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Metformin and Ara-a Effectively Suppress Brain Cancer by Targeting Cancer Stem/Progenitor Cells
Tarek H Mouhieddine1, Amaly Nokkari2, Muhieddine M Itani1
1Department of Anatomy, Cell Biology and Physiological Sciences, Faculty of Medicine, American University of Beirut Beirut, Lebanon.
Background:
Gliomas and neuroblastomas pose a great health burden worldwide with a poor and moderate prognosis, respectively. Many studies have tried to find effective treatments for these primary malignant brain tumors. Of interest, the AMP-activated protein kinase (AMPK) pathway was found to be associated with tumorigenesis and tumor survival, leading to many studies on AMPK drugs, especially Metformin, and their potential role as anti-cancer treatments. Cancer stem cells (CSCs) are a small population of slowly-dividing, treatment-resistant, undifferentiated cancer cells that are being discovered in a multitude of cancers. They are thought to be responsible for replenishing the tumor with highly proliferative cells and increasing the risk of recurrence.
Methods:
Metformin and 9-β-d-Arabinofuranosyl Adenine (Ara-a) were used to study the role of the AMPK pathway in vitro on U251 (glioblastoma) and SH-SY5Y (neuroblastoma) cell lines.
Results:
We found that both drugs are able to decrease the survival of U251 and SH-SY5Y cell lines in a 2D as well as a 3D culture model. Metformin and Ara-a significantly decreased the invasive ability of these cancer cell lines. Treatment with these drugs decreased the sphere-forming units (SFU) of U251 cells, with Ara-a being more efficient, signifying the extinction of the CSC population. However, if treatment is withdrawn before all SFUs are extinguished, the CSCs regain some of their sphere-forming capabilities in the case of Metformin but not Ara-a treatment.
Conclusion:
Metformin and Ara-a have proved to be effective in the treatment of glioblastomas and neuroblastomas, in vitro, by targeting their cancer stem/progenitor cell population, which prevents recurrence.
Insights
Metformin and 9-β-d-Arabinofuranosyl Adenine (Ara-a) show promise in treating brain cancers like glioblastomas and neuroblastomas by targeting cancer stem cells, potentially preventing recurrence.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Gliomas and neuroblastomas are primary malignant brain tumors with poor prognoses.
- The AMP-activated protein kinase (AMPK) pathway is implicated in tumorigenesis and survival.
- Cancer stem cells (CSCs) contribute to tumor recurrence and treatment resistance.
Purpose of the Study:
- To investigate the anti-cancer effects of Metformin and 9-β-d-Arabinofuranosyl Adenine (Ara-a) on glioblastoma and neuroblastoma cell lines.
- To explore the role of the AMPK pathway in targeting cancer stem cells in these brain tumors.
Main Methods:
- Utilized U251 (glioblastoma) and SH-SY5Y (neuroblastoma) cell lines for in vitro studies.
- Administered Metformin and Ara-a to assess their impact on cell survival, invasion, and sphere-forming units (SFUs).
- Employed both 2D and 3D cell culture models to simulate tumor microenvironments.
Main Results:
- Both Metformin and Ara-a reduced the survival and invasive capabilities of glioblastoma and neuroblastoma cells.
- Treatment decreased sphere-forming units (SFUs), indicating a reduction in the cancer stem cell population.
- Ara-a was more effective than Metformin in eradicating CSCs, with sustained effects after treatment withdrawal.
Conclusions:
- Metformin and Ara-a demonstrate in vitro efficacy against glioblastomas and neuroblastomas.
- These drugs target cancer stem/progenitor cells, offering a potential strategy to prevent tumor recurrence.
- The findings highlight the therapeutic potential of targeting the AMPK pathway in brain tumor treatment.
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