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      Osteal macrophages promote in vivo intramembranous bone healing in a mouse tibial injury model.

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          Abstract

          Bone-lining tissues contain a population of resident macrophages termed osteomacs that interact with osteoblasts in vivo and control mineralization in vitro. The role of osteomacs in bone repair was investigated using a mouse tibial bone injury model that heals primarily through intramembranous ossification and progresses through all major phases of stabilized fracture repair. Immunohistochemical studies revealed that at least two macrophage populations, F4/80(+) Mac-2(-/low) TRACP(-) osteomacs and F4/80(+) Mac-2(hi) TRACP(-) inflammatory macrophages, were present within the bone injury site and persisted throughout the healing time course. In vivo depletion of osteomacs/macrophages (either using the Mafia transgenic mouse model or clodronate liposome delivery) or osteoclasts (recombinant osteoprotegerin treatment) established that osteomacs were required for deposition of collagen type 1(+) (CT1(+)) matrix and bone mineralization in the tibial injury model, as assessed by quantitative immunohistology and micro-computed tomography. Conversely, administration of the macrophage growth factor colony-stimulating factor 1 (CSF-1) increased the number of osteomacs/macrophages at the injury site significantly with a concurrent increase in new CT1(+) matrix deposition and enhanced mineralization. This study establishes osteomacs as participants in intramembranous bone healing and as targets for primary anabolic bone therapies.

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          Author and article information

          Journal
          J Bone Miner Res
          Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
          Wiley
          1523-4681
          0884-0431
          Jul 2011
          : 26
          : 7
          Affiliations
          [1 ] The University of Queensland, UQ Centre for Clinical Research, Herston, Australia.
          Article
          10.1002/jbmr.354
          21305607
          1efd7753-6760-4364-a6ea-4c159b71a5de
          Copyright © 2011 American Society for Bone and Mineral Research.
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