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      Hypertrophic chondrocytes can become osteoblasts and osteocytes in endochondral bone formation.

      Proceedings of the National Academy of Sciences of the United States of America
      Animals, Bone Development, Cell Differentiation, Cell Lineage, Chondrocytes, cytology, Mice, Osteoblasts, Osteocytes

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          Abstract

          According to current dogma, chondrocytes and osteoblasts are considered independent lineages derived from a common osteochondroprogenitor. In endochondral bone formation, chondrocytes undergo a series of differentiation steps to form the growth plate, and it generally is accepted that death is the ultimate fate of terminally differentiated hypertrophic chondrocytes (HCs). Osteoblasts, accompanying vascular invasion, lay down endochondral bone to replace cartilage. However, whether an HC can become an osteoblast and contribute to the full osteogenic lineage has been the subject of a century-long debate. Here we use a cell-specific tamoxifen-inducible genetic recombination approach to track the fate of murine HCs and show that they can survive the cartilage-to-bone transition and become osteogenic cells in fetal and postnatal endochondral bones and persist into adulthood. This discovery of a chondrocyte-to-osteoblast lineage continuum revises concepts of the ontogeny of osteoblasts, with implications for the control of bone homeostasis and the interpretation of the underlying pathological bases of bone disorders.

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          Author and article information

          Journal
          25092332
          4143064
          10.1073/pnas.1302703111

          Chemistry
          Animals,Bone Development,Cell Differentiation,Cell Lineage,Chondrocytes,cytology,Mice,Osteoblasts,Osteocytes

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