We have recently described that in the erythrocytes from uremic patients on chronic hemodialysis, the pentose-phosphate shunt is defective, the membrane concentrations of malonyldialdehyde, resulting from peroxidation of polyunsaturated fatty acids in the membranes themselves, are increased, and the concentrations of vitamin E, an antioxidizing agent, are reduced. In the present study we have analyzed these same metabolic aspects in a group of uremic patients in continuous ambulatory peritoneal dialysis. We have found normal function of the pentose-phosphate shunt, slightly elevated concentrations of malonyldialdehyde compared to controls, but definitely lower than in chronic hemodialysis patients, and higher tocopherol concentrations than ...
SummaryObjectiveIn this study we investigated the effect of peritoneal dialysis (PD) on some antioxi...
The effect of vitamin E therapy on plasma and erythrocyte (RBC) lipid peroxidation was investigated ...
Increased oxidative damage to cell membrane constituents causes profound changes in the membrane cyt...
Some metabolic alterations of the pentose-phosphate shunt can increase susceptibility to red blood c...
OBJECTIVE: To investigate the overall susceptibility of red blood cells (RBC) to lipid peroxidation ...
In hemodialysis patients the pentose-phosphate shunt activity is deficient. As a consequence, the li...
Pre dialysis concentrations of malonyldialdehyde (MDA) in the red blood cell membranes and pre and p...
It has been reported that increased peroxidation of the polyunsaturated fatty acids in the erythrocy...
It has been reported that increased peroxidation of the polyunsaturated fatty acids in the erythrocy...
We described previously that in the erythrocytes and mononuclear blood cells from uremic patients on...
Three groups of patients with chronic renal failure (CRF), 16 non-dialyzed, 16 undergoing haemodialy...
In anaemia of chronic renal failure, the most important factor in the shortened erythrocyte survival...
Objective: To estimate lipid peroxidation and the antioxidant defense capacity of dialysis patients ...
Hemodialysis patients display increased oxidative damage to red blood cell (RBC) membranes, characte...
The tocopherol and malonyldialdeyde levels in the erythrocytes of 15 children affected by chronic re...
SummaryObjectiveIn this study we investigated the effect of peritoneal dialysis (PD) on some antioxi...
The effect of vitamin E therapy on plasma and erythrocyte (RBC) lipid peroxidation was investigated ...
Increased oxidative damage to cell membrane constituents causes profound changes in the membrane cyt...
Some metabolic alterations of the pentose-phosphate shunt can increase susceptibility to red blood c...
OBJECTIVE: To investigate the overall susceptibility of red blood cells (RBC) to lipid peroxidation ...
In hemodialysis patients the pentose-phosphate shunt activity is deficient. As a consequence, the li...
Pre dialysis concentrations of malonyldialdehyde (MDA) in the red blood cell membranes and pre and p...
It has been reported that increased peroxidation of the polyunsaturated fatty acids in the erythrocy...
It has been reported that increased peroxidation of the polyunsaturated fatty acids in the erythrocy...
We described previously that in the erythrocytes and mononuclear blood cells from uremic patients on...
Three groups of patients with chronic renal failure (CRF), 16 non-dialyzed, 16 undergoing haemodialy...
In anaemia of chronic renal failure, the most important factor in the shortened erythrocyte survival...
Objective: To estimate lipid peroxidation and the antioxidant defense capacity of dialysis patients ...
Hemodialysis patients display increased oxidative damage to red blood cell (RBC) membranes, characte...
The tocopherol and malonyldialdeyde levels in the erythrocytes of 15 children affected by chronic re...
SummaryObjectiveIn this study we investigated the effect of peritoneal dialysis (PD) on some antioxi...
The effect of vitamin E therapy on plasma and erythrocyte (RBC) lipid peroxidation was investigated ...
Increased oxidative damage to cell membrane constituents causes profound changes in the membrane cyt...