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Evidence of a Role for Fibroblast Transient Receptor Potential Canonical 3 Ca2+ Channel in Renal Fibrosis
Youakim Saliba1, Ralph Karam1, Viviane Smayra2
1Physiology and Pathophysiology Research Laboratory, Pole of Technology and Health, Faculty of Medicine and.
Abstract:
Transient receptor potential canonical (TRPC) Ca(2+)-permeant channels, especially TRPC3, are increasingly implicated in cardiorenal diseases. We studied the possible role of fibroblast TRPC3 in the development of renal fibrosis. In vitro, a macromolecular complex formed by TRPC1/TRPC3/TRPC6 existed in isolated cultured rat renal fibroblasts. However, specific blockade of TRPC3 with the pharmacologic inhibitor pyr3 was sufficient to inhibit both angiotensin II- and 1-oleoyl-2-acetyl-sn-glycerol-induced Ca(2+) entry in these cells, which was detected by fura-2 Ca(2+) imaging. TRPC3 blockade or Ca(2+) removal inhibited fibroblast proliferation and myofibroblast differentiation by suppressing the phosphorylation of extracellular signal-regulated kinase (ERK1/2). In addition, pyr3 inhibited fibrosis and inflammation-associated markers in a noncytotoxic manner. Furthermore, TRPC3 knockdown by siRNA confirmed these pharmacologic findings. In adult male Wistar rats or wild-type mice subjected to unilateral ureteral obstruction, TRPC3 expression increased in the fibroblasts of obstructed kidneys and was associated with increased Ca(2+) entry, ERK1/2 phosphorylation, and fibroblast proliferation. Both TRPC3 blockade in rats and TRPC3 knockout in mice inhibited ERK1/2 phosphorylation and fibroblast activation as well as myofibroblast differentiation and extracellular matrix remodeling in obstructed kidneys, thus ameliorating tubulointerstitial damage and renal fibrosis. In conclusion, TRPC3 channels are present in renal fibroblasts and control fibroblast proliferation, differentiation, and activation through Ca(2+)-mediated ERK signaling. TRPC3 channels might constitute important therapeutic targets for improving renal remodeling in kidney disease.
Insights
Fibroblast Transient Receptor Potential Canonical 3 (TRPC3) channels drive renal fibrosis by promoting fibroblast activation and extracellular matrix remodeling. Blocking TRPC3 ameliorates kidney damage, suggesting TRPC3 as a therapeutic target for kidney disease.
Area of Science:
- Physiology
- Molecular Biology
- Nephrology
Background:
- Transient receptor potential canonical (TRPC) channels, particularly TRPC3, are linked to cardiorenal diseases.
- The specific role of fibroblast TRPC3 in renal fibrosis development requires elucidation.
Purpose of the Study:
- To investigate the role of fibroblast TRPC3 in the pathogenesis of renal fibrosis.
- To explore TRPC3 as a potential therapeutic target for kidney disease.
Main Methods:
- In vitro studies using cultured rat renal fibroblasts with TRPC3 blockade (pyr3) or knockdown (siRNA).
- In vivo studies using unilateral ureteral obstruction models in Wistar rats and TRPC3 knockout mice.
- Assessed Ca(2+) entry, ERK1/2 phosphorylation, fibroblast proliferation, myofibroblast differentiation, and extracellular matrix remodeling.
Main Results:
- TRPC3 blockade/knockdown inhibited Ca(2+) entry, fibroblast proliferation, and myofibroblast differentiation by suppressing ERK1/2 phosphorylation.
- In vivo, increased TRPC3 expression correlated with renal fibrosis markers.
- TRPC3 inhibition/deficiency ameliorated tubulointerstitial damage and renal fibrosis in obstructed kidneys.
Conclusions:
- Renal fibroblast TRPC3 channels regulate fibroblast activation and extracellular matrix production via Ca(2+)-mediated ERK signaling.
- TRPC3 channels represent a promising therapeutic target for mitigating renal fibrosis and improving kidney disease outcomes.
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