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An Efficient and Reproducible Protocol for Distraction Osteogenesis in a Rat Model Leading to a Functional Regenerated Femur
Published on: October 23, 2017
Specification of Sprouty2 functions in osteogenesis in in vivo context
Barbora Vesela1, Eva Svandova1, Maria Hovorakova2
1Laboratory of Odontogenesis and Osteogenesis, Institute of Animal Physiology and Genetics, Academy of Sciences , Brno , Czech Republic.
Abstract:
Sprouty proteins are modulators of the MAPK/ERK pathway. Amongst these, Sprouty2 (SPRY2) has been investigated as a possible factor that takes part in the initial phases of osteogenesis. However, the in vivo context has not yet been investigated and the underlying mechanisms taking place in vitro remain unknown. Therefore, in this study, the impact of Spry2 deficiency was examined in the developing tibias of Spry2 deficient (-/-) mouse. The investigation was performed when the osteogenic zone became clearly visible and when all three basic bone cells types were present. The main markers of osteoblasts, osteocytes and osteoclasts were evaluated by immunohistochemistry and RT-PCR. RT-PCR showed that the expression of Sost was 3.5 times higher in Spry2-/- than in the wild-type bone, which pointed to a still unknown mechanism of action of SPRY2 on the differentiation of osteocytes. The up-regulation of Sost was independent of Hif-1α expression and could not be related to its positive regulator, Runx2, since none of these factors showed an increased expression in the bone of Spry2-/- mice. Regarding the RANK/RANKL/OPG pathway, the Spry2-/- showed an increased expression of Rank, but no significant change in the expression of Rankl and Opg. Thanks to these results, the impact of Spry2 deletion is shown for the first time in the developing bone as a complex organ including, particularly, an effect on osteoblasts (Runx2) and osteocytes (Sost). This might explain the previously reported decrease in bone formation in postnatal Spry2-/- mice.
Insights
Sprouty2 deficiency in mice increases Sost expression, impacting osteoblasts and osteocytes. This study reveals SPRY2
Area of Science:
- Molecular Biology
- Skeletal Biology
- Developmental Biology
Background:
- Sprouty proteins, including Sprouty2 (SPRY2), regulate the MAPK/ERK pathway.
- SPRY2's role in early osteogenesis is suggested, but its in vivo function and mechanisms remain unclear.
Purpose of the Study:
- To investigate the in vivo impact of Sprouty2 deficiency on developing mouse tibia.
- To elucidate the underlying mechanisms of SPRY2's action on bone cell differentiation.
Main Methods:
- Analysis of Spry2 deficient (Spry2-/-) and wild-type mouse tibias during early osteogenesis.
- Evaluation of osteoblast, osteocyte, and osteoclast markers using immunohistochemistry and RT-PCR.
- Assessment of Sost, Hif-1α, Runx2, and RANK/RANKL/OPG pathway gene expression.
Main Results:
- Spry2-/- mice exhibited a 3.5-fold increase in Sost expression, indicating SPRY2's role in osteocyte differentiation.
- Sost up-regulation was independent of Hif-1α and Runx2.
- Increased Rank expression was observed in Spry2-/- mice, without significant changes in Rankl or Opg.
Conclusions:
- Spry2 deletion affects developing bone, specifically impacting osteoblasts (Runx2) and osteocytes (Sost).
- These findings provide insights into the previously observed decrease in bone formation in Spry2-/- mice.
- This study highlights a novel role for SPRY2 in skeletal development.
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