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Published on: June 11, 2012
Hyperglycaemia Induced by Novel Anticancer Agents: An Undesirable Complication or a Potential Therapeutic
1, 8 Birchdale, Gerrards Cross, Buckinghamshire, UK. clinical.safety@hotmail.co.uk.
Abstract:
Signalling pathways involving protein kinase, insulin-like growth factor 1, insulin receptors and the phosphoinositide 3 kinase/protein kinase B/mammalian target of rapamycin (PI3K/AKT/mTOR) system are critical in promoting oncogenesis. The use of anticancer agents that inhibit these pathways frequently results in hyperglycaemia, an on-target effect of these drugs. Hyperglycaemia induced by these agents denotes optimal inhibition of the desired pharmacological target. As hyperglycaemia can be treated successfully and effectively with metformin, managing this complication by reducing the dose of or discontinuing the anticancer drug may be counterproductive, especially if it is otherwise effective and clinically tolerated. The use of metformin to treat hyperglycaemia induced by anticancer drugs provides a valuable therapeutic opportunity of potentiating their clinical anticancer effects. Although evidence from randomised controlled trials is awaited, extensive preclinical evidence and clinical observational studies suggest that metformin has anticancer properties that improve overall survival in patients with diabetes and a variety of cancers. Metformin has also been reported to reverse resistance to epidermal growth factor receptor (EGFR)-inhibiting tyrosine kinase inhibitors. This review summarises briefly the role of the above signalling pathways in oncogenesis, the causal association between inhibition of these pathways and hyperglycaemia, and the effect of metformin on clinical outcomes resulting from its anticancer properties. The evidence reviewed herein, albeit almost exclusively from observational studies, provides support for a greater use of metformin not only in patients with cancer and diabetes or drug-induced hyperglycaemia but also potentially as an anticancer drug. However, prospective randomised controlled studies are needed in all these settings to better assess the effect on clinical outcomes of adding metformin to ongoing anticancer therapy.
Insights
Metformin can manage cancer drug-induced hyperglycemia, an on-target effect. This common side effect may indicate effective cancer treatment, and metformin
Area of Science:
- Oncology
- Endocrinology
- Pharmacology
Background:
- Signaling pathways, including PI3K/AKT/mTOR, are crucial in cancer development.
- Targeted cancer therapies inhibiting these pathways often cause hyperglycemia, indicating drug efficacy.
- Hyperglycemia is a manageable side effect, and its treatment with metformin may offer additional benefits.
Purpose of the Study:
- To review the role of key signaling pathways in oncogenesis.
- To examine the link between inhibiting these pathways and hyperglycemia.
- To explore metformin's potential anticancer effects and its role in managing drug-induced hyperglycemia.
Main Methods:
- Review of preclinical and clinical observational studies.
- Analysis of signaling pathways involved in oncogenesis and drug-induced hyperglycemia.
- Evaluation of metformin's impact on cancer treatment outcomes.
Main Results:
- Inhibition of oncogenic signaling pathways by anticancer drugs leads to hyperglycemia.
- Metformin effectively manages drug-induced hyperglycemia.
- Observational data suggest metformin possesses anticancer properties and may improve survival.
- Metformin may reverse resistance to certain targeted therapies like EGFR inhibitors.
Conclusions:
- Metformin is a valuable tool for managing hyperglycemia caused by anticancer drugs.
- Metformin's potential anticancer properties warrant further investigation.
- Adding metformin to cancer therapy could be beneficial for patients with diabetes or drug-induced hyperglycemia.
- Prospective randomized controlled trials are needed to confirm metformin's efficacy in cancer treatment.
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