Neurotoxicity, Cytotoxicity, and Genotoxicity of Phyto-radio Synthesized Selenium Nanoparticles in Culex pipiens Complex.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-24 DOI:10.1007/s12011-024-04418-8
H H Awad, I Abulyazid, E M S El-Kholy, H S Mohammed, H K Abdelhakim, A M Fadl
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Abstract

Effective mosquito management strategies are crucial to minimize the number of mosquito-borne diseases. Selenium nanoparticles (SeNPs) are promising in mosquito control because they are effective and eco-friendly rather than synthetic insecticides. The current study was conducted to evaluate the impact of SeNPs on the detoxification enzymes, acetylcholine esterase (AChE), glutathione S-transferase (GST), and α-carboxyl esterase (α-CarE), in larval instars of Culex pipiens complex at the LC50 concentration. In 3rd instar larvae treated with microwave-assisted selenium nanoparticles (SeNPs-MW) and gamma-assisted selenium nanoparticles (SeNPs-G), it was found that AChE activity was significantly inhibited. On the other hand, significant increases in GST and α-CarE activities were observed. Additionally, genotoxic and ultrastructure studies of midgut epithelial cells in 3rd instar larvae revealed DNA damage and cell lysis, including destruction of the cell membrane, microvilli, and nuclei. These findings suggest that SeNPs have an adverse effect on AChE gene expression, resulting in its downregulation. This downregulation can be attributed to the formation of reactive oxygen species induced by SeNPs that can modulate the host defense mechanism leading to apoptosis and subsequent larval mortality. The present study was the first to use phyto-microwave-assisted and gamma-assisted synthesis of SeNPs which provides an eco-friendly and cost-effective solution to reduce the risk of chemical insecticides. Furthermore, an integrated pest management program (IPM) using nanocides can be successfully developed for mosquito control.

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植物放射性合成纳米硒粒子对喙库蚊的神经毒性、细胞毒性和遗传毒性
有效的蚊虫管理策略对于最大限度地减少蚊子传播疾病的数量至关重要。纳米硒粒子(SeNPs)比合成杀虫剂更有效、更环保,因此在灭蚊方面大有可为。本研究评估了 SeNPs 在半数致死浓度下对库蚊幼虫体内乙酰胆碱酯酶(AChE)、谷胱甘肽 S-转移酶(GST)和α-羧基酯酶(α-CarE)等解毒酶的影响。用微波辅助纳米硒粒子(SeNPs-MW)和伽马辅助纳米硒粒子(SeNPs-G)处理三龄幼虫时,发现 AChE 活性受到显著抑制。另一方面,观察到 GST 和 α-CarE 活性明显增加。此外,对三龄期幼虫的中肠上皮细胞进行的遗传毒性和超微结构研究显示,存在 DNA 损伤和细胞溶解现象,包括细胞膜、微绒毛和细胞核的破坏。这些发现表明,SeNPs 对 AChE 基因表达有不利影响,导致其下调。这种下调可归因于 SeNPs 诱导的活性氧的形成,活性氧可调节宿主防御机制,导致细胞凋亡,进而导致幼虫死亡。本研究首次使用植物微波辅助和伽马射线辅助合成 SeNPs,为降低化学杀虫剂的风险提供了一种生态友好和具有成本效益的解决方案。此外,使用纳米杀虫剂的虫害综合治理计划(IPM)可成功开发,用于控制蚊虫。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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