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Updated: Feb 25, 2026

Development of a Human Preclinical Model of Osteoclastogenesis from Peripheral Blood Monocytes Co-cultured with Breast Cancer Cell Lines
Published on: September 13, 2017
Concurrent antitumor and bone-protective effects of everolimus in osteotropic breast cancer
Andrew J Browne1,2, Marie L Kubasch1,2, Andy Göbel1,2
1Division of Endocrinology, Diabetes and Bone Diseases, Department of Medicine III, Technical University Dresden, Fetscherstraße 74, D-01307, Dresden, Germany.
Background:
The mammalian target of rapamycin inhibitor everolimus is approved as an antitumor agent in advanced estrogen receptor-positive breast cancer. Surrogate bone marker data from clinical trials suggest effects on bone metabolism, but the mode of action of everolimus in bone biology remains unclear. In this study, we assessed potential bone-protective effects of everolimus in the context of osteotropic tumors.
Methods:
The effects of everolimus on cancer cell viability in vitro and on tumor growth in vivo were assessed. Everolimus-regulated osteoclastogenesis and osteoblastogenesis were also assessed in vitro before we assessed the bone-protective effect of everolimus in a model where bone loss was induced in ovariectomized (OVX) mice. Finally, the role of everolimus in the progression of osteolytic bone disease was assessed in an intracardiac model of breast cancer bone metastases.
Results:
At low concentrations (1 nM) in vitro, everolimus reduced the viability of human and murine cancer cell lines and impaired the osteoclastogenesis of osteoclast progenitors as assessed by quantitative real-time polymerase chain reaction and counting tartrate-resistant acid phosphatase-positive, multinucleated osteoclasts (p < 0.001). Everolimus had little or no deleterious effect on osteoblastogenesis in vitro, with concentrations of 1 and 10 nM increasing the messenger RNA expression of osteoblast marker genes (p ≤ 0.05) and leaving mineralization in differentiated human mesenchymal stem cells unchanged. Everolimus treatment (1 mg/kg body weight/day) prevented the bone loss observed in OVX mice and concurrently inhibited the metastatic growth of MDA-MB-231 cells by 70% (p < 0.002) while preserving bone mass in an intracardiac model of bone metastasis.
Conclusions:
These results underline the antitumor effects of everolimus and highlight its bone-protective efficacy, warranting further research on the potential implications on bone health in populations prone to osteoporosis and bone metastases, such as postmenopausal women with breast cancer.
Insights
Everolimus, an antitumor drug, shows bone-protective effects by inhibiting cancer cell growth and preserving bone mass. This suggests potential benefits for bone health in breast cancer patients, especially postmenopausal women.
Area of Science:
- Oncology
- Bone Biology
- Pharmacology
Background:
- Everolimus is an approved antitumor agent for advanced estrogen receptor-positive breast cancer.
- Clinical trials suggest everolimus impacts bone metabolism, but its mechanism in bone biology is unclear.
- This study investigates everolimus's bone-protective potential against osteotropic tumors.
Purpose of the Study:
- To assess the effects of everolimus on cancer cell viability and tumor growth.
- To evaluate everolimus's impact on osteoclastogenesis and osteoblastogenesis.
- To determine the bone-protective efficacy of everolimus in ovariectomized mice and in a model of breast cancer bone metastases.
Main Methods:
- In vitro assessment of everolimus on cancer cell lines and osteoclast/osteoblast progenitor differentiation.
- In vivo evaluation of everolimus in ovariectomized mice to assess bone loss.
- Intracardiac injection model in mice to study everolimus's effect on breast cancer bone metastases and bone disease progression.
Main Results:
- Low-concentration everolimus inhibited cancer cell viability and osteoclastogenesis in vitro.
- Everolimus did not adversely affect osteoblastogenesis and even increased osteoblast marker gene expression.
- Everolimus treatment prevented bone loss in ovariectomized mice and significantly inhibited breast cancer metastasis while preserving bone mass.
Conclusions:
- Everolimus exhibits significant antitumor effects and bone-protective properties.
- These findings suggest everolimus may have implications for bone health in patients at risk of osteoporosis and bone metastases.
- Further research is warranted to explore everolimus's role in managing bone complications in breast cancer patients.
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