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1.
Journal of Practical Stomatology ; (6): 152-156, 2017.
Article in Chinese | WPRIM | ID: wpr-619258

ABSTRACT

Objective:To investigate the effects of BMP9 combined with NGF on the osteogenic differentiation of mesenchymal stem cells(MSCs).Methods:Recombinant BMP9 adenovirus was transfected into C3H10T1/2 cells.The cells were treated by GFP,NGF,BMP9 and BMP9 + NGF respectively.The expression level of COL1,RUNX2 was detected by RT-PCR and Western blot,ALP activity was examined by ALP kit 3,12,24,48 hours,3 and 7 days after treatment,respectively.Results:The ALP activity of BMP9 + NGF group was the highest among the 4 groups.The difference in the groups firstly appeared at 3 h after treatment.The highest expression level of RUNX2 and COL1 was detected in BMP9 + NGF group.Conclusion:NGF and BMP9 may synergisticly promote osteogenic differentiation at the early stage of osteogenic induction of C3H10T1/2 cells.

2.
Progress in Biochemistry and Biophysics ; (12)2006.
Article in Chinese | WPRIM | ID: wpr-596100

ABSTRACT

In order to validate and estimate the capability of BMP9 to induce osteogenic differentiation of multipotent stem cells, three multipotent stem cells(C3H10, MEFs and BMSC) were used as target cells, and BMP9 was introduced into these cells by using recombinant adenoviruses assay, the effect of BMP9 on osteogenic differentiation of multipotent stem cells was demonstrated by using luciferase reporter assay, alkaline phosphatase(ALP) quantitative assay, calcium deposition assay, real time PCR, animal experiment and histological staining assay.The results demonstrated that BMP9 can induce ALP expression of C3H10, MEFs and BMSC by a dose dependent manner.BMP9 can also stimulate calcium deposition of C3H10 and MEFs in vitro, the osteogenic markers(ALP, Runx2, osteopontin, osteocalcin) were increased after stimulated by BMP9.BMP9 can activate canonical TGF?-Smad pathway, and promote the expression of osteogenic master gene Runx2.The animal experiment and histological staining assay show that BMP9 can induce ectopic bone formation in naked mice.To sum up, BMP9 is a more powerful cell factor to induce osteogenic differentiation of multipotent stem cells.

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