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Hyperglycemia-induced metabolic compensation inhibits metformin sensitivity in ovarian cancer
Lacey M Litchfield1, Abir Mukherjee1, Mark A Eckert1
1Department of Obstetrics and Gynecology, Gordon Center for Integrative Science, University of Chicago, Chicago, Illinois, USA.
Abstract:
Increasing interest in repurposing the diabetic medication metformin for cancer treatment has raised important questions about the translation of promising preclinical findings to therapeutic efficacy, especially in non-diabetic patients. A significant limitation of the findings to date is the use of supraphysiologic metformin doses and hyperglycemic conditions in vitro. Our goals were to determine the impact of hyperglycemia on metformin response and to address the applicability of metformin as a cancer therapeutic in non-diabetic patients. In normoglycemic conditions, lower concentrations of metformin were required to inhibit cell viability, while metformin treatment in hyperglycemic conditions resulted in increased glucose uptake and glycolytic flux, contributing to cell survival. Mechanistically, maintenance of c-Myc expression under conditions of hyperglycemia or via gene amplification facilitated metabolic escape from the effects of metformin. In vivo, treatment of an ovarian cancer mouse model with metformin resulted in greater tumor weight reduction in normoglycemic vs. hyperglycemic mice, with increased c-Myc expression observed in metformin-treated hyperglycemic mice. These findings indicate that hyperglycemia inhibits the anti-cancer effects of metformin in vitro and in vivo. Furthermore, our results suggest that metformin may elicit stronger responses in normoglycemic vs. hyperglycemic patients, highlighting the need for prospective clinical testing in patients without diabetes.
Insights
Hyperglycemia, or high blood sugar, can reduce metformin's cancer-fighting effects. This study suggests metformin may be more effective in non-diabetic patients with normal blood sugar levels.
Area of Science:
- Oncology
- Metabolic Research
- Pharmacology
Background:
- Metformin, a diabetes drug, shows promise for cancer treatment.
- Preclinical studies often use conditions not relevant to human patients, like high glucose levels.
- The efficacy of metformin in non-diabetic cancer patients remains unclear.
Purpose of the Study:
- To investigate how hyperglycemia affects metformin's anti-cancer activity.
- To assess metformin's potential as a cancer therapeutic in non-diabetic individuals.
- To understand the mechanisms behind metformin resistance in hyperglycemic conditions.
Main Methods:
- In vitro cell viability assays under normoglycemic and hyperglycemic conditions.
- Measurement of glucose uptake and glycolytic flux.
- In vivo studies using an ovarian cancer mouse model.
- Analysis of c-Myc expression levels.
Main Results:
- Metformin inhibited cell viability at lower concentrations in normoglycemic conditions.
- Hyperglycemia increased glucose uptake and cell survival during metformin treatment.
- c-Myc expression mediated metabolic escape from metformin's effects.
- Metformin reduced tumor weight more effectively in normoglycemic mice.
Conclusions:
- Hyperglycemia significantly impairs metformin's anti-cancer effects both in vitro and in vivo.
- Elevated c-Myc expression contributes to metformin resistance under hyperglycemic conditions.
- Metformin may be more effective in non-diabetic patients with normal glycemic control, warranting clinical investigation.
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