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March 25, 2026Molecules0 citationsOpen Access

Cadmium Toxicity Effects on Histone Modifiers, Enzyme Activity and Adipokines in Human Adipose Tissue Cells

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VPVictor Tadeu Gonçalves PlataUniversidade Federal de São PauloJBJúlia Fernandes BarcellaUniversidade Federal de São PauloRSRaphael Justa SaranUniversidade Federal de São Paulo

Key Points

  • To understand how cadmium exposure affects histone modifiers, enzyme activity, and adipokines in human adipose tissue.
  • Investigated human adipose-derived stromal/stem cells and differentiated adipocytes
  • Analyzed effects of cadmium on epigenetic regulators, enzyme activity, and inflammatory mediators
  • Examined changes in histone modifications and adipogenic programming in response to cadmium
  • Cadmium exposure altered histone modifiers linked to histone 3 (H3K27)
  • Disrupted antioxidant enzyme activity in a concentration-dependent manner
  • Impaired adipogenic differentiation and lipid accumulation
  • Modulated inflammatory and adipokine responses based on differentiation stage and cadmium concentration

Abstract

Environmental exposure to heavy metals, particularly cadmium (Cd), has been increasingly associated with obesity, metabolic dysfunction, chronic inflammation, and related disorders such as type 2 diabetes and cardiovascular diseases. Adipose tissue (AT), a paracrine and endocrine organ central to systemic energy and inflammatory homeostasis, is a major site of heavy metal accumulation and a key target of Cd toxicity. However, the mechanisms by which Cd disrupts adipocyte function, especially through epigenetic pathways, remain poorly understood. In this study, we investigated the effects of Cd on epigenetic regulators, antioxidant enzyme activity, inflammatory mediators, and adipogenic programming in human adipose-derived stromal/stem cells (hASCs) and differentiated adipocytes. Cd exposure altered histone modifiers associated with lysine 27 of histone 3 (H3K27), disrupted redox balance in a concentration-dependent manner, impaired adipogenic differentiation and lipid accumulation, and modulated inflammatory and adipokine responses according to differentiation stage and Cd concentration. Our findings suggest that Cd compromises adipose cell homeostasis through mechanisms involving epigenetic dysregulation, oxidative stress imbalance, and altered adipogenic and inflammatory signalling. These observations point to possible long-term metabolic consequences of environmental Cd exposure due to its accumulation in adipose tissue.

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Cite This Study

Plata et al. (2026) studied this question.

synapsesocial.com/papers/69c37be2b34aaaeb1a67ec01https://doi.org/10.3390/molecules31061056
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