Publications by authors named "M Taccone-Gallucci"

The erythrocyte glutathione S-transferase (e-GST) is a member of a superfamily of inducible enzymes involved in cell detoxification that shows an increased expression in chronic kidney disease (CKD) patients. We propose a new automated analysis procedure for e-GST activity that has been validated in 72 CKD patients and 62 maintenance hemodialysis patients (MHD). Regression analysis was carried out to assess association between e-GST activity data, main clinical variables, and plasma homocysteine (Hcy), a modified sulfur amino acid known as potential risk factor for cardiovascular disease that is increased above normal levels in more than 90% of the uremic patients.

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A daily supplement of vitamin E is recommended for the secondary prevention of cardiovascular events in end-stage renal disease patients on maintenance hemodialysis. Vitamin E has been entrusted with therapeutic properties against cardiovascular disease for more than 60 years. Several epidemiological studies and intervention trials have been performed with vitamin E, and some of them showed that it prevents atherosclerosis.

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Aim: Cardiovascular disease is a leading cause of morbidity and mortality in end-stage renal disease (ESRD) patients on maintenance hemodialysis (HD). Neither traditional nor emerging risk factors for cardiovascular disease can explain completely this excess of morbidity and mortality and the role and timing of primary prevention strategies in this population has not been clarified. The aim of this study was to assess if an aggressive pharmacological preventive treatment may reduce the myocardial ischemic burden and then improve the cardiovascular outcome In ESRD patients.

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Project: Oxidative stress (OS) is enhanced in hemodialysis (HD) patients. Lipid peroxidation and oxidative damage to glycids, proteins and nucleic acids are the main consequences of OS and are associated with increased cardiovascular risk. Vitamin E and glutathione peroxidase (GSH-Px) represent the main antioxidant systems in human cells.

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