Effects of Activated Charcoal on Growth, Immunity, Oxidative Stress Markers, and Physiological Responses of Nile Tilapia Exposed to Sub-Lethal Imidacloprid Toxicity
Autor: | Mustafa Shukry, Mohammed A.E. Naiel, Nahla E.M. Ismael, Samah A.A. Abd El-hameed, Samar S. Negm, Hany M.R. Abdel-Latif, Mohamed Mohamed Soliman |
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Rok vydání: | 2021 |
Předmět: |
antioxidant
Globulin Veterinary medicine Aspartate transaminase 010501 environmental sciences 01 natural sciences Feed conversion ratio Article chemistry.chemical_compound Nile tilapia Animal science nitric oxide SF600-1100 lysozyme 0105 earth and related environmental sciences General Veterinary biology hematology Oreochromis niloticus 04 agricultural and veterinary sciences Malondialdehyde biology.organism_classification QL1-991 chemistry Alanine transaminase Toxicity 040102 fisheries biology.protein 0401 agriculture forestry and fisheries Alkaline phosphatase Animal Science and Zoology Zoology |
Zdroj: | Animals : an Open Access Journal from MDPI Animals, Vol 11, Iss 1357, p 1357 (2021) Animals Volume 11 Issue 5 |
ISSN: | 2076-2615 |
DOI: | 10.3390/ani11051357 |
Popis: | Simple Summary Finding a suitable feed supplement is important for maintaining fish health and sustainability of the aquaculture industry. From these supplements, research studies have shown that activated charcoal (AC) has been extensively used for veterinary and aquaculture objectives as a “Universal Antidote” against several toxicants and aquatic pollutants. Therefore, the mitigating roles of dietary supplementation with different AC levels on physiological responses of Nile tilapia exposed to sub-lethal imidacloprid (IMID) toxicity were evaluated. The findings of this study revealed that dietary supplementation with 14.30 g AC/kg diet positively modulated the toxic impacts of IMID-intoxicated fish. Abstract The existing study was designed to assess the influences of dietary activated charcoal (AC) on the growth performance, immune responses, antioxidative status, and its mitigating roles against the physiological responses of Nile tilapia exposed a sub-lethal dose of a neonicotinoid agriculture pesticide, namely, as imidacloprid (IMID). Nile tilapia juveniles were fed on diets supplemented with graded AC levels as 0 (control), 5, 10, 15, and 20 g/kg diet for eight weeks. Growth, hemato-biochemical indices, and antioxidant and immune responses of fish in all groups were evaluated at the end of the feeding experiment. Afterward, fish in all experimental groups were subjected to a sub-lethal dose of IMID (0.0109 μg/L) for two weeks. Then, fish mortalities, stress indicators, and IMID residual levels in liver and flesh were examined. Results of the feeding experiment showed that total feed intake, weight gain, final body weights, and feed efficiency ratio were significantly increased in all AC groups compared with the control group. The survival rate was 100% in all experimental groups. No statistical differences were observed in the hematological picture of all experimental groups except the lymphocyte count, which was significantly increased in all AC groups compared to the control group. Total protein, albumin, globulin, nitric oxide levels, lysozyme, and respiratory burst activities were significantly increased in all AC groups. Serum alanine transaminase, aspartate transaminase, alkaline phosphatase activities, and malondialdehyde (MDA) levels were significantly decreased in all AC groups compared with the AC0 group. After exposure to a sub-lethal dose of IMID, survival rates were significantly elevated, and IMID residual levels in liver and flesh were significantly decreased in all AC groups than in the control group. Moreover, second-order polynomial regression showed that dietary supplementation with 14.30 g AC/kg diet resulted in the lowest blood glucose and serum MDA levels. Conclusively, we suggest dietary supplementation with 14.30 g AC/kg diet to modulate physiological responses of Nile tilapia to sub-lethal IMID toxicity. |
Databáze: | OpenAIRE |
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