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Updated: Aug 28, 2026

Evaluation of Oxidative Stress in Biological Samples Using the Thiobarbituric Acid Reactive Substances Assay
Published on: May 12, 2020
Malondialdehyde and Oxidative Stress in Cancer: Biological Insights and Clinical Perspectives
Federica Li Pomi1, Maria Clara Gama de Souza Silva2, Giuseppe Murdaca3,4
1Department of Precision Medicine in Medical, Surgical and Critical Care (Me.Pre.C.C.), University of Palermo, 90127 Palermo, Italy.
Abstract:
Malondialdehyde (MDA) is one of the main end-products of lipid peroxidation (LPO) and represents a widely investigated marker of oxidative stress (OS) and oxidative tissue damage. Beyond its role as a measurable byproduct of polyunsaturated fatty acid peroxidation, MDA can interact with proteins and nucleic acids, generating adducts that may contribute to mutagenic, genotoxic, and cytotoxic events involved in carcinogenesis and tumor progression. This narrative review summarizes current evidence on the role of MDA in cancers, including breast, lung, head and neck, colorectal, cervical, and cutaneous tumors. Across these cancer types, increased circulating or tissue MDA levels have frequently been associated with enhanced LPO, impaired antioxidant defenses, tumor burden, advanced disease stage, aggressive histopathological features, treatment-related oxidative injury, and, in selected studies, poorer clinical outcomes. MDA-derived DNA adducts may further reflect oxidative DNA damage and provide mechanistic insight into the relationship between chronic redox imbalance, inflammation, and malignant transformation. However, MDA remains a non-specific biomarker influenced by age, smoking, diet, metabolic disorders, systemic inflammation, comorbidities, treatment exposure, and analytical methodology. Current evidence therefore supports MDA as a biologically relevant indicator of oxidative damage rather than a validated stand-alone diagnostic, prognostic, or therapeutic biomarker. Larger prospective studies using standardized and specific analytical methods are needed to clarify its clinical utility and to integrate MDA within broader redox biomarker panels.
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