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Everolimus suppresses cancellous bone loss, bone resorption, and cathepsin K expression by osteoclasts
Michaela Kneissel1, Ngoc-Hong Luong-Nguyen, Myma Baptist
1Arthritis and Bone Metabolism Disease Area, Novartis Institutes for BioMedical Research Basel, Basel, Switzerland.
Abstract:
The proliferation inhibitor of the macrolide class, everolimus, is a drug shown to be effective in the prevention of organ transplant rejection and to have a potential in the treatment of rheumatoid arthritis and certain cancers. As these diseases or their current treatments are associated with bone loss, we examined the effect of everolimus on mouse and human bone cells in vitro and on bone in an ovariectomized (OVX) rat model. Everolimus potently inhibited primary mouse and human osteoclast activity in the pit assay (IC50 values of 0.6-4.0 nM), as well as osteoclast formation, measured as the number of tartrate-resistant acid phosphatase (TRAP) multinucleated cells (IC50 values of 7.7-10.5 nM). Inhibition of osteoblastic differentiation was also observed (IC50 value of 13.5 nM). As expected, everolimus inhibited proliferation of osteoclast precursors and stimulated apoptosis, albeit with insufficient potency and efficacy to explain inhibition of osteoclast activity. Thus, everolimus appeared to directly inhibit bone resorption, which is in accord with the detected inhibition of mRNA and protein expression of cathepsin K; the main collagen-degrading protease in osteoclasts. Despite the in vitro antiproliferative activity of everolimus and the observed inhibition of osteoblast differentiation, no detrimental effects were detected at different skeletal sites in mature OVX rats at doses up to 3 mg/kg/day. This everolimus dose also prevented the OVX-induced loss of cancellous bone by 60%, an effect predominantly associated with decreased osteoclast-mediated bone resorption, resulting in a partial preservation of the cancellous bone network. Everolimus inhibited S6 kinase 1 activity in rat blood cells, skin, and bone, at doses equivalent to those used for efficacy experiments in the OVX rat model, which demonstrated in vivo targeting of the expected molecular pathway. In conclusion, everolimus directly inhibits bone resorption by osteoclasts and thus could at least be neutral or protective for bone in vivo, which would favor its use in disease indications associated with bone loss.
Insights
Everolimus, a macrolide drug, directly inhibits osteoclast activity and bone resorption. In ovariectomized rats, it preserves bone mass, suggesting a protective role in conditions associated with bone loss.
Area of Science:
- Pharmacology
- Cell Biology
- Bone Biology
Background:
- Everolimus is a macrolide proliferation inhibitor used for organ transplant rejection and has potential in treating rheumatoid arthritis and cancers.
- These conditions and their treatments are often linked to bone loss.
- The effect of everolimus on bone cells and in an animal model of bone loss was investigated.
Purpose of the Study:
- To investigate the in vitro effects of everolimus on osteoclast and osteoblast activity.
- To evaluate the in vivo effects of everolimus on bone in an ovariectomized (OVX) rat model.
- To determine if everolimus impacts the molecular pathways regulating bone metabolism.
Main Methods:
- In vitro studies using pit assays and tartrate-resistant acid phosphatase (TRAP) staining to assess osteoclast activity and formation.
- In vitro assessment of osteoblastic differentiation and proliferation of osteoclast precursors.
- In vivo studies in OVX rats to evaluate bone mineral density and histological changes, with analysis of S6 kinase 1 activity.
Main Results:
- Everolimus potently inhibited osteoclast activity and formation in vitro (IC50 values 0.6–10.5 nM).
- Osteoblastic differentiation was inhibited (IC50 13.5 nM), but effects on osteoclast precursor proliferation and apoptosis were insufficient to explain osteoclast inhibition.
- In OVX rats, everolimus (up to 3 mg/kg/day) prevented 60% of cancellous bone loss, primarily by reducing osteoclast-mediated resorption, and inhibited S6 kinase 1 activity in vivo.
Conclusions:
- Everolimus directly inhibits bone resorption by osteoclasts.
- The drug demonstrates a bone-protective effect in vivo in an OVX rat model, mainly through reduced osteoclast activity.
- Everolimus may be neutral or beneficial for bone health in diseases associated with bone loss.
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