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Captopril reverses high-glucose-induced growth effects on LLC-PK1 cells partly by decreasing transforming growth factor-beta receptor protein expressions.

J Y Guh, M L Yang, Y L Yang, C C Chang and L Y Chuang
JASN August 1996, 7 (8) 1207-1215;
J Y Guh
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M L Yang
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Y L Yang
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C C Chang
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L Y Chuang
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Abstract

Transforming growth factor beta (TGF-beta) may be important in the pathogenesis of diabetic nephropathy, and captopril is effective in treating this disorder. However, the mechanisms of this therapeutic effect as related to TGF-beta and its receptors are not known. Thus, the effects of captopril on cellular growth, TGF-beta 1, and TGF-beta receptors were studied in LLC-PK1 cells cultured in normal (11 mM) or high glucose (27.5 mM). This study found that glucose dose-dependently inhibited cellular mitogenesis while inducing hypertrophy in these cells at 72 h of culture, concomitantly with enhanced TGF-beta 1 messenger RNA (mRNA) and TGF-beta receptor Types I and II protein expressions. Captopril dose-dependently (0.1 to 10 mM) increased cellular mitogenesis and inhibited hypertrophy in these cells. Moreover, captopril also decreased TGF-beta receptor Types I and II protein expressions dose-dependently. However, TGF-beta 1 mRNA was not affected by captopril. It was concluded that high glucose decreased cellular mitogenesis while increasing hypertrophy concomitantly with increased TGF-beta 1 mRNA and TGF-beta receptors in LLC-PK1 cells. Captopril can reverse high-glucose-induced growth effects by decreasing TGF-beta receptor protein expressions.

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Journal of the American Society of Nephrology
Vol. 7, Issue 8
1 Aug 1996
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Captopril reverses high-glucose-induced growth effects on LLC-PK1 cells partly by decreasing transforming growth factor-beta receptor protein expressions.
J Y Guh, M L Yang, Y L Yang, C C Chang, L Y Chuang
JASN Aug 1996, 7 (8) 1207-1215;

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Captopril reverses high-glucose-induced growth effects on LLC-PK1 cells partly by decreasing transforming growth factor-beta receptor protein expressions.
J Y Guh, M L Yang, Y L Yang, C C Chang, L Y Chuang
JASN Aug 1996, 7 (8) 1207-1215;
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Cited By...

  • Glucose-Induced TGF-{beta}1 and TGF-{beta} Receptor-1 Expression in Vascular Smooth Muscle Cells Is Mediated by Protein Kinase C-{alpha}
  • Overview of Glucose Signaling in Mesangial Cells in Diabetic Nephropathy
  • Circulating and Urinary Transforming Growth Factor {beta}1, Amadori Albumin, and Complications of Type 1 Diabetes: The EURODIAB Prospective Complications Study
  • Deranged transcriptional regulation of cell-volume-sensitive kinase hSGK in diabetic nephropathy
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