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Updated: Jun 26, 2026

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Published on: May 23, 2025
Mechanism and management of AKT inhibitor-induced hyperglycemia
Ming-Chih Crouthamel1, Jason A Kahana, Susan Korenchuk
1Oncology Biology, GlaxoSmithKline, Collegeville, Pennsylvania 19426, USA.
Purpose:
Insulin-like growth factor-I receptor and phosphoinositide 3-kinase/AKT/mammalian target of rapamycin pathways are among the most active areas of drug discovery in cancer research. However, due to their integral roles in insulin signaling, inhibitors targeting these pathways often lead to hyperglycemia and hyperinsulinemia. We investigated the mechanism of hyperglycemia induced by GSK690693, a pan-AKT kinase inhibitor in clinical development, as well as methods to ameliorate these side effects.
Experimental Design:
The effect of GSK690693 on blood glucose, insulin, and glucagon levels was characterized in mice. We then evaluated the effects of commonly prescribed antidiabetic agents on GSK690693-induced hyperglycemia. The mechanism of blood glucose increase was evaluated using fasting and tracer uptake studies and by measuring liver glycogen levels. Finally, approaches to manage AKT inhibitor-induced hyperglycemia were designed using fasting and low carbohydrate diet.
Results:
We report that treatment with antidiabetic agents does not significantly affect GSK690693-induced hyperglycemia in rodents. However, administration of GSK690693 in mice significantly reduces liver glycogen (approximately 90%), suggesting that GSK690693 may inhibit glycogen synthesis and/or activate glycogenolysis. Consistent with this observation, fasting before drug administration reduces baseline liver glycogen levels and attenuates hyperglycemia. Further, GSK690693 also inhibits peripheral glucose uptake and introduction of a low-carbohydrate (7%) or 0% carbohydrate diet after GSK690693 administration effectively reduces diet-induced hyperglycemia in mice.
Conclusions:
The mechanism of GSK690693-induced hyperglycemia is related to peripheral insulin resistance, increased gluconeogenesis, and/or hepatic glycogenolysis. A combination of fasting and low carbohydrate diet can reduce the magnitude of hyperglycemia induced by an AKT inhibitor.
Insights
AKT inhibitor GSK690693 causes hyperglycemia by affecting liver glycogen and glucose uptake. Combining fasting with a low-carbohydrate diet can mitigate these hyperglycemia side effects in cancer drug development.
Area of Science:
- Oncology
- Pharmacology
- Metabolism
Background:
- Insulin-like growth factor-I receptor and PI3K/AKT/mTOR pathways are key in cancer drug discovery.
- AKT inhibitors can cause hyperglycemia and hyperinsulinemia due to their role in insulin signaling.
Purpose of the Study:
- Investigate the mechanism of hyperglycemia induced by the pan-AKT inhibitor GSK690693.
- Identify strategies to ameliorate hyperglycemia caused by AKT inhibitors.
Main Methods:
- Characterized effects of GSK690693 on glucose, insulin, and glucagon in mice.
- Assessed antidiabetic agents, fasting, and low-carbohydrate diets for managing hyperglycemia.
- Evaluated mechanisms including liver glycogen and peripheral glucose uptake.
Main Results:
- Antidiabetic agents did not significantly reduce GSK690693-induced hyperglycemia.
- GSK690693 markedly reduced liver glycogen and inhibited peripheral glucose uptake.
- Fasting and low-carbohydrate diets attenuated hyperglycemia in mice.
Conclusions:
- Hyperglycemia from GSK690693 involves peripheral insulin resistance, gluconeogenesis, and/or hepatic glycogenolysis.
- A combination of fasting and a low-carbohydrate diet can reduce hyperglycemia induced by AKT inhibitors.
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