reviewCold Spring Harbor Perspectives in BiologyJan 1, 2013BRONZE OA

Development of the Endochondral Skeleton

Washington University in St. Louis

PubMed
Indexed incrossrefpubmed

Abstract

Much of the mammalian skeleton is composed of bones that originate from cartilage templates through endochondral ossification. Elucidating the mechanisms that control endochondral bone development is critical for understanding human skeletal diseases, injury response, and aging. Mouse genetic studies in the past 15 years have provided unprecedented insights about molecules regulating chondrocyte formation, chondrocyte maturation, and osteoblast differentiation, all key processes of endochondral bone development. These include the roles of the secreted proteins IHH, PTHrP, BMPs, WNTs, and FGFs, their receptors, and transcription factors such as SOX9, RUNX2, and OSX, in regulating chondrocyte and osteoblast…

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660
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268
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Authors

2

Topics & keywords

Keywords
  • Endochondral ossification
  • Chondrocyte
  • RUNX2
  • Biology
  • Cell biology
  • Cartilage
  • SOX9
  • Osteoblast
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