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From damage signals to immune modulators: oxidized lipids in immunometabolic inflammation

2026/01/29 by Neetu Srivastava, Xiaoxiao Wan
Nursing · Medicine · #Fatty Acid Research and Health #Antioxidant Activity and Oxidative Stress #Cholesterol and Lipid Metabolism

paper · pdf · doi:10.1016/j.jlr.2026.100990

Abstract

Oxidized lipids, once viewed as byproducts of oxidative stress, are now recognized as critical mediators linking metabolism, redox imbalance, and immunity. Generated through enzymatic and nonenzymatic oxidation of polyunsaturated fatty acids, oxidized phospholipids, lipid aldehydes, and oxidized lipoproteins act as context-dependent signals regulating immune activation, resolution, and metabolic adaptation. In metabolic inflammation, these lipids engage scavenger and Toll-like receptors to influence macrophage polarization, dendritic-cell function, and T-cell differentiation. Their context and concentration determine whether oxidized lipids amplify inflammation or promote immune tolerance. Accumulation of these species connects oxidative stress to immune dysfunction, contributing to diseases, such as atherosclerosis, obesity, diabetes, cancer, and autoimmunity. This review synthesizes mechanistic and disease-specific insights into how oxidized lipids shape innate and adaptive immune responses in metabolic and autoimmune inflammation. Collectively, the evidence positions oxidized lipids as important regulators of immune cell fate and function at the intersection of metabolic stress and chronic inflammatory disease.

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