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Therapeutic Interventions for Advanced Glycation-End Products and its Receptor- Mediated Cardiovascular Disease
Kailash Prasad1, Shuchita Tiwari
1Department of Physiology, College of Medicine, University of Saskatchewan, 107 Wiggins Road, Saskatoon, SK, S7N 5E5. Canada.
Abstract:
Advanced glycation end products (AGEs) are heterogeneous group of molecules formed from nonenzymatic reaction of reducing sugars with amino group of proteins, lipids, and nucleic acid. Interaction of AGEs with its cell-bound receptor (RAGE) results in generation of oxygen radicals, nuclear factor kappa-β, proinflammatory cytokines and cell adhesion molecules, and is involved in the pathophysiology of cardiovascular diseases (CVD). Circulating soluble forms of RAGE (sRAGE) and endo-secretory RAGE (esRAGE) compete with RAGE for ligand binding and function as a decoy. This paper describes the endogenous and exogenous (high dietary AGEs, and cooking food under high dry heat, elevated pH, and longer period) sources of AGEs. AGERAGE- mediated CVD includes atherosclerosis, coronary artery disease, carotid artery disease, hypertension, peripheral vascular diseases, heart failure, cardiomyopathy, and microangiopathy. The therapeutic interventions with reduction in AGEs and RAGE, and elevation in sRAGE has been reported for the treatment of AGE-RAGEmediated CVD. Reduction in levels of AGEs can be achieved by reduction in consumption of food containing low amount of AGEs, cooking food at low temperature, moist heat, and shorter duration. AGE formation can be reduced with drugs, vitamins and stoppage of cigarette smoking. Statins, telmisartan, and curcumin have been used for suppression of RAGE. Statins, ACE-inhibitors, Rosiglitazone and vitamin D have been used to increase levels of sRAGE. Finally exogenous administration of sRAGE can be helpful in amelioration of CVD. In conclusion, AGE-RAGE-mediated CVD could be attenuated with reduction in consumption of AGEs, suppression of RAGE and elevation of sRAGE.
Insights
Advanced glycation end products (AGEs) contribute to cardiovascular diseases (CVD) by interacting with the receptor for AGEs (RAGE). Reducing AGEs and RAGE, while increasing soluble RAGE (sRAGE), can help treat and prevent AGE-RAGE-mediated CVD.
Area of Science:
- Biochemistry
- Pathophysiology
- Cardiovascular Medicine
Background:
- Advanced glycation end products (AGEs) are formed from nonenzymatic sugar reactions with proteins, lipids, and nucleic acids.
- The interaction between AGEs and their receptor (RAGE) triggers cellular responses implicated in cardiovascular disease (CVD) pathophysiology.
- Soluble forms of RAGE (sRAGE and esRAGE) act as decoys, competing with cell-bound RAGE for AGEs.
Purpose of the Study:
- To describe the sources of AGEs, both endogenous and exogenous.
- To outline the mechanisms by which AGEs and RAGE contribute to various cardiovascular diseases.
- To review therapeutic strategies for mitigating AGE-RAGE-mediated CVD.
Main Methods:
- Literature review of endogenous and exogenous AGE sources.
- Analysis of the pathophysiological role of the AGE-RAGE axis in CVD.
- Compilation of therapeutic interventions targeting AGEs, RAGE, and sRAGE.
Main Results:
- AGEs are formed endogenously and exogenously through diet and cooking methods.
- AGE-RAGE interactions contribute to atherosclerosis, hypertension, heart failure, and other CVDs.
- Therapeutic strategies include dietary modification, lifestyle changes, and pharmacological agents to reduce AGEs/RAGE or increase sRAGE.
Conclusions:
- AGE-RAGE-mediated CVD is a significant clinical concern.
- Reducing AGE consumption and formation, inhibiting RAGE, and increasing sRAGE levels are key therapeutic goals.
- Exogenous sRAGE administration may offer a novel treatment approach for CVD.
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