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Published on: June 9, 2023
Statins inhibit proliferation and induce apoptosis in triple-negative breast cancer cells
Shane O'Grady1, John Crown2, Michael J Duffy3,4
1UCD School of Medicine, Conway Institute of Biomolecular and Biomedical Research, University College Dublin, Dublin, Ireland.
Abstract:
TP53 (p53) is mutated in 80-90% of cases of triple-negative breast cancer (TNBC). Statins, which are widely used to treat elevated cholesterol, have recently been shown to degrade mutant p53 protein and exhibit anti-cancer activity. The aim of this work was to evaluate the potential of statins in the treatment of TNBC. The anti-proliferative effects of 2 widely used statins were investigated on a panel of 15 cell lines representing the different molecular subtypes of breast cancer. Significantly lower IC50 values were found in triple-negative (TN) than in non-TN cell lines (atorvastatin, p < 0.01; simvastatin p < 0.05) indicating greater sensitivity. Furthermore, cell lines containing mutant p53 were more responsive to both statins than cell lines expressing wild-type p53, suggesting that the mutational status of p53 is a potential predictive biomarker for statin response. In addition to inhibiting proliferation, simvastatin was also found to promote cell cycle arrest and induce apoptosis. Using an apoptosis array capable of detecting 43 apoptosis-associated proteins, a novel protein shown to be upregulated by simvastatin was the IGF-signalling modulator, IGBP4, a finding we confirmed by Western blotting. Finally, we found synergistic growth inhibition between simvastatin and the IGF-1R inhibitor, OSI-906 as well as between simvastatin and doxorubicin or docetaxel. Our work suggests repurposing of statins for clinical trials in patients with TNBC. Based on our findings, we suggest that these trials investigate statins in combination with either doxorubicin or docetaxel and include p53 mutational status as a potential predictive biomarker.
Insights
Statins show promise for treating triple-negative breast cancer (TNBC) by degrading mutant p53. They are more effective in TNBC cell lines and those with mutated p53, suggesting p53 status as a biomarker.
Area of Science:
- Oncology
- Pharmacology
Background:
- Triple-negative breast cancer (TNBC) frequently harbors TP53 mutations.
- Statins, cholesterol-lowering drugs, can degrade mutant p53 and possess anti-cancer properties.
Purpose of the Study:
- To investigate the efficacy of statins in treating TNBC.
- To determine if p53 mutational status can predict response to statins.
Main Methods:
- Assessed anti-proliferative effects of atorvastatin and simvastatin on 15 breast cancer cell lines.
- Analyzed cell cycle arrest, apoptosis, and protein expression (IGBP4) using apoptosis arrays and Western blotting.
- Evaluated synergistic effects of simvastatin with OSI-906, doxorubicin, or docetaxel.
Main Results:
- TNBC cell lines showed significantly higher sensitivity to statins compared to non-TN lines.
- Cell lines with mutant p53 were more responsive to statins than those with wild-type p53.
- Simvastatin induced cell cycle arrest, apoptosis, and upregulated IGBP4; synergistic effects observed with IGF-1R inhibitor and chemotherapy drugs.
Conclusions:
- Statins demonstrate potential for TNBC treatment, particularly in patients with p53 mutations.
- Repurposing statins in combination with doxorubicin or docetaxel warrants clinical trials.
- p53 mutational status could serve as a predictive biomarker for statin therapy in TNBC.
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