Eco-endocrinological dynamics: Unraveling dexamethasone's influence on the interrenal axis in juvenile carp Cyprinus carpio

This study delves into the eco-endocrinological dynamics concerning the impact of dexamethasone (DXE) on the interrenal axis in juvenile carp, Cyprinus carpio. Through a comprehensive analysis, we investigated the effects of DXE exposure on oxidative stress, biochemical biomarkers, gene expression,...

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Veröffentlicht in:The Science of the total environment 2024-06, Vol.931, p.172947-172947, Article 172947
Hauptverfasser: Gutierrez-Noya, Veronica Margarita, Gómez-Oliván, Leobardo Manuel, Orozco-Hernández, José Manuel, Rosales-Pérez, Karina Elisa, Casas-Hinojosa, Idalia, Elizalde-Velázquez, Gustavo Axel, Gracía-Medina, Sandra, Galar-Martínez, Marcela, Orozco-Hernández, Luis Alberto
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Sprache:eng
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Zusammenfassung:This study delves into the eco-endocrinological dynamics concerning the impact of dexamethasone (DXE) on the interrenal axis in juvenile carp, Cyprinus carpio. Through a comprehensive analysis, we investigated the effects of DXE exposure on oxidative stress, biochemical biomarkers, gene expression, and bioaccumulation within the interrenal axis. Results revealed a concentration-dependent escalation of cellular oxidation biomarkers, including 1) hydroperoxides content (HPC), 2) lipid peroxidation level (LPX), and 3) protein carbonyl content (PCC), indicative of heightened oxidative stress. Concurrently, the activity of critical antioxidant enzymes, superoxide dismutase (SOD), and catalase (CAT), significantly increased, underscoring the organism's response to oxidative insult. Notable alterations were observed in biochemical biomarkers, particularly Gamma-glutamyl-transpeptidase (GGT) and alkaline phosphatase (ALP) activity, with GGT displaying a significant decrease with increasing DXE concentrations. Gene expression analysis revealed a significant upregulation of stress and inflammation response genes, as well as those associated with sensitivity to superoxide ion presence and calcium signaling, in response to DXE exposure. Furthermore, DXE demonstrated a concentration-dependent presence in interrenal tissue, with consistent bioconcentration factors observed across all concentrations tested. These findings shed light on the physiological and molecular responses of juvenile carp to DXE exposure, emphasizing the potential ecological implications of DXE contamination in aquatic environments. Understanding these dynamics is crucial for assessing the environmental impact of glucocorticoid pollutants and developing effective management strategies to mitigate their adverse effects on aquatic ecosystems. [Display omitted] •Unraveling the interrenal axis response to dexamethasone (DXE) exposure•DXE escalates oxidative stress markers in Cyprinus carpio.•Antioxidant enzyme activity increases post-DXE exposure.•DXE alters ALP and GGT activity in Cyprinus carpio.•Upregulation of stress-related genes in DXE-exposed Cyprinus carpio
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2024.172947