Vitamin E was previously reported to reduce calcium oxalate (CaOx) crystal formation. This study explored whether vitamin E deficiency affects intrarenal oxidative stress and accelerates crystal deposition in hyperoxaluria. The control (C) group of rats received a standard diet and drinking water, while the experimental groups received 0.75% ethylene glycol (EG) in drinking water for 42 days. Of the latter, one group received a standard diet (EG group), one received a low-vitamin E (LE) diet (EG+LE group), and the last received an LE diet with vitamin E supplement (4 mg) ( EG+LE+E group). The C+LE and C+LE+E groups were the specific controls for the last two experimental groups, respectively . In a separate experiment, EG and EG+LE rats wer...
"nBackground: Obstructive nephropathy has been associated with disorders in metabolism state an...
Ethylene glycol (EG), a frequently used lithogenic agent, causes calcium oxalate (CaOx) crystal depo...
Lipid peroxidation is not the underlying cause of renal injury in hyperoxaluric rats.BackgroundHyper...
We previously reported that oxidative stress and renal tubular damage occur in chronic hyperoxaluric...
We previously reported that oxidative stress and renal tubular damage occur in chronic hyperoxaluric...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Hyperoxaluria associated with renal deposition of calcium oxalate (CaOx) crystals causes renal injur...
Enhanced sodium excretion is associated with intrarenal oxidative stress. The present study evaluate...
Adhesion of calcium oxalate (CaOx) crystals to kidney cells may be a key event in the pathogenesis o...
A number of animal models have been developed to investigate calcium oxalate (CaOx) nephrolithiasis....
Using ethylene glycol (EG) and vitamin D3 as crystal-inducing diet (CID) in rats, we investigated th...
Background/Aims: In the rat Adriamycin model of chronic renal failure, the development of glomerulos...
In the present study, we exposed rats to a crystal-inducing diet (CID) consisting of vitamin D3 and ...
Enhanced sodium excretion is associated with intrarenal oxidative stress. The present study evaluate...
The aim of this study was to evaluate possible changes in renal hemodynamic and urodynamic parameter...
"nBackground: Obstructive nephropathy has been associated with disorders in metabolism state an...
Ethylene glycol (EG), a frequently used lithogenic agent, causes calcium oxalate (CaOx) crystal depo...
Lipid peroxidation is not the underlying cause of renal injury in hyperoxaluric rats.BackgroundHyper...
We previously reported that oxidative stress and renal tubular damage occur in chronic hyperoxaluric...
We previously reported that oxidative stress and renal tubular damage occur in chronic hyperoxaluric...
Environmental and diet have a major role in calcium nephrolithiasis by affecting urine saturation, b...
Hyperoxaluria associated with renal deposition of calcium oxalate (CaOx) crystals causes renal injur...
Enhanced sodium excretion is associated with intrarenal oxidative stress. The present study evaluate...
Adhesion of calcium oxalate (CaOx) crystals to kidney cells may be a key event in the pathogenesis o...
A number of animal models have been developed to investigate calcium oxalate (CaOx) nephrolithiasis....
Using ethylene glycol (EG) and vitamin D3 as crystal-inducing diet (CID) in rats, we investigated th...
Background/Aims: In the rat Adriamycin model of chronic renal failure, the development of glomerulos...
In the present study, we exposed rats to a crystal-inducing diet (CID) consisting of vitamin D3 and ...
Enhanced sodium excretion is associated with intrarenal oxidative stress. The present study evaluate...
The aim of this study was to evaluate possible changes in renal hemodynamic and urodynamic parameter...
"nBackground: Obstructive nephropathy has been associated with disorders in metabolism state an...
Ethylene glycol (EG), a frequently used lithogenic agent, causes calcium oxalate (CaOx) crystal depo...
Lipid peroxidation is not the underlying cause of renal injury in hyperoxaluric rats.BackgroundHyper...