Heavy Metal(loid) Bioaccumulation in Fish and Its Implications for Human Health

Alewy Almashhadany, Dhary and Farooq Rashid, Rzgar and Ibrahim Altaif, Khalil and Hayyas Mohammed, Sarhang and Ismael Mohammed, Hero and Mahdi Al-Bader, Salah (2024) Heavy Metal(loid) Bioaccumulation in Fish and Its Implications for Human Health. Italian Journal of Food Safety, 14 (1): 12782. ISSN 2239-7132

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Abstract

Heavy metal(loid)s (HM) pollution in aquatic environments is a serious issue due to the toxicity, persistence, bioaccumulation, and biomagnification of these pollutants. The main sources of HM contamination are industrial activities, mining, agricultural prac tices, and combustion of fossil fuels. Fish can accumulate HMs through a process called bioaccumulation. As larger predatory fish consume smaller fish, these HMs enter the main food chains and can become increasingly concentrated in their tissues and finally reach humans. Here, we provided a general and concise conclusion from current research findings on the toxicological effects on dif ferent body systems. Exposure to HMs can lead to a range of adverse health effects, including neurological damage, develop mental disorders, kidney damage, cardiovascular problems, and cancers. Their long-term accumulation can result in chronic toxic ity even at low levels of exposure. HMs exert cellular cytotoxicity by disrupting essential cellular processes and structures. They can interfere with enzyme function, disrupt cell membrane integrity, induce oxidative stress, and cause DNA damage, ultimately lead ing to cell death or dysfunction. Prevention and control of HMs involve implementing measures to reduce their release into the environment through regulations on industrial processes, waste management, and pollution control technologies. Additionally, monitoring and remediation efforts are crucial for identifying con taminated sites and implementing strategies such as soil and water remediation to reduce human exposure and mitigate the impact on ecosystems. To conclude, HM accumulation in fish poses serious risks to public health and the environment, necessitating urgent interdisciplinary efforts to mitigate their harmful effects and pro mote sustainable practices that reduce HM flow into biological systems.

Item Type: Article
Uncontrolled Keywords: Arsenic, Cadmium, Cancer Risk, Lead, Mercury, Priority Trace Metals
Subjects: T Technology > TD Environmental technology. Sanitary engineering
Divisions: Department of Biomedical Science > Research papers
Depositing User: ePrints Depositor
Date Deposited: 11 Aug 2025 06:03
Last Modified: 11 Aug 2025 06:03
URI: https://eprints.cihanuniversity.edu.iq/id/eprint/4457

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