Molluscicidal effect of green synthesized silver nanoparticles using Azadirachta indica on Biomphalaria alexandrina snails and Schistosoma mansoni cercariae

IF 1.7 4区 医学 Q3 TROPICAL MEDICINE Asian Pacific journal of tropical biomedicine Pub Date : 2023-01-01 DOI:10.4103/2221-1691.367688
Salwa S Younis, I. Abou-El-Naga, K. Radwan
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引用次数: 4

Abstract

Objective: To assess the molluscicidal effect of the eco-friendly green synthesized neem silver nanoparticles (neem-Ag NPs) against Biomphalaria alexandrina, the snail intermediate host for Schistosoma mansoni, and their cercaricidal potential. Methods: Methanol extracts from neem fruits were used for green synthesis of neem-Ag NPs. The neem-Ag NPs were characterized using UV-visible absorption spectra, dynamic laser light scattering technique, and transmission electron microscopy. The potential molluscicidal effect against adult and juvenile Biomphalaria alexandrina and the effect of the sub-lethal concentration on hatching of snail eggs and Schistosoma mansoni cercariae were evaluated. Results: The surface plasmon resonance of neem-Ag NPs showed a sharp absorption peak at λmax = 518 nm together with multiple peaks. The hydrodynamic diameter was (77.15±34.53) nm, the polydispersity index (0.338±0.000) and the zeta-potential −14.07 mV. Moreover, transmission electron microscopy showed that the average size of the nanoparticles was (27±2) nm. Agglomeration was evident and a light-colored capping layer could be seen coating the nanoparticles. Juvenile snails (LC50: 0.83 ppm) were more susceptible to neem-Ag NPs than adults (LC50: 1.07 ppm). In addition, neem-Ag NPs and neem at LC50 concentrations inhibited the egg-hatching of snails and showed cercaricidal activity in a time-dependent manner. Conclusions: Neem-Ag NPs have lethal activities against Biomphalaria alexandrina snails and their eggs, as well as Schistosoma mansoni cercariae. Hence, neem-Ag NPs could be a potential agent to control schistosomiasis.
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印楝绿色合成纳米银对山绿螺和曼氏血吸虫尾蚴的杀螺效果
目的:评价环保绿色合成的neem-Ag纳米颗粒(neem-Ag-NPs)对曼氏血吸虫中间宿主亚历山大虫的灭螺效果及其灭尾蚴的潜力。方法:采用印楝果实甲醇提取物进行印楝Ag纳米粒子的绿色合成。利用紫外-可见吸收光谱、动态激光散射技术和透射电子显微镜对neem-Ag纳米颗粒进行了表征。评估了对成年和幼年亚历山大虫的潜在杀螺作用,以及亚致死浓度对蜗牛卵和曼氏血吸虫尾蚴孵化的影响。结果:neem-Ag纳米粒子的表面等离子体共振在λmax=518nm处呈现出一个尖锐的吸收峰,并伴有多个峰。流体动力学直径为(77.15±34.53)nm,多分散指数为(0.338±0.000),ζ电位为−14.07mV。此外,透射电子显微镜显示纳米颗粒的平均尺寸为(27±2)nm。团聚是明显的,可以看到浅色的覆盖层覆盖纳米颗粒。幼蜗牛(LC50:0.83ppm)比成虫(LC50:1.07ppm)更容易感染印楝Ag NPs。此外,在LC50浓度下,印楝-Ag NPs和印楝抑制了蜗牛的卵孵化,并表现出与时间相关的杀尾蚴活性。结论:Neem Ag NPs对亚历山大蜗牛及其卵和曼氏血吸虫尾蚴具有杀伤活性。因此,neem-Ag-NPs可能是一种潜在的血吸虫病防治剂。
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来源期刊
Asian Pacific journal of tropical biomedicine
Asian Pacific journal of tropical biomedicine Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
3.10
自引率
11.80%
发文量
2056
审稿时长
4 weeks
期刊介绍: The journal will cover technical and clinical studies related to health, ethical and social issues in field of biology, bacteriology, biochemistry, biotechnology, cell biology, environmental biology, microbiology, medical microbiology, pharmacology, physiology, pathology, immunology, virology, toxicology, epidemiology, vaccinology, hematology, histopathology, cytology, genetics and tropical agriculture. Articles with clinical interest and implications will be given preference.
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