Aug 2026· Frontiers in Oncology· Vol 16· 0 citations· 180 references
Medicine
TL;DR
This review gives a comprehensive overview of the function of metals in causing cancer, focusing on pathways such as genotoxicity, mutagenesis, epigenetic modification, and cancer-related signaling.
Abstract
People around the globe are affected by extensive environmental and occupational exposure to heavy metals, which poses a significant threat to various health hazards, with cancer being a major concern. These toxic metals are ubiquitously found in food, air, water, and industrial, agricultural, or pharmaceutical applications. Being non-biodegradable, they accumulate in the living organism. The prolong exposure to these metals can result into hazardous effects in the many organs including respiratory problems, gastrointestinal disorders, renal issues, and skin lesions etc. Arsenic (As), Cadmium (Cd), Chromium (Cr), Nickel (Ni), Mercury (Hg), and Lead (Pb) are the most common heavy metals causing carcinogenicity through both genetic and epigenetic mechanisms. The literature indicates that DNA damage, deregulation of gene expression, interference with cell signaling, etc., contribute to metal-induced carcinogenesis. Changes in epigenetic processes, such as DNA methylation, histone modification, chromatin remodeling, and non-coding RNAs, can disturb normal cell function and may even lead to cancer. However, the molecular mechanism remains poorly understood. Advancements in the field have underscored the critical roles of genetic mutations and epigenetic modifications in metal-induced tumor formation. This review gives a comprehensive overview of the function of metals in causing cancer, focusing on pathways such as genotoxicity, mutagenesis, epigenetic modification, and cancer-related signaling. Furthermore, with the ultimate goal of reducing the burden of this disease, the targeted preventive strategies, such as reducing the emission of these toxic metals into the environment from mining to industries, or other sources, and the need for social interventions, have been discussed.
Heavy metals and metalloids, including arsenic (As), cadmium (Cd), chromium (Cr), nickel (Ni), lead (Pb), and mercury (Hg), are well-recognised human carcinogens, and the molecular mechanisms underlying their carcinogenicity are incompletely characterised. In this review, we critically discuss and synthesise the availa...
Sneha Dhanasekaran, K. Dhaneesh· Toxicology and industrial he...· 0 citations
Cadmium chloride (CdCl) is a highly dangerous heavy metal commonly used in electroplating, pigment production, battery manufacturing, plastic stabilization, and other laboratory settings. Due to the speed of industrial growth and human activities, cadmium levels in air, water, and soil have gone up dramatically, This w...
Amit Kumar Patra, Yeduru Krishna Reddy· International Journal of Lat...· 0 citations
The heavy metal contamination of water, food, and soil is a widely recognized global problem. Yet the strategies commonly used to evaluate the impact of heavy metal contamination on human health typically do not account for the metabolic pathways of metals in living cells. Exposure metrics like Estimated Daily Intake,...
Manisha Jain, S. Sachdeva, G. Bharat· Genetics and Molecular Resea...· 0 citations
This critical narrative review integrates evidence on major environmental genotoxin classes, exposure routes, molecular mechanisms, human biomonitoring, disease associations and risk-assessment practice for well-established and less mature evidence domains.
Omoighele F. Akhigbe, O. Abutu, N. Y. Wike et al.· Asian Journal of Research in...· 0 citations
Although exposure to heavy metals such as cadmium and inorganic arsenic has declined in recent decades, they remain prevalent environmental contaminants in food, drinking water, and tobacco smoke. This study aimed to identify and compare molecular endpoints of arsenite and cadmium toxicity at the gene and protein expre...
Martin Link, Jana Kuhn, M. Parsdorfer et al.· International Journal of Mol...· 0 citations
Chronic exposure to heavy metals and occupational hazards is positively associated with carcinogenesis, although the underlying mechanisms remain poorly understood. The present study evaluated the association between heavy metal exposure and epigenetic alterations/modifications in blood, urine, and tissue samples from...
Ganesh Kumar Verma, Deepika Saini, P. Chaudhary et al.· Gene· 0 citations
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