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Dr. Rania Wahid :: Publications:

Title:
Elucidating the role of prickly pear fruits (Opuntia littoralis) in mitigation of cadmium toxicity in Nile tilapia: impacts on haemato‑biochemical and immunological responses
Authors: Mahmoud Mahrous M. Abbas, Mohamed A. Amer,Jamila S. Al malki, Amaal Mohammadein, Metwally G. Metwally, Rania M. Waheed, Said M. A. Elraey, Mahmoud Radwan
Year: 2024
Keywords: Growth promoters · Cortisol · Cactaceae · Immunostimulant diet · Digestive enzymes
Journal: Aquaculture International
Volume: Not Available
Issue: Not Available
Pages: Not Available
Publisher: SPRINGER
Local/International: International
Paper Link:
Full paper Not Available
Supplementary materials Not Available
Abstract:

The study aimed to assess the promotional efects of dietary fruits of the prickly pear (Opuntia littoralis) on growth, haemato-biochemical, antioxidant, and immune activity and its possible regulatory roles after exposure to waterborne cadmium toxicity of Nile tilapia, Oreochromis niloticus. Fish were assigned to four groups fed on diets containing 0% (control, OLFE-0% group), 0.5% (OLFE-0.5% group), 1% (OLFE-1% group), and 2% (OLFE-2% group) of dietary prickly pear fruits for 60 days. Fish were exposed to subacute waterborne cadmium toxicity at the end of the feeding trial for an additional 4 days. Nile tilapia fed on OLFE-fortifed diets enhanced their growth performance and digestive enzymes more than the control group, especially at 2% (OLFE-2%). Before and after the cadmium challenge, haemato-biochemical indices showed improvement in fsh-fed OLFE compared to fsh-fed OLFE-free diets. The activities of complement C3, lysozyme, catalase (CAT), total immunoglobulin, superoxide dismutase (SOD), and glutathione peroxidase (GPX) in prickly pear-treated fsh groups compared to the control group before and after the cadmium waterborne challenge were increased, along with a signifcant decline in MDA levels, partially at OLFE-2%. In brief, the fndings suggest that supplementing prickly pear fruits to tilapia diets, especially at a level of 2%, can enhance the immunological and antioxidant properties and efectively mitigate the harmful efects of Cd exposure in food safety and aquaculture

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