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用于可持续抗菌和蚊虫控制的氧化锌纳米颗粒的绿色合成及其对非靶标生物的毒性

Green Synthesis of Zinc Oxide Nanoparticles for Sustainable Antibacterial, and Mosquito Control and their  Toxicity to non-target Organisms.

作者信息

Amutha Vadivel, Deepak Paramasivam, Tamilselvan Chidambaram, Tamilselvan Latha, Selvaraj Ramasamy, Guru Ajay, Balasubramanian Balamuralikrishnan, Thiyagaraulu Nathiya, Aiswarya Dilipkumar, Vellingiri Manon Mani, Prasannakumar Chinnamani, Shaik Mohammed Rafi, Hussain Shaik Althaf

机构信息

Department of Entomology, Bioscience Research Foundation, Sengadu, Kanchipuram, Tamil Nadu 602 002 India.

Department of Life Sciences, Kristu Jayanti College (Autonomous), Bengaluru, Karnataka 560077 India.

出版信息

3 Biotech. 2025 Jun;15(6):159. doi: 10.1007/s13205-025-04312-7. Epub 2025 May 9.

Abstract

Mosquito-borne diseases such as dengue, malaria, and filariasis have become serious global health concerns due to their contagious nature and widespread prevalence. In this study, ZnO NPs biosynthesized using the seagrass extract of (CS-ZnO NPs) were prepared from the leaf part and evaluated for their toxicity potential against the larvae, pupae, and adults of various mosquito species, including , , and . The CS-ZnO NPs were characterized using UV-Vis spectroscopy, XRD, FTIR, FE-SEM, EDX, and zeta potential analyses. The CS-ZnO NPs demonstrated significant antibacterial activity against tested bacterial strains: (22 ± 0.81 mm), (18.66 ± 0.47 mm), (14 ± 0.81 mm), and (9.66 ± 0.47 mm). Among the mosquito species tested, exhibited the most effective toxicity response. The ovicidal activity of CS-ZnO NPs against showed 12% egg hatchability at a concentration of 100 µg/mL. Furthermore, the larvicidal efficacy of CS-ZnO NPs against displayed strong lethal effects, with LC50 and LC90 values (in µg/mL) recorded as follows: 2.79 and 72.86 for the first instar, 5.89 and 209.93 for the second instar, 7.38 and 328.43 for the third instar, 9.56 and 435.36 for the fourth instar larvae; 8.18 and 357.68 for pupae; and 4.51 and 238.96 for adults. Biosafety assessments were conducted on embryos and nauplii to confirm the non-toxic nature of CS-ZnO NPs. Overall, -synthesized CS-ZnO NPs present a promising, eco-friendly alternative for controlling mosquitoes and eradicating deadly mosquito-borne diseases such as filariasis, dengue, and malaria.

摘要

登革热、疟疾和丝虫病等蚊媒疾病因其传染性和广泛流行,已成为严重的全球卫生问题。在本研究中,利用(某种海草提取物)制备了生物合成的氧化锌纳米颗粒(CS-ZnO NPs),该提取物取自叶片部分,并评估了其对包括(具体蚊种1)、(具体蚊种2)和(具体蚊种3)在内的多种蚊虫的幼虫、蛹和成虫的潜在毒性。使用紫外可见光谱、X射线衍射、傅里叶变换红外光谱、场发射扫描电子显微镜、能谱分析和zeta电位分析对CS-ZnO NPs进行了表征。CS-ZnO NPs对测试的细菌菌株表现出显著的抗菌活性:(具体细菌1)(22±0.81毫米)、(具体细菌2)(18.66±0.47毫米)、(具体细菌3)(14±0.81毫米)和(具体细菌4)(9.66±0.47毫米)。在测试的蚊虫种类中,(具体蚊种)表现出最有效的毒性反应。CS-ZnO NPs对(具体蚊种)的杀卵活性在浓度为100微克/毫升时显示出12%的卵孵化率。此外,CS-ZnO NPs对(具体蚊种)的杀幼虫效果显示出强烈的致死作用,其LC50和LC90值(以微克/毫升计)记录如下:一龄幼虫为2.79和72.86,二龄幼虫为5.89和209.93,三龄幼虫为7.38和328.43,四龄幼虫为9.56和435.36;蛹为8.18和357.68;成虫为4.51和238.96。对(具体生物1)胚胎和(具体生物2)无节幼体进行了生物安全性评估,以确认CS-ZnO NPs的无毒性质。总体而言,(某种生物)合成的CS-ZnO NPs为控制蚊虫和根除丝虫病、登革热和疟疾等致命蚊媒疾病提供了一种有前景的、生态友好的替代方法。

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