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Impact of elevated sclerostin levels on bone resorption : unravelling structural changes and mineral metabolism
María Encarnacion Rodríguez-Ortiz1,2, Juan Miguel Díaz-Tocados2,3, Ana Isabel Torralbo4
1Nephrology Service, Reina Sofia University Hospital, Maimonides Institute for Research in Biomedicine of Cordoba (IMIBIC), University of Cordoba, Córdoba, Spain.
Aims:
The physiological function of sclerostin remains unknown. Sclerostin is synthesized by osteocytes and operates by inhibiting the Wnt/β-catenin pathway. Similarly, it is well established that low levels of sclerostin lead to enhanced bone formation and reduced calciuria, and that high levels of sclerostin are associated with osteoporosis.
Methods:
The impact of high levels of recombinant sclerostin on bone and mineral metabolism parameters was analyzed in this study. In male healthy rats, the effects of three elevated doses of sclerostin over a 14-day period were studied, involving bone histomorphometry, micro-CT (μCT), immunohistochemistry, and analysis of mineral metabolism parameters.
Results:
Although there was increased bone formation, high doses of sclerostin led to a higher reduction in trabecular bone volume due to a significant increase in bone resorption through the direct activation of osteoclastogenesis. In vitro, sclerostin promoted the differentiation of bone marrow stem cells into osteoclasts. Bone resorption, as measured by tartrate-resistant acid phosphatase (TRAP) activity, was excessive in trabecular, cortical, and subchondral bone. Similarly, high doses of sclerostin increased the number of hypertrophic chondrocytes, consequently expanding the growth plate area. At the cortical level, positive TRAP staining could be observed, suggestive of osteocytic osteolysis and trabecularization of cortical bone. The increased bone resorption resulted in a substantial rise in the urinary excretion of phosphorus and calcium, accompanied by elevated levels of FGF23 and a significant decrease in parathyroid hormone (PTH).
Conclusion:
These findings suggest that elevated levels of sclerostin promote bone resorption through the activation of osteoclasts and the generation of osteocytic osteolysis, resulting in increased calciuria, phosphaturia, and changes in mineral metabolism.
Insights
High sclerostin levels paradoxically increase bone resorption by activating osteoclasts and osteocytic osteolysis. This leads to bone loss and significant alterations in calcium and phosphorus metabolism.
Area of Science:
- Bone Biology
- Endocrinology
- Mineral Metabolism
Background:
- Sclerostin, produced by osteocytes, inhibits Wnt/β-catenin signaling.
- Low sclerostin is linked to increased bone formation, while high levels are associated with osteoporosis.
Purpose of the Study:
- To investigate the impact of elevated recombinant sclerostin on bone and mineral metabolism in healthy male rats.
Main Methods:
- Administration of three high doses of sclerostin over 14 days.
- Analysis included bone histomorphometry, micro-CT, immunohistochemistry, and mineral metabolism markers.
Main Results:
- High sclerostin increased bone resorption via osteoclastogenesis and osteocytic osteolysis, despite some bone formation.
- Elevated tartrate-resistant acid phosphatase (TRAP) activity indicated excessive resorption in multiple bone areas.
- Increased urinary calcium and phosphorus excretion, higher FGF23, and lower PTH levels were observed.
Conclusions:
- Elevated sclerostin promotes bone resorption by activating osteoclasts and osteocytic osteolysis.
- This leads to increased calciuria, phosphaturia, and significant changes in systemic mineral metabolism.
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