Exopolysaccharide from Marinobacter nauticus strain GH3 reduces oxidative stress and neurotoxicity caused by Nickel in Nile Tilapia (Oreochromis niloticus)

Abstract Nickel (Ni) is a ubiquitous environmental contaminant that poses significant risks to the nervous systems of diverse organisms. This study investigated the neurotoxic effects of nickel chloride (NiCl 2 ) on Nile tilapia and the potential protective role of extracellular polymeric substances (EPS) derived from Marinobacter nauticus strain GH3 (GH3-EPS). Nile tilapia were divided into eight groups and fed for 8 weeks either a standard diet, diets supplemented with graded doses of GH3-EPS (0.075–0.3 g), GH3-EPS combined with sublethal Nickel (II) chloride exposure (1/10 LC50 ≈ 113.4 mg/L), or NiCl2 alone. At the experiment end, fish were euthanized, and brain, liver, and gill tissues were rapidly collected for accurate biochemical, molecular, and histological analyses. The expression of neurodegeneration-related genes (ApoE, Clu, and CR1) in brain tissues, antioxidant enzyme activities (GPx and GR) in liver tissues, and histopathological changes in gills and liver tissue were evaluated. NiCl 2 exposure significantly increased the expression of ApoE, Clu, and CR1 genes and decreased GPx and GR enzyme activities compared to the control group. Treatment with medium- and high-dose GH3-EPS significantly reduced the expression of these genes and increased GPx and GR activities in NiCl 2 -exposed fish. Additionally, GH3-EPS treatment significantly reduced reactive oxygen species (ROS) formation in the liver of NiCl 2 -exposed fish, with medium and high doses exhibiting inhibition rates of 32.9% and 36.6%, respectively. These findings suggest that GH3-EPS may have protective effects against NiCl 2 -induced neurotoxicity in Nile tilapia by normalizing gene expression, improving antioxidant levels, and reducing oxidative stress. This study highlights the potential of EPS as a mitigation strategy for metal-induced neurotoxicity in aquatic organisms.

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Journal
Scientific Reports
Published
2026-10-07
DOI
https://doi.org/10.1038/s41598-026-71953-w
Primary Topic
Environmental Toxicology and Ecotoxicology
Type
article
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article

Exopolysaccharide from Marinobacter nauticus strain GH3 reduces oxidative stress and neurotoxicity caused by Nickel in Nile Tilapia (Oreochromis niloticus)

Noha M. Sabry, F. K. Abdel-Gawad, S. El-Fiky, Samah M. Bassem et al.
Scientific Reports
Environmental Toxicology and Ecotoxicology
article

Exopolysaccharide from Marinobacter nauticus strain GH3 reduces oxidative stress and neurotoxicity caused by Nickel in Nile Tilapia (Oreochromis niloticus)

Noha M. Sabry, F. K. Abdel-Gawad, S. El-Fiky, Samah M. Bassem, Mohamad Abdelrazik, Ahmed Abdelghani Hamed, WAGDY K. B. KHALIL, Ghada Abdel-Razik, Marwa I. Abdel –Tawab, Ashraf Eltaher, Mohamed E. El Awady
article en

Abstract

Abstract Nickel (Ni) is a ubiquitous environmental contaminant that poses significant risks to the nervous systems of diverse organisms. This study investigated the neurotoxic effects of nickel chloride (NiCl 2 ) on Nile tilapia and the potential protective role of extracellular polymeric substances (EPS) derived from Marinobacter nauticus strain GH3 (GH3-EPS). Nile tilapia were divided into eight groups and fed for 8 weeks either a standard diet, diets supplemented with graded doses of GH3-EPS (0.075–0.3 g), GH3-EPS combined with sublethal Nickel (II) chloride exposure (1/10 LC50 ≈ 113.4 mg/L), or NiCl2 alone. At the experiment end, fish were euthanized, and brain, liver, and gill tissues were rapidly collected for accurate biochemical, molecular, and histological analyses. The expression of neurodegeneration-related genes (ApoE, Clu, and CR1) in brain tissues, antioxidant enzyme activities (GPx and GR) in liver tissues, and histopathological changes in gills and liver tissue were evaluated. NiCl 2 exposure significantly increased the expression of ApoE, Clu, and CR1 genes and decreased GPx and GR enzyme activities compared to the control group. Treatment with medium- and high-dose GH3-EPS significantly reduced the expression of these genes and increased GPx and GR activities in NiCl 2 -exposed fish. Additionally, GH3-EPS treatment significantly reduced reactive oxygen species (ROS) formation in the liver of NiCl 2 -exposed fish, with medium and high doses exhibiting inhibition rates of 32.9% and 36.6%, respectively. These findings suggest that GH3-EPS may have protective effects against NiCl 2 -induced neurotoxicity in Nile tilapia by normalizing gene expression, improving antioxidant levels, and reducing oxidative stress. This study highlights the potential of EPS as a mitigation strategy for metal-induced neurotoxicity in aquatic organisms.

Scientific ReportsVol. 16(1)
Suez Canal University (EG), Academy of Scientific Research and Technology (EG), National Research Centre (EG), Children Cancer Hospital (EG)
Openalex Percentile: Top 17%
Environmental Toxicology and Ecotoxicology
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