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Angiotensin receptor I stimulates osteoprogenitor proliferation through TGFβ-mediated signaling.
- Source :
-
Journal of cellular physiology [J Cell Physiol] 2015 Jul; Vol. 230 (7), pp. 1466-74. - Publication Year :
- 2015
-
Abstract
- Clinical studies of large human populations and pharmacological interventions in rodent models have recently suggested that anti-hypertensive drugs that target angiotensin II (Ang II) activity may also reduce loss of bone mineral density. Here, we identified in a genetic screening the Ang II type I receptor (AT1R) as a potential determinant of osteogenic differentiation and, implicitly, bone formation. Silencing of AT1R expression by RNA interference severely impaired the maturation of a multipotent mesenchymal cell line (W20-17) along the osteoblastic lineage. The same effect was also observed after the addition of the AT1R antagonist losartan but not the AT2R inhibitor PD123,319. Additional cell culture assays traced the time of greatest losartan action to the early stages of W20-17 differentiation, namely during cell proliferation. Indeed, addition of Ang II increased proliferation of differentiating W20-17 and primary mesenchymal stem cells and this stimulation was reversed by losartan treatment. Cells treated with losartan also displayed an appreciable decrease of activated (phosphorylated)-Smad2/3 proteins. Moreover, Ang II treatment elevated endogenous transforming growth factor β (TGFβ) expression considerably and in an AT1R-dependent manner. Finally, exogenous TGFβ was able to restore high proliferative activity to W20-17 cells that were treated with both Ang II and losartan. Collectively, these results suggest a novel mechanism of Ang II action in bone metabolism that is mediated by TGFβ and targets proliferation of osteoblast progenitors.<br /> (© 2015 Wiley Periodicals, Inc.)
- Subjects :
- Angiotensin II Type 2 Receptor Blockers pharmacology
Angiotensins
Animals
Cell Differentiation
Cells, Cultured
Humans
Imidazoles pharmacology
Losartan pharmacology
Mesenchymal Stem Cells physiology
Mice
Osteoblasts physiology
Pyridines pharmacology
RNA, Small Interfering
Transforming Growth Factor beta genetics
Gene Expression Regulation physiology
Mesenchymal Stem Cells cytology
Osteoblasts cytology
Receptor, Angiotensin, Type 1 physiology
Signal Transduction physiology
Transforming Growth Factor beta metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1097-4652
- Volume :
- 230
- Issue :
- 7
- Database :
- MEDLINE
- Journal :
- Journal of cellular physiology
- Publication Type :
- Academic Journal
- Accession number :
- 25556973
- Full Text :
- https://doi.org/10.1002/jcp.24887