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May 1, 2026Sustainability2 citationsOpen Access

Heavy Metal Contamination in Foods: Advances in Detection Technologies, Regulatory Challenges, Health Risks, and Implications for Sustainable Food Safety

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DHDiego A. Hernández-MontoyaACAna G. Castañeda-MirandaMMMargarita L. Martinez-Fierro

Key Points

  • This review aims to synthesize literature on heavy metal contamination in foods, highlighting detection strategies and health implications.
  • Conducted a scoping review synthesizing peer-reviewed literature on priority toxic metals.
  • Analyzed contamination pathways and detection strategies in food matrices.
  • Addressed human health effects associated with chronic exposure to heavy metals.
  • Heavy metals are frequently found in staple foods, often exceeding international regulatory limits.
  • Emerging detection approaches include portable X-Ray fluorescence and electrochemical biosensors.
  • Chronic exposure to heavy metals is linked to neurotoxicity, nephrotoxicity, carcinogenicity, and oxidative stress.

Abstract

Heavy metal contamination of foods remains a persistent global challenge for food safety and public health, driven by industrialization, mining activities, intensive agriculture, and ongoing environmental degradation. This scoping review synthesizes peer-reviewed literature on the occurrence of priority toxic metals—arsenic, cadmium, lead, mercury, and nickel—in food matrices, with emphasis on contamination pathways, analytical detection strategies, and documented human health effects. The reviewed studies reveal widespread accumulation of heavy metals in staple foods, including cereals, vegetables, seafood, and processed products, with concentrations frequently approaching or exceeding international regulatory limits, particularly in regions exposed to strong anthropogenic pressure. Conventional laboratory-based techniques, such as atomic absorption spectrometry and inductively coupled plasma methods, remain the reference standards for quantitative determination and regulatory compliance; however, their application to large-scale or continuous monitoring is often constrained by cost, infrastructure, and operational complexity. Consequently, increasing attention has been directed toward emerging detection approaches, including portable X-Ray fluorescence, Raman/SERS spectroscopy, electrochemical biosensors, electronic tongues, and in situ magnetic measurements, as complementary tools for rapid screening and field-based surveillance. Among these, environmental magnetism and in situ magnetic techniques stand out as non-destructive, low-cost proxies capable of identifying metal-associated particulate contamination linked to food production systems. Chronic dietary exposure to heavy metals is consistently associated with neurotoxicity, nephrotoxicity, carcinogenicity, and oxidative stress, underscoring the need for integrated, multi-tiered monitoring frameworks to support early detection, risk assessment, and prevention.

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Cite This Study

Hernández-Montoya et al. (2026) studied this question.

synapsesocial.com/papers/69f442d4967e944ac5566429https://doi.org/10.3390/su18094280
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  4. 4Comparative Analysis of Heavy Metal Accumulation in Soils near Industrial Complexes and their uptake in Edible Plants2024 · 3 citations
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