AbstractLipid peroxidation occurs in the context of many physiological processes but is greatly increased in various pathological situations. A consequence of phospholipid peroxidation is the generation of oxidation-specific epitopes, such as phosphocholine of oxidized phospholipids and malondialdehyde, which form neo-self determinants on dying cells and oxidized low-density lipoproteins. In this review we discuss evidence demonstrating that pattern recognition receptors of the innate immune system recognize oxidation-specific epitopes as endogenous damage-associated molecular patterns, allowing the host to identify dangerous biological waste. Oxidation-specific epitopes are important targets of both cellular and soluble pattern recognition...
International audienceBecause of its oxidative modification during the acute-phase response to an ag...
The oxidation of low density lipoproteins (LDL) has been correlated with atherogenesis through a var...
Exposure of biological membranes to reactive oxygen species creates a complex mixture of distinct ox...
AbstractLipid peroxidation occurs in the context of many physiological processes but is greatly incr...
Phospholipids are of critical importance in mammalian cell biology, both through providing a permeab...
Atherosclerosis is a chronic inflammatory disease, characterized by the accumulation of oxidized lip...
AbstractThis report reviews structurally related phospholipid oxidation products that are biological...
Apoptosis is recognized as important for normal cellular homeostasis in multicellular organisms. Alt...
Oxidized phospholipids (OxPL) were originally discovered as by-products and mediators of chronic inf...
AbstractOxidative stress is associated with several major ailments. However, it is only recently tha...
Physiol 286: L808–L816, 2004. First published November 26, 2003; 10.1152/ajplung.00220.2003.—Lipid o...
AbstractTissue inflammation results in the production of numerous reactive oxygen, nitrogen and chlo...
High fidelity and effective adaptive changes of the cell and tissue metabolism to changing environme...
AbstractEndogenous electrophiles, such as α,β-unsaturated aldehydes and ketones generated during lip...
Endogenous electrophiles, such as α,β-unsaturated aldehydes and ketones generated during lipid perox...
International audienceBecause of its oxidative modification during the acute-phase response to an ag...
The oxidation of low density lipoproteins (LDL) has been correlated with atherogenesis through a var...
Exposure of biological membranes to reactive oxygen species creates a complex mixture of distinct ox...
AbstractLipid peroxidation occurs in the context of many physiological processes but is greatly incr...
Phospholipids are of critical importance in mammalian cell biology, both through providing a permeab...
Atherosclerosis is a chronic inflammatory disease, characterized by the accumulation of oxidized lip...
AbstractThis report reviews structurally related phospholipid oxidation products that are biological...
Apoptosis is recognized as important for normal cellular homeostasis in multicellular organisms. Alt...
Oxidized phospholipids (OxPL) were originally discovered as by-products and mediators of chronic inf...
AbstractOxidative stress is associated with several major ailments. However, it is only recently tha...
Physiol 286: L808–L816, 2004. First published November 26, 2003; 10.1152/ajplung.00220.2003.—Lipid o...
AbstractTissue inflammation results in the production of numerous reactive oxygen, nitrogen and chlo...
High fidelity and effective adaptive changes of the cell and tissue metabolism to changing environme...
AbstractEndogenous electrophiles, such as α,β-unsaturated aldehydes and ketones generated during lip...
Endogenous electrophiles, such as α,β-unsaturated aldehydes and ketones generated during lipid perox...
International audienceBecause of its oxidative modification during the acute-phase response to an ag...
The oxidation of low density lipoproteins (LDL) has been correlated with atherogenesis through a var...
Exposure of biological membranes to reactive oxygen species creates a complex mixture of distinct ox...