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Metformin selectively targets tumor-initiating cells in ErbB2-overexpressing breast cancer models
Pei Zhu1, Meghan Davis, Amanda J Blackwelder
1Julius L. Chambers Biomedical/Biotechnology Research Institute, North Carolina Central University, North Carolina Research Campus, 500 Laureate Way, Room 4301, Kannapolis, NC 28081. xyang@nccu.edu.
Abstract:
Metformin is an oral biguanide used for type II diabetes. Epidemiologic studies suggest a link between metformin use and reduced risk of breast and other types of cancers. ErbB2-expressing breast cancer is a subgroup of tumors with poor prognosis. Previous studies demonstrated that metformin is a potent inhibitor of ErbB2-overexpressing breast cancer cells; metformin treatment extends the life span and impedes mammary tumor development in ErbB2 transgenic mice in vivo. However, the mechanisms of metformin associated antitumor activity, especially in prevention models, remain unclear. We report here for the first time that systemic administration of metformin selectively inhibits CD61(high)/CD49f(high) subpopulation, a group of tumor-initiating cells (TIC) of mouse mammary tumor virus (MMTV)-ErbB2 mammary tumors, in preneoplastic mammary glands. Metformin also inhibited CD61(high)/CD49f(high) subpopulation in MMTV-ErbB2 tumor-derived cells, which was correlated with their compromised tumor initiation/development in a syngeneic tumor graft model. Molecular analysis indicated that metformin induced downregulation of ErbB2 and EGFR expression and inhibited the phosphorylation of ErbB family members, insulin-like growth factor-1R, AKT, mTOR, and STAT3 in vivo. In vitro data indicate that low doses of metformin inhibited the self-renewal/proliferation of cancer stem cells (CSC)/TICs in ErbB2-overexpressing breast cancer cells. We further demonstrated that the expression and activation of ErbB2 were preferentially increased in CSC/TIC-enriched tumorsphere cells, which promoted their self-renewal/proliferation and rendered them more sensitive to metformin. Our results, especially the in vivo data, provide fundamental support for developing metformin-mediated preventive strategies targeting ErbB2-associated carcinogenesis.
Insights
Metformin selectively targets and inhibits cancer stem cells (CSCs) in ErbB2-overexpressing breast cancer models. This finding supports metformin
Area of Science:
- Oncology
- Molecular Biology
- Cancer Prevention
Background:
- Epidemiologic studies suggest metformin use reduces cancer risk.
- Metformin inhibits ErbB2-overexpressing breast cancer cells and impedes tumor development in mice.
- Mechanisms of metformin's antitumor activity, particularly in prevention, are not fully understood.
Purpose of the Study:
- To investigate metformin's effects on tumor-initiating cells (TICs) in ErbB2-overexpressing mammary tumors.
- To elucidate the molecular mechanisms underlying metformin's antitumor activity in vivo and in vitro.
- To provide evidence for metformin-based breast cancer prevention strategies.
Main Methods:
- Systemic administration of metformin in mouse models of ErbB2-overexpressing mammary tumors.
- Analysis of CD61(high)/CD49f(high) subpopulation in preneoplastic mammary glands and tumor-derived cells.
- In vitro studies on cancer stem cells (CSCs)/TICs from ErbB2-overexpressing breast cancer cells.
- Molecular analysis of signaling pathways including ErbB2, EGFR, AKT, mTOR, and STAT3.
Main Results:
- Metformin selectively inhibited the CD61(high)/CD49f(high) TIC subpopulation in vivo and in vitro.
- Metformin treatment compromised the tumor initiation and development capabilities of these TICs.
- Metformin downregulated ErbB2 and EGFR expression and inhibited key signaling pathways.
- Low doses of metformin inhibited CSC/TIC self-renewal and proliferation, especially in ErbB2-enriched cells.
Conclusions:
- Metformin targets and inhibits cancer stem cells (CSCs) and tumor-initiating cells (TICs) in ErbB2-overexpressing breast cancer.
- Metformin's mechanism involves downregulation of ErbB2/EGFR and associated signaling pathways.
- These findings support the development of metformin for ErbB2-associated breast cancer prevention.
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