Role of advanced glycation end products in cardiovascular disease

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Role of advanced glycation end products in cardiovascular disease.

Advanced glycation end products (AGEs) are produced through the non enzymatic glycation and oxidation of proteins, lipids and nucleic acids. Enhanced formation of AGEs occurs particularly in conditions associated with hyperglycaemia such as diabetes mellitus (DM). AGEs are believed to have a key role in the development and progression of cardiovascular disease in patients with DM through the mo...

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pharmacologic approaches against advanced glycation end products (ages) in diabetic cardiovascular disease

context advanced glycation end-products (ages) are signaling proteins associated to several vascular and neurological complications in diabetic and non-diabetic patients. ages proved to be a marker of negative outcome in both diabetes management and surgical procedures in these patients. the reported role of ages prompted the development of pharmacological inhibitors of their effects, giving ri...

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Advanced glycation end products

Aging is the progressive accumulation of damage to an organism over time leading to disease and death. Aging research has been very intensive in the last years aiming at characterizing the pathophysiology of aging and finding possibilities to fight age-related diseases. Various theories of aging have been proposed. In the last years advanced glycation end products (AGEs) have received particula...

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Role of advanced glycation end products in cellular signaling☆

Improvements in health care and lifestyle have led to an elevated lifespan and increased focus on age-associated diseases, such as neurodegeneration, cardiovascular disease, frailty and arteriosclerosis. In all these chronic diseases protein, lipid or nucleic acid modifications are involved, including cross-linked and non-degradable aggregates, such as advanced glycation end products (AGEs). Fo...

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Advanced glycation end products, soluble receptor for advanced glycation end products, and risk of colorectal cancer.

BACKGROUND Advanced glycation end products (AGE) accumulate in human tissue proteins during aging, particularly under hyperglycemia conditions. AGEs induce oxidative stress and inflammation via the receptor for AGEs (RAGE) and soluble RAGE (sRAGE) can neutralize the effects mediated by RAGE-ligand engagement. METHODS We examined the association between N(ε)-(carboxymethyl)lysine (CML), a prom...

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ژورنال

عنوان ژورنال: World Journal of Cardiology

سال: 2012

ISSN: 1949-8462

DOI: 10.4330/wjc.v4.i4.90