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Metformin and Cancer Hallmarks: Molecular Mechanisms in Thyroid, Prostate and Head and Neck Cancer Models
Mirian Galliote Morale1,2, Rodrigo Esaki Tamura1,2, Ileana Gabriela Sanchez Rubio1,2,3
1Department of Biological Sciences, Federal University of São Paulo, Diadema, Rua Pedro de Toledo 669, 11° Andar, São Paulo 04039-032, Brazil.
Abstract:
Metformin is the most used drug for type 2 diabetes (T2DM). Its antitumor activity has been described by clinical studies showing reduced risk of cancer development in T2DM patients, as well as management of T2DM compared with those receiving other glucose-lowering drugs. Metformin has a plethora of molecular actions in cancer cells. This review focused on in vitro data on the action mechanisms of metformin on thyroid, prostate and head and neck cancer. AMPK activation regulating specific downstream targets is a constant antineoplastic activity in different types of cancer; however, AMPK-independent mechanisms are also relevant. In vitro evidence makes it clear that depending on the type of tumor, metformin has different actions; its effects may be modulated by different cell conditions (for instance, presence of HPV infection), or it may regulate tissue-specific factors, such as the Na+/I- symporter (NIS) and androgen receptors. The hallmarks of cancer are a set of functional features acquired by the cell during malignant development. In vitro studies show that metformin regulates almost all the hallmarks of cancer. Interestingly, metformin is one of these therapeutic agents with the potential to synergize with other chemotherapeutic agents, with low cost, low side effects and high positive consequences. Some questions are still challenging: Are metformin in vitro data able to translate from bench to bedside? Does metformin affect drug resistance? Can metformin be used as a generic anticancer drug for all types of tumors? Which are the specific actions of metformin on the peculiarities of each type of cancer? Several clinical trials are in progress or have been concluded for repurposing metformin as an anticancer drug. The continuous efforts in the field and future in vitro studies will be essential to corroborate clinical trials results and to elucidate the raised questions.
Insights
Metformin, a common type 2 diabetes drug, shows significant antitumor activity by impacting cancer cell mechanisms. Further research is needed to confirm its potential as a broad-spectrum anticancer agent.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Metformin is a widely used medication for type 2 diabetes (T2DM).
- Clinical studies suggest metformin reduces cancer risk and aids T2DM management.
- Metformin exhibits diverse molecular actions within cancer cells.
Purpose of the Study:
- To review in vitro data on metformin's mechanisms of action in thyroid, prostate, and head and neck cancers.
- To explore both AMPK-dependent and -independent pathways of metformin's antineoplastic effects.
- To assess metformin's regulation of cancer hallmarks and tissue-specific factors.
Main Methods:
- Literature review of in vitro studies on metformin's anticancer mechanisms.
- Analysis of metformin's effects on cancer cell lines, including specific tumor types.
- Examination of AMPK activation and independent pathways, as well as tissue-specific factor regulation.
Main Results:
- Metformin demonstrates consistent antineoplastic activity via AMPK activation and independent mechanisms across various cancers.
- Its effects are tumor-specific and can be modulated by factors like HPV infection and tissue-specific elements (e.g., NIS, androgen receptors).
- Metformin influences nearly all hallmarks of cancer and shows potential for synergistic effects with other chemotherapies.
Conclusions:
- Metformin's in vitro anticancer effects are multifaceted, impacting various cancer hallmarks.
- Further investigation is crucial to determine if in vitro findings translate to clinical efficacy and to clarify its role in drug resistance and broader anticancer applications.
- Ongoing clinical trials aim to repurpose metformin as an anticancer drug, necessitating continued research to answer key clinical questions.
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