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Updated: Jan 31, 2026

Osteoclast Derivation from Mouse Bone Marrow
Published on: November 6, 2014
Cxcr2 is Required for Osteoclast Regulation, Bone Structure, and Hematological Response During Bone (Re)modeling
Courtney L Flatt1,2, Allison Fick2,3, Ben James2,3
1Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN, USA.
None:
Cxcr2 is a chemokine receptor involved in immune cell trafficking, inflammation, and wound healing that has been implicated in multiple diseases and cancers. However, there is a relative lack of knowledge of the in vivo functions of Cxcr2 in bone cell biology. Here we characterized the skeletal and hematological phenotypes of Cxcr2-deficient mice (Cxcr2 KO) backcrossed onto the FVB/N background. Structural and biomechanical testing demonstrated that Cxcr2 KO caused a significant loss of trabecular and cortical bone volume, altered bone geometry, and an associated loss of bone strength relative to controls. Histological analysis suggests that this is a consequence of increased osteoclast activity in Cxcr2 KO mice, while osteoblasts were not affected. Serum analysis revealed elevated levels of the bone resorption marker CTX-1, with no change in the bone formation marker P1NP, suggesting a shift towards increased osteoclast-mediated bone turnover. While both RANKL and OPG were decreased in Cxcr2 KO bones, the RANKL/OPG ratio was not different compared to WT mice. Additionally, Cxcr2 KO mice displayed systemic immune dysregulation, including elevated serum cytokines and altered hematological parameters, fewer megakaryocytes in bone marrow, higher neutrophil counts in blood, and anisocytosis. Our data point to Cxcr2 as a critical and multifunctional regulator of healthy bone homeostasis, linking immune function with skeletal integrity. This work highlights the Cxcr2 KO model as a valuable system for studying inflammatory bone loss and osteoimmunological interactions.
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