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Advanced lipid peroxidation end products in oxidative damage to proteins. Potential role in diseases and therapeutic prospects for the inhibitors

British Journal of Pharmacology · 2007 · Vol. 153(1) · pp. 6–20

Abstract

Reactive carbonyl compounds (RCCs) formed during lipid peroxidation and sugar glycoxidation, namely Advanced lipid peroxidation end products (ALEs) and Advanced Glycation end products (AGEs), accumulate with ageing and oxidative stress-related diseases, such as atherosclerosis, diabetes or neurodegenerative diseases. RCCs induce the 'carbonyl stress' characterized by the formation of adducts and cross-links on proteins, which progressively leads to impaired protein function and damages in all tissues, and pathological consequences including cell dysfunction, inflammatory response and apoptosis. The prevention of carbonyl stress involves the use of free radical scavengers and antioxidants that prevent the generation of lipid peroxidation products, but are inefficient on pre-formed RCCs. Conversely, carbonyl scavengers prevent carbonyl stress by inhibiting the formation of protein cross-links. While a large variety of AGE inhibitors has been developed, only few carbonyl scavengers have been tested on ALE-mediated effects. This review summarizes the signalling properties of ALEs and ALE-precursors, their role in the pathogenesis of oxidative stress-associated diseases, and the different agents efficient in neutralizing ALEs effects in vitro and in vivo. The generation of drugs sharing both antioxidant and carbonyl scavenger properties represents a new therapeutic challenge in the treatment of carbonyl stress-associated diseases.

Advanced Glycation End Products researchNatural Antidiabetic Agents StudiesPhytochemicals and Antioxidant ActivitiesLipid peroxidationOxidative stressGlycationChemistryAntioxidantBiochemistryFree radical scavengerPharmacologyReactive oxygen speciesAdvanced glycation end-product

MeSH terms

AgingAldehydesAnimalsAntioxidantsCardiovascular DiseasesCell CycleHumansInflammationLipoproteins, LDLNeoplasmsOxidation-ReductionProteinsLipid PeroxidationSignal TransductionNF-kappa B

Funding

  • Institut National de la Santé et de la Recherche Médicale
  • Fondation pour la Recherche Médicale
Citations
619
FWCI
12.27
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References
183
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99%
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References
Beyond Cholesterol
New England Journal of Medicine · 1989 · 6,424 citations
Oxidative stress in Parkinson's disease
Annals of Neurology · 2003 · 2,042 citations
Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde and related aldehydes
Free Radical Biology and Medicine · 1991 · 6,615 citations
Use of aminoguanidine (Pimagedine) to prevent the formation of advanced glycation endproducts
Archives of Biochemistry and Biophysics · 2003 · 665 citations
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Advanced lipid peroxidation end products in oxidative damage to proteins. Potential role in diseases and therapeutic prospects for the inhibitors · Scinovex