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利用枯草芽孢杆菌生物合成的氧化铁纳米颗粒和固定在自由漂浮的大孔 cryogel 中对罗非鱼养殖进行纳米修复。

Nanoremediation of tilapia fish culture using iron oxide nanoparticles biosynthesized by Bacillus subtilis and immobilized in a free-floating macroporous cryogel.

机构信息

Zoology departments, Faculty of Science, Damietta University, New Damietta, 34517, Egypt.

Botany & microbiology departments, Faculty of Science, Damietta University, New Damietta, 34517, Egypt.

出版信息

BMC Vet Res. 2024 Oct 9;20(1):455. doi: 10.1186/s12917-024-04292-5.

Abstract

BACKGROUND AND AIM

Contamination from increased anthropogenic activities poses a threat to human health as well as the ecosystem. To develop a nanotechnological approach to improve aqua fisheries, we synthesized magnetic hematite nanoparticle-based gel and evaluated its efficacy in a cadmium-polluted closed system to decontaminate water and improve tilapia fish health.

METHODS

Green iron oxide nanoparticles were biosynthesized by the metabolite of bacillus subtilis and incorporated into polyvinyl alcohol to construct a hydrogel by cryogelation.

KEY FINDINGS

The cryogel had interconnected macropores with diameters widely ranging between 20 and 200 μm and could be free-floating in water. When applied in cadmium-polluted tilapia culture, this nanogel reduced turbidity and ammonia in the aquarium, adsorbed cadmium from the water with a larger quantity on the gel's outer surface than in its center., and reduced cadmium concentration in tilapia's liver, gills, and muscles. Application of this nano-based cryogel reduced the toxic effects of cadmium on tilapia fish. It maintained hepatic and renal cell nuclear integrity as determined by comet assay. This nano-treatment also reversed the cadmium-induced elevations of plasma lipids, glucose, stress marker cortisol, the hepatic enzymes AST and ALT, and the kidney function marker urea, and improved the lymphocytopenia and other hematological functions in tilapia fish intoxicated by cadmium.

摘要

背景与目的

由于人为活动的增加而导致的污染对人类健康和生态系统构成了威胁。为了开发一种纳米技术方法来改善水产养殖,我们合成了基于磁性赤铁矿纳米颗粒的凝胶,并在镉污染的封闭系统中评估其去除水中污染物和改善罗非鱼健康的效果。

方法

通过枯草芽孢杆菌的代谢物生物合成绿色氧化铁纳米颗粒,并将其掺入聚乙烯醇中,通过冷冻凝胶化构建水凝胶。

主要发现

该冷冻凝胶具有相互连通的大孔,直径广泛分布在 20 至 200 μm 之间,可以在水中自由漂浮。当应用于受镉污染的罗非鱼养殖时,这种纳米凝胶降低了水族箱中的浊度和氨含量,从水中吸附了更多的镉,其外表面的吸附量大于中心部位。同时,纳米凝胶还降低了罗非鱼肝脏、鳃和肌肉中的镉浓度。该纳米凝胶的应用减轻了镉对罗非鱼的毒性影响。彗星试验表明,它维持了肝和肾细胞核的完整性。这种纳米处理还逆转了镉诱导的血浆脂质、葡萄糖、应激标志物皮质醇、肝酶 AST 和 ALT 以及肾功能标志物尿素的升高,并改善了镉中毒罗非鱼的淋巴细胞减少和其他血液学功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb43/11462889/46a758d784ef/12917_2024_4292_Fig1_HTML.jpg

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