Hematological, immuno-antioxidant disruptions, and genes down-regulation induced by Aeromonas veronii challenge in Clarias gariepinus: The ameliorative role of silica nanoparticles

Aeromonas veronii is a pathogenic bacterium associated with various diseases in aquaculture. However, few studies address the antibacterial activity using nanoparticles (NPs). Hence, the current study is innovative to evaluate the antibacterial efficacy of silica nanoparticles (SiNPs) against A. veronii infection in-vitro with a trial for treatment in-vivo. Primarily, we assessed the in-vitro antibacterial activity against A. veronii. Further, we investigated the hematological profile, immune-antioxidant response, and gene expression of African catfish (Clarias gariepinus) in response to SiNPs exposure and the A. veronii challenge. Fish (N = 120; weight: 90 ± 6.19 g) were distributed into four groups (30 fish/group) for a ten-days-treatment trial. The first (control) and second (SiNPs) groups were treated with 0 mg/L and 20 mg/L SiNPs in water, respectively. The third (A. veronii) and fourth (SiNPs + A. veronii) groups were treated with 0 mg/L and 20 mg/L SiNPs in water, respectively, and infected with A. veronii (1.5 × 107 CFU/mL). Results demonstrated that SiNPs displayed an in-vitro antibacterial activity against A. veronii with a 21 mm inhibitory zone. A. veronii infection caused a high mortality rate (56.67%) and substantial reductions in hematological indices and immune indicators [nitric oxide (NO) and immunoglobulin M (IgM)]. Additionally, marked decline in the level of antioxidants [superoxide dismutase (SOD), catalase (CAT), and reduced glutathione content (GSH)] as well as down-regulation in the immune-related genes [interleukins (IL-1β and IL-8) and tumor necrosis factor-alpha (TNF-α)] and antioxidant-related genes [SOD1, glutathione peroxidase (GPx), and glutathione-S-transferase (GST)] were the consequences of A. veronii infection. Surprisingly, treatment of A. veronii-infected fish with SiNPs lessened the mortality rate, enhanced the blood picture, modulated the immune-antioxidant parameters, and resulted in gene up-regulation. Overall, this study encompasses the significant role of SiNPs, a new versatile tool for combating hematological, immuno-antioxidant alterations, and gene down-regulation induced by A. veronii infection and sustainable aquaculture production. © 2023 Elsevier Ltd

Авторы
Abdel Rahman A.N. , Elsheshtawy H.M. , Yassin E.M.M. , Omran A. , Hashem M.A. , Eltanahy A. , Khamis T. , Ismail S.H. , Yousefi M. , Mahboub H.H.
Издательство
Academic Press
Язык
Английский
Статус
Опубликовано
Номер
108842
Том
138
Год
2023
Организации
  • 1 Department of Aquatic Animal Medicine, Faculty of Veterinary Medicine, Zagazig University, PO Box 44511, Sharkia, Zagazig, Egypt
  • 2 Department of Fish Diseases and Management, Faculty of Veterinary Medicine, Suez Canal University, PO Box 41522, Ismailia, Egypt
  • 3 Department of Biochemistry, Faculty of Veterinary Medicine, Zagazig University, PO Box 44511, Sharkia, Zagazig, Egypt
  • 4 Department of Clinical Pathology, Faculty of Veterinary Medicine, University of Sadat City, PO Box 32897, Menofia, Sadat City, Egypt
  • 5 Department of Bacteriology, Immunology, and Mycology, Faculty of Veterinary Medicine, Suez Canal University, PO Box 41522, Ismailia, Egypt
  • 6 Department of Animal Wealth Development, Faculty of Veterinary Medicine, Mansoura University, PO Box 35516, Dakahlia, Mansoura, Egypt
  • 7 Department of Pharmacology, Faculty of Veterinary Medicine, Zagazig University, PO Box 44511, Sharkia, Zagazig, Egypt
  • 8 Laboratory of Biotechnology, Faculty of Veterinary Medicine, Zagazig University, PO Box 44511, Sharkia, Zagazig, Egypt
  • 9 Faculty of Nanotechnology for Postgraduate Studies, Cairo University, Sheikh Zayed Branch Campus, PO Box 12588, Giza, Sheikh Zayed City, Egypt
  • 10 Department of Veterinary Medicine, RUDN University, 6 Miklukho-Maklaya St, PO Box 117198, Moscow, Russian Federation
Ключевые слова
African catfish; Bacterial infection; Blood picture; Gene expression; Nanotechnology; SiNPs
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