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Inhibition of and intestinal pathogenic bacteria in Nile tilapia () fish by silver nanoparticles.

作者信息

Jastaniah Samyah D, Albaqami Najah M

机构信息

Department of Biological Sciences, Faculty of Sciences, King Abdulaziz University, Jeddah, Saudi Arabia.

出版信息

J Adv Vet Anim Res. 2025 Jun 11;12(2):647-660. doi: 10.5455/javar.2025.l928. eCollection 2025 Jun.

Abstract

OBJECTIVE

This research investigated the antibacterial properties of coated silver nanoparticles (CAgNPs) and non-coated silver nanoparticles (NCAgNPs) against bacterial pathogens relevant to Nile tilapia (), using both and methods.

MATERIALS AND METHODS

The antibacterial activity of CAgNPs and NCAgNPs was evaluated against seven bacterial pathogens: , , , , , , and . For the assessment, 200 Nile tilapia were divided into five treatment groups. The control treatment group was fed a standard diet, but the four treatment groups were fed the standard diet mixed with either 100 or 200 mg/kg of CAgNPs or NCAgNPs, respectively, and the growth indices, antioxidant parameters, immune functions, and intestinal microbiota were assessed. When the experiment was finished, 20 fish of every group were infected with .

RESULTS

assays demonstrated significant antibacterial activity of both CAgNPs and NCAgNPs at 200 µg/ml (p < 0.05) against every bacterial strain that was studied, with moderate activity observed at 100 µg/ml. CAgNPs exhibited larger inhibition zones (30.0 ± 0.58 mm to 36.33 ± 0.88 mm) compared to NCAgNPs, with a minimum inhibitory concentration of 150 µg/ ml. Dietary supplementation with 200 mg/kg CAgNPs improved growth performance, enhanced immune parameters, reduced oxidative stress, and decreased intestinal bacterial load in Nile tilapia. Furthermore, dietary supplementation with 100 mg/kg CAgNPs was more efficient than 100 mg/kg NCAgNPs in reducing intestinal bacterial colonization in fish.

CONCLUSION

These findings indicate the possibility of CAgNPs as an efficient antimicrobial factor in aquaculture. CAgNPs may offer a promising alternative to conventional antibiotics by improving tilapia health and antioxidant status, enhancing immune function, and increasing disease resistance.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9330/12506750/3a47a31152a6/JAVAR-12-2-647-g001.jpg

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Inhibition of and intestinal pathogenic bacteria in Nile tilapia () fish by silver nanoparticles.
J Adv Vet Anim Res. 2025 Jun 11;12(2):647-660. doi: 10.5455/javar.2025.l928. eCollection 2025 Jun.

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