope (SEM) analysis. Results showed that AgNPs caused larvicidal activity with 90.66% mortality in An. stephensi, 97.33% in Ae. aegypti, and 93.33% in Cx. quinquefasciatus at 24 h posttreatment. A. indica-derived AgNPs had lower LC50 (lethal concentration 50) and LC90 (lethal concentration 90) values of 44.803 and 252.886 ppm/mL in An. stephensi, 18.358 and 189.553 ppm/mL in Ae. Aegypti, and 36.492 and 219.800 ppm/mL in Cx. quinquefasciatus, respectively. Furthermore, AgNPs demonstrated lower toxicity effects with 50.66% mortality in A. salina and 38.66% mortality in E. eugeniae at 24 h posttreatment. Additionally, they exhibited lower LC50 and LC90 values of 240.996 and 533.618 ppm/mL in A. salina and 301.122 and 548.944 ppm/kg in E. eugeniae at 24 h posttreatment, respectively. The findings conclude that green-synthesized AgNPs from plants offer a promising, cost-effective, and target-specific alternative for eco-friendly mosquito larvicides. Future work should focus on developing these plant-based agents with minimal non-target toxicity to support sustainable pest control. Further research may explore large-scale applications and assess the long-term environmental impacts of AgNPs in integrated vector management programs.

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以 Azadirachta indica (A. Juss) 为原料合成的纳米粒子对疟疾、登革热和丝虫病病媒的靶向控制作用以及最小的水生毒性
在本研究中,评估了利用 Azadirachta indica 叶提取物合成的生物银纳米粒子(AgNPs)对目标和非目标物种的毒性作用。在处理后 24 小时内,对植物合成的纳米颗粒进行了测试,测试对象包括雅典按蚊、埃及伊蚊和库蚊,以及非靶标物种盐水蒿和Eudrilus eugeniae。使用以下分析技术对 AgNPs 进行了表征:紫外可见光谱、傅立叶变换红外光谱、X 射线衍射(XRD)、能量色散 X 射线光谱(EDX)和扫描电子显微镜(SEM)分析。结果表明,AgNPs 具有杀幼虫剂活性,在处理后 24 小时内,对蚁蚕的杀灭率为 90.66%,对埃及蚁的杀灭率为 97.33%,对五步蛇的杀灭率为 93.33%。A. indica衍生的AgNPs的LC50(致死浓度50)和LC90(致死浓度90)值较低,分别为44.803 ppm/mL和252.886 ppm/mL,18.358 ppm/mL和189.553 ppm/mL,36.492 ppm/mL和219.800 ppm/mL。此外,AgNPs 的毒性效应较低,在处理后 24 小时内,A. salina 的死亡率为 50.66%,E. eugeniae 的死亡率为 38.66%。此外,在处理后 24 小时,A. salina 的 LC50 和 LC90 值分别为 240.996 和 533.618 ppm/mL,E. eugeniae 的 LC50 和 LC90 值分别为 301.122 和 548.944 ppm/kg。研究结果得出结论,从植物中提取的绿色合成 AgNPs 为生态友好型蚊虫杀幼虫剂提供了一种前景广阔、成本效益高且具有靶标特异性的替代品。今后的工作应侧重于开发这些非目标毒性最小的植物制剂,以支持可持续的害虫控制。进一步的研究可以探索 AgNPs 在病媒综合管理计划中的大规模应用,并评估其对环境的长期影响。
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来源期刊
Environmental Quality Management
Environmental Quality Management Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.20
自引率
0.00%
发文量
94
期刊介绍: Four times a year, this practical journal shows you how to improve environmental performance and exceed voluntary standards such as ISO 14000. In each issue, you"ll find in-depth articles and the most current case studies of successful environmental quality improvement efforts -- and guidance on how you can apply these goals to your organization. Written by leading industry experts and practitioners, Environmental Quality Management brings you innovative practices in Performance Measurement...Life-Cycle Assessments...Safety Management... Environmental Auditing...ISO 14000 Standards and Certification..."Green Accounting"...Environmental Communication...Sustainable Development Issues...Environmental Benchmarking...Global Environmental Law and Regulation.
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Impact of Nanoparticles Synthesized From Azadirachta indica (A. Juss) for Targeted Control of Malarial, Dengue, and Filariasis Vectors With Minimized Aquatic Toxicity Erratum to “Heavy Metal Contamination in the Marine Environment of Pekalongan, Indonesia: Spatial Distribution and Hydrodynamic Modeling” Unveiling Relationships: Enhancing Sustainability of Golpata (Nipa Palm) Through Socio-Ecological Systems Management in the Sundarbans Mangrove Forest Improving Nutrient Uptake Efficiency in Hydroponic Systems With Phytoremediation of Nitrate-Nitrogen Contaminated Wastewater Water Quality Analysis and Risk Assessment of Potential Toxic Elements in Selected Surface Water Around Mining Sites in Abuakwa South Municipal, Ghana
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