Epithelial to mesenchymal transdifferentiation is a novel mechanism that promotes renal fibrosis and here we investigated whether known causes of renal fibrosis (angiotensin II and transforming growth factor β, TGFβ) act through this pathway. We infused angiotensin II into rats for 1 day and found that it activated the Smad pathway which persisted for up to 2 weeks in chronically infused rats. Renal TGF-β mRNA expression was increased at 3 days and its protein at 2 weeks suggesting Smad pathway activation occurred earlier than TGF-β upregulation. In cultured human tubuloepithelial cells, angiotensin II caused a rapid activation of Smad signaling independent of TGF-β however, Smad-dependent transcription after 1 day was TGF-β mediated. Two w...
Smad proteins and transforming growth factor-β signaling. It is now generally accepted that transfor...
Angiotensin III up-regulates genes involved in kidney damage in mesangial cells and renal interstiti...
Transforming growth factor-β (TGF-β), via its receptors, induces epithelial-mesenchymal transition (...
Epithelial to mesenchymal transdifferentiation is a novel mechanism that promotes renal fibrosis and...
Fibrosis is a common feature of chronic kidney diseases that is mediated by matrix-producing myofibr...
It has been shown that transforming growth factor-β (TGF-β) is a potent mediator in renal fibrosis a...
Recent studies have described that the Notch signaling pathway is activated in a wide range of renal...
<div><p>Recent studies have described that the Notch signaling pathway is activated in a wide range ...
Although Smad3 is a key mediator for fibrosis, its functional role and mechanisms in hypertensive ne...
Interstitial fibrosis represents the final common pathway of any form of progressive renal disease. ...
Role of angiotensin II in the expression and regulation of transforming growth factor-β in obstructi...
STAT proteins mediate angiotensin II–induced production of TIMP-1 in human proximal tubular epitheli...
Targeting TGF-β overexpression in renal disease: Maximizing the antifibrotic action of angiotensin I...
Angiotensin II modulates cell growth-related events and synthesis of matrix proteins in renal inters...
Angiotensin II blockade decreases TGF-β1 and matrix proteins in cyclosporine nephropathy. Angiotensi...
Smad proteins and transforming growth factor-β signaling. It is now generally accepted that transfor...
Angiotensin III up-regulates genes involved in kidney damage in mesangial cells and renal interstiti...
Transforming growth factor-β (TGF-β), via its receptors, induces epithelial-mesenchymal transition (...
Epithelial to mesenchymal transdifferentiation is a novel mechanism that promotes renal fibrosis and...
Fibrosis is a common feature of chronic kidney diseases that is mediated by matrix-producing myofibr...
It has been shown that transforming growth factor-β (TGF-β) is a potent mediator in renal fibrosis a...
Recent studies have described that the Notch signaling pathway is activated in a wide range of renal...
<div><p>Recent studies have described that the Notch signaling pathway is activated in a wide range ...
Although Smad3 is a key mediator for fibrosis, its functional role and mechanisms in hypertensive ne...
Interstitial fibrosis represents the final common pathway of any form of progressive renal disease. ...
Role of angiotensin II in the expression and regulation of transforming growth factor-β in obstructi...
STAT proteins mediate angiotensin II–induced production of TIMP-1 in human proximal tubular epitheli...
Targeting TGF-β overexpression in renal disease: Maximizing the antifibrotic action of angiotensin I...
Angiotensin II modulates cell growth-related events and synthesis of matrix proteins in renal inters...
Angiotensin II blockade decreases TGF-β1 and matrix proteins in cyclosporine nephropathy. Angiotensi...
Smad proteins and transforming growth factor-β signaling. It is now generally accepted that transfor...
Angiotensin III up-regulates genes involved in kidney damage in mesangial cells and renal interstiti...
Transforming growth factor-β (TGF-β), via its receptors, induces epithelial-mesenchymal transition (...