4.6 Article

Temporal and Spatial Expression of Osteoactivin During Fracture Repair

期刊

JOURNAL OF CELLULAR BIOCHEMISTRY
卷 111, 期 2, 页码 295-309

出版社

WILEY
DOI: 10.1002/jcb.22702

关键词

FRACTURE; OSTEOACTIVIN; OSTEOBLASTS; CHONDROCYTES; GROWTH PLATE

资金

  1. National Institute of Arthritis and Musculoskeletal and Skin Diseases [AR48892]
  2. Department of Health, State of Pennsylvania

向作者/读者索取更多资源

We previously identified osteoactivin (OA) as a novel secreted osteogenic factor with high expression in developing long bones and calvaria, and that stimulates osteoblast differentiation and matrix mineralization in vitro. In this study, we report on OA mRNA and protein expression in intact long bone and growth plate, and in fracture calluses collected at several time points up to 21 days post-fracture (PF). OA mRNA and protein were highly expressed in osteoblasts localized in the metaphysis of intact tibia, and in hypertrophic chondrocytes localized in growth plate, findings assessed by in situ hybridization and immunohistochemistry, respectively. Using a rat fracture model, Northern blot analysis showed that expression of OA mRNA was significantly higher in day-3 and day-10 PF calluses than in intact rat femurs. Using in situ hybridization, we examined OA mRNA expression during fracture healing and found that OA was temporally regulated, with positive signals seen as early as day-3 PF, reaching a maximal intensity at day-10 PF, and finally declining at day-21 PF. At day-5 PF, which correlates with chondrogenesis, OA mRNA levels were significantly higher in the soft callus than in intact femurs. Similarly, we detected high OA protein immunoexpression throughout the reparative phase of the hard callus compared to intact femurs. Interestingly, the secreted OA protein was also detected within the newly made cartilage matrix and osteoid tissue. Taken together, these results suggest the possibility that OA plays an important role in bone formation and serves as a positive regulator of fracture healing. J. Cell. Biochem. 111: 295-309, 2010. (C) 2010 Wiley-Liss, Inc.

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