4.7 Article

TGF-β/Smad2 signalling regulates enchondral bone formation of Gli1+ periosteal cells during fracture healing

Journal

CELL PROLIFERATION
Volume 53, Issue 11, Pages -

Publisher

WILEY
DOI: 10.1111/cpr.12904

Keywords

enchondral bone formation; fracture healing; Gli1; periosteum; TGF-beta signalling

Categories

Funding

  1. Traditional chinese medical administration of Zhejiang province [2016ZA048, 2018ZA034, 2018ZZ011, 2019ZQ018]
  2. National Natural Science Foundation of China [81774332, 81774346, 81873324, 81873325, 81904219, 81904221, 81904223, 81973869]
  3. Health Commission of Zhejiang Province [2019RC225]
  4. Opening Project of Zhejiang Provincial Preponderant and Characteristic Subject of Key University (Chinese Traditional Medicine), Zhejiang Chinese Medical University [ZYX2018001, ZYX2018004]
  5. Natural Science Foundation of Zhejiang Province [LQ16H270007, LY16H270010, LY18H270004]
  6. Youth Foundation of Zhejiang Chinese Medical University [KC201932]

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Objectives Most bone fracture heals through enchondral bone formation that relies on the involvement of periosteal progenitor cells. However, the identity of periosteal progenitor cells and the regulatory mechanism of their proliferation and differentiation remain unclear. The aim of this study was to investigate whetherGli1-Cre(ERT2)can identify a population of murine periosteal progenitor cells and the role of TGF-beta signalling in periosteal progenitor cells on fracture healing. Materials and methods Double heterozygous Gli1-CreER(T2);Rosa26-tdTomato(flox/wt) mice were sacrificed at different time points for tracing the fate of Gli1(+) cells in both intact and fracture bone.Gli1-CreER(T2)-mediatedTgfbr2knockout (Gli1-CreER(T2);Tgfbr2(flox/flox)) mice were subjected to fracture surgery. At 4, 7, 10, 14 and 21 days post-surgery, tibia samples were harvested for tissue analyses including mu CT, histology, real-time PCR and immunofluorescence staining. Results Through cell lineage-tracing experiments, we have revealed that Gli1-Cre(ERT2) can be used to identify a subpopulation of periosteal progenitor cells in vivo that persistently reside in periosteum and contribute to osteochondral elements during fracture repair. During the healing process, TGF-beta signalling is continually activated in the reparative Gli1(+)periosteal cells. Conditional knockout ofTgfbr2in these cells leads to a delayed and impaired enchondral bone formation, at least partially due to the reduced proliferation and chondrogenic and osteogenic differentiation of Gli1(+) periosteal cells. Conclusions TGF-beta signalling plays an essential role on fracture repair via regulating enchondral bone formation process of Gli1(+)periosteal cells.

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