Antagonistic effects of nano-copper on lead toxicity in Nile and blue Tilapia: Evidence from growth, immunity, and gene expression
Mohammed F. El Basuini, Rawheya Shaaban Ramadan, Medhat E. Eldenary, Islam I. Teiba, Ali A. Soliman, Mahmoud S. Gewaily, Issam Khelfaoui, Mayada Alhoshy, Akram Ismael Shehata

TL;DR
Nano-copper in fish diets reduces lead toxicity by improving growth, immunity, and tissue health in Nile and blue tilapia.
Contribution
Nano-copper mitigates lead toxicity in fish by improving physiological and immune responses and reducing tissue damage.
Findings
Nano-copper reduced lead accumulation and preserved intestinal and hepatic structure in fish.
Nano-copper reversed lead-induced changes in gene expression related to immunity and antioxidants.
No significant differences in treatment effects were observed between the two tilapia species.
Abstract
•Dietary nano-copper mitigated lead (Pb) toxicity in Oreochromis niloticus and O. aureus.•Nano-copper (2 mg/kg diet) improved growth, immunity, and antioxidant status in Pb-exposed fish.•Pb increased hepatic MDA, inflammatory markers, and histopathological alterations.•Nano-copper reduced tissue Pb accumulation and preserved intestinal and hepatic structure.•Pb altered IGF-1, CAT, IL-1β, and hepcidin expression; Nano-Cu reversed these effects.•No significant treatment × species interactions were observed across most parameters. Dietary nano-copper mitigated lead (Pb) toxicity in Oreochromis niloticus and O. aureus. Nano-copper (2 mg/kg diet) improved growth, immunity, and antioxidant status in Pb-exposed fish. Pb increased hepatic MDA, inflammatory markers, and histopathological alterations. Nano-copper reduced tissue Pb accumulation and preserved intestinal and hepatic structure.…
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Taxonomy
TopicsNanoparticles: synthesis and applications · Environmental Toxicology and Ecotoxicology · Mercury impact and mitigation studies
