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Silica nanoparticles alleviate the immunosuppression, oxidative stress, biochemical, behavioral, and histopathological alterations induced by Aeromonas veronii infection in African catfish (Clarias gariepinus)

Heba H. Mahboub; Wafaa M. Gad; Enas K. Aziz; Mona Abdelghany Nasr; Esraa M. Fahmy; Dina Mohamed Mansour; Nesma Rasheed; Hanaa S. Ali; Sameh H. Ismail; Afaf N. Abdel Rahman
Fish Physiology and Biochemistry · Vol. 50, Issue 2 · pp. 767-783 · 2024

Abstract

In the aquaculture industry, silica nanoparticles (SiNPs) have great significance, mainly for confronting diseases. Therefore, the present study aims to assess the antibacterial efficiency of SiNPs as a versatile trial against Aeromonas veronii infection in African catfish ( Clarias gariepinus ). Further, we investigated the influence of SiNPs in palliating the immune-antioxidant stress biochemical, ethological, and histopathological alterations induced by A. veronii . The experiment was conducted for 10 days, and about 120 fish were distributed into four groups at random, with 30 fish each. The first group is a control that was neither exposed to infection nor SiNPs. The second group (SiNPs) was vulnerable to SiNPs at a concentration of 20 mg/L in water. The third group was experimentally infected with A. veronii at a concentration of 1.5 × 10 7 CFU/mL. The fourth group ( A. veronii + SiNPs) was exposed to SiNPs and infected with A. veronii . Results outlined that A. veronii infection induced behavioral alterations and suppression of immune-antioxidant responses that appeared as a clear decline in protein profile indices, complement 3, lysozyme activity, glutathione peroxidase, and total antioxidant capacity. The kidney and liver function biomarkers (creatinine, urea, alkaline phosphatase, and alanine aminotransferase) and lipid peroxide (malondialdehyde) were substantially increased in the A. veronii group, with marked histopathological changes and immunohistochemical alterations in these tissues. Interestingly, the exposure to SiNPs resulted in a clear improvement in all measured biomarkers and a noticeable regeneration of the histopathological changes. Overall, it will establish that SiNPs are a new, successful tool for opposing immunological, antioxidant, physiological, and histopathological alterations induced by A. veronii infection.

Bibliographic Information

JournalFish Physiology and Biochemistry
PublisherSpringer
Publication Date2024-04-01
Publication Year2024
Volume50
Issue2
Pages767-783
Document TypeJournal Article
Print ISSN0920-1742
eISSN1573-5168
DOI10.1007/s10695-023-01274-6

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10695
Publisher PageOpen Publisher Page
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