High glucose inhibits renal proximal tubule cell proliferation and involves PKC, oxidative stress, and TGF-β1.BackgroundThe alteration of renal cell growth is one of the early abnormalities in the diabetic nephropathy. However, the effects of high glucose and its action mechanism in renal proximal tubule cell (PTC) proliferation have not been elucidated.MethodsThe effects of 25mmol/L glucose on cell proliferation, thymidine, and leucine incorporation, cell cycle, and lipid peroxide formation were examined in the primary cultured renal PTCs.ResultsGlucose 25mmol/L inhibited [3H]-thymidine incorporation and decreased cell growth. However, it increased [3H]-leucine incorporation and protein content. Furthermore, 25mmol/L glucose increased lipi...
High glucose can induce lipid peroxidation in the isolated rat glomeruli. The present study examined...
We have recently reported increased transforming growth factor (TGF)-beta1 gene transcription in pro...
Background. TGF-β1 bioactivation, consequent to the interaction of latent TGF-β1 with thrombospondin...
High glucose inhibits renal proximal tubule cell proliferation and involves PKC, oxidative stress, a...
High glucose inhibits glucose uptake in renal proximal tubule cells by oxidative stress and protein ...
Elevated glucose stimulates TGF-β gene expression and bioactivity in proximal tubule. Our previous s...
Molecular mechanisms of diabetic renal hypertrophy. Altered growth of renal cells is one of the earl...
Transcriptional activation of transforming growth factor-β1 in mesangial cell culture by high glucos...
Thickening of tubular basement membrane and progressive tubulointerstitial fibrosis has been reporte...
Reactive oxygen species as glucose signaling molecules in mesangial cells cultured under high glucos...
BACKGROUND: In the kidney glucose is freely filtered by the glomerulus and, mainly, reabsorbed by so...
Abnormal glycemia is frequently along with nephritis, whose pathogenesis is unexplicit. Here, we inv...
Diabetic kidney disease (DKD) is a leading cause of end-stage renal disease (ESRD). Renal tubular in...
F2-isoprostanes mediate high glucose-induced TGF-β synthesis and glomerular proteinuria in experimen...
High glucose down-regulates angiotensin II binding via the PKC-MAPK-cPLA2 signal cascade in renal pr...
High glucose can induce lipid peroxidation in the isolated rat glomeruli. The present study examined...
We have recently reported increased transforming growth factor (TGF)-beta1 gene transcription in pro...
Background. TGF-β1 bioactivation, consequent to the interaction of latent TGF-β1 with thrombospondin...
High glucose inhibits renal proximal tubule cell proliferation and involves PKC, oxidative stress, a...
High glucose inhibits glucose uptake in renal proximal tubule cells by oxidative stress and protein ...
Elevated glucose stimulates TGF-β gene expression and bioactivity in proximal tubule. Our previous s...
Molecular mechanisms of diabetic renal hypertrophy. Altered growth of renal cells is one of the earl...
Transcriptional activation of transforming growth factor-β1 in mesangial cell culture by high glucos...
Thickening of tubular basement membrane and progressive tubulointerstitial fibrosis has been reporte...
Reactive oxygen species as glucose signaling molecules in mesangial cells cultured under high glucos...
BACKGROUND: In the kidney glucose is freely filtered by the glomerulus and, mainly, reabsorbed by so...
Abnormal glycemia is frequently along with nephritis, whose pathogenesis is unexplicit. Here, we inv...
Diabetic kidney disease (DKD) is a leading cause of end-stage renal disease (ESRD). Renal tubular in...
F2-isoprostanes mediate high glucose-induced TGF-β synthesis and glomerular proteinuria in experimen...
High glucose down-regulates angiotensin II binding via the PKC-MAPK-cPLA2 signal cascade in renal pr...
High glucose can induce lipid peroxidation in the isolated rat glomeruli. The present study examined...
We have recently reported increased transforming growth factor (TGF)-beta1 gene transcription in pro...
Background. TGF-β1 bioactivation, consequent to the interaction of latent TGF-β1 with thrombospondin...