Bioaccumulation Patterns of Potentially Toxic Elements in Three Grouper Species from the Nizampatnam Coast, India: Multivariate Analysis and Risk Assessment
摘要
The Indian Bay of Bengal coast represents an important marine fishing area and serves as a significant source of dietary protein for consumers. These highlights growing concerns regarding the bioaccumulation of potentially toxic elements (PTEs) in fish and the associated environmental and human health risks linked to their consumption. Thus, this study aims to assess the accumulation of PTEs (As (arsenic), Sr (strontium), Ti (titanium), Be (beryllium), Cd (cadmium), Sb (antimony), Pb (lead), Hg (mercury), and Li (lithium)) in the muscles of three groupers. The highest value (29.88 ± 0.17 µg/g dry wt.) was observed in Epinephelus areolatus for As, and the lowest in E. bleekeri for Be (0.59 ± 0.20 µg/kg dry wt.). Multivariate analyses (PCA and HCA) confirmed a very close relationship among the As, Cd, Sb, Ti, and Be, while Pb, Hg, Th, and Li had their own specific habitats of bioaccumulation, implying distinct inputs of PTE. Health risk evaluations reveal that As was the most hazardous PTE, with the incidence of toxic effects and cancer risk, especially for habitual consumers. However, Ti is the most hazardous PTE, posing the highest non-carcinogenic risk of the studied species. Metal–protein docking further showed the strong binding of Pb2+ and Sr2+ to Nrf2, p53, and DNMT1, indicating potential disruption of redox regulation, genomic stability, and epigenetic control. The findings indicate that the intake of the specified grouper species poses a significant arsenic-related health risk to people, underscoring the necessity for ongoing monitoring and management of PTE contaminants in fisheries.