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Updated: Jan 6, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Pitavastatin slows tumor progression and alters urine-derived volatile organic compounds through the mevalonate
Abstract:
Bone is a frequent site of metastasis from breast cancer, and a desirable drug could suppress tumor growth as well as metastasis-linked bone loss. Currently, no drug is able to cure breast cancer-associated bone metastasis. In this study, we focused on statins that are known to inhibit cholesterol production and act as antitumor agents. After an initial potency screening of 7 U.S. Food and Drug Administration-approved statins, we examined pitavastatin as a drug candidate for inhibiting tumor and tumor-induced bone loss. In vitro analysis revealed that pitavastatin acted as an inhibitor of tumor progression by altering stress to the endoplasmic reticulum, down-regulating peroxisome proliferator-activated receptor γ, and reducing Snail and matrix metalloproteinase 9. In bone homeostasis, it blocked osteoclast development by suppressing transcription factors c-Fos and JunB, but stimulated osteoblast mineralization by regulating bone morphogenetic protein 2 and p53. In a mouse model, pitavastatin presented a dual role in tumor inhibition in the mammary fat pad, as well as in bone protection in the osteolytic tibia. In mass spectrometry-based analysis, volatile organic compounds (VOCs) that were linked to lipid metabolism and cholesterol synthesis were elevated in mice from the tumor-grown placebo group. Notably, pitavastatin-treated mice reduced specific VOCs that are linked to lipid metabolites in the mevalonate pathway. Collectively, the results lay a foundation for further investigation of pitavastatin's therapeutic efficacy in tumor-induced bone loss, as well as VOC-based diagnosis of tumor progression and treatment efficacy.-Wang, L., Wang, Y., Chen, A., Teli, M., Kondo, R., Jalali, A., Fan, Y., Liu, S., Zhao, X., Siegel, A., Minami, K., Agarwal, M., Li, B.-Y., Yokota, H. Pitavastatin slows tumor progression and alters urine-derived volatile organic compounds through the mevalonate pathway.
Insights
Pitavastatin, a statin, effectively inhibits breast cancer bone metastasis and bone loss by targeting tumor progression and bone cells. It also alters volatile organic compounds (VOCs) linked to lipid metabolism, suggesting diagnostic potential.
Area of Science:
- Oncology
- Pharmacology
- Bone Biology
Background:
- Breast cancer frequently metastasizes to bone, causing significant morbidity.
- Current treatments lack efficacy in curing breast cancer-associated bone metastasis.
- Statins, known for cholesterol reduction, show potential as antitumor agents.
Purpose of the Study:
- To investigate pitavastatin's efficacy in inhibiting breast cancer bone metastasis and associated bone loss.
- To elucidate pitavastatin's mechanisms of action on tumor cells and bone homeostasis.
- To explore the potential of volatile organic compounds (VOCs) as biomarkers for tumor progression and treatment response.
Main Methods:
- Screening of FDA-approved statins, focusing on pitavastatin.
- In vitro studies on tumor progression and bone cell function.
- In vivo mouse model of breast cancer bone metastasis.
- Mass spectrometry-based analysis of volatile organic compounds (VOCs).
Main Results:
- Pitavastatin inhibited tumor progression in vitro by affecting endoplasmic reticulum stress, PPARγ, Snail, and MMP-9.
- Pitavastatin preserved bone homeostasis by blocking osteoclastogenesis and stimulating osteoblast mineralization.
- In vivo, pitavastatin reduced tumor growth and protected against osteolytic bone lesions.
- Pitavastatin treatment altered VOCs related to the mevalonate pathway.
Conclusions:
- Pitavastatin demonstrates a dual therapeutic effect against breast cancer bone metastasis and bone loss.
- Pitavastatin's mechanism involves modulating tumor cell signaling and bone cell activity.
- VOC profiles may serve as non-invasive indicators of tumor progression and therapeutic efficacy.
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