IGF1 potentiates BMP9-induced osteogenic differentiation in mesenchymal stem cells through the enhancement of BMP/Smad signaling

BMB Rep. 2016 Feb;49(2):122-7. doi: 10.5483/bmbrep.2016.49.2.228.

Abstract

Engineered bone tissue is thought to be the ideal alternative for bone grafts in the treatment of related bone diseases. BMP9 has been demonstrated as one of the most osteogenic factors, and enhancement of BMP9-induced osteogenesis will greatly accelerate the development of bone tissue engineering. Here, we investigated the effect of insulin-like growth factor 1 (IGF1) on BMP9-induced osteogenic differentiation, and unveiled a possible molecular mechanism underling this process. We found that IGF1 and BMP9 are both detectable in mesenchymal stem cells (MSCs). Exogenous expression of IGF1 potentiates BMP9-induced alkaline phosphatase (ALP), matrix mineralization, and ectopic bone formation. Similarly, IGF1 enhances BMP9-induced endochondral ossification. Mechanistically, we found that IGF1 increases BMP9-induced activation of BMP/Smad signaling in MSCs. Our findings demonstrate that IGF1 can enhance BMP9-induced osteogenic differentiation in MSCs, and that this effect may be mediated by the enhancement of the BMP/Smad signaling transduction triggered by BMP9. [BMB Reports 2016; 49(2): 122-127].

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Alkaline Phosphatase / metabolism
  • Animals
  • Biomarkers / metabolism
  • Calcification, Physiologic / drug effects
  • Cell Differentiation* / drug effects
  • Extracellular Matrix / drug effects
  • Extracellular Matrix / metabolism
  • Growth Differentiation Factor 2 / metabolism*
  • HEK293 Cells
  • Humans
  • Insulin-Like Growth Factor I / genetics
  • Insulin-Like Growth Factor I / metabolism*
  • Insulin-Like Growth Factor I / pharmacology
  • Mesenchymal Stem Cells / cytology*
  • Mesenchymal Stem Cells / metabolism*
  • Mice
  • Osteogenesis / drug effects
  • Osteopontin / metabolism
  • Signal Transduction* / drug effects
  • Smad Proteins / metabolism*
  • Up-Regulation / drug effects
  • Up-Regulation / genetics

Substances

  • Biomarkers
  • Growth Differentiation Factor 2
  • Smad Proteins
  • Osteopontin
  • Insulin-Like Growth Factor I
  • Alkaline Phosphatase