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Updated: Mar 2, 2026

Hyperinsulinemic-euglycemic Clamps in Conscious, Unrestrained Mice
Published on: November 16, 2011
Glucagon receptor knockout mice are protected against acute olanzapine-induced hyperglycemia
Laura N Castellani1, Willem T Peppler1, Charles D Sutton1
1Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.
Objectives:
To determine if glucagon is involved in mediating the increase in blood glucose levels caused by the second-generation antipsychotic drug olanzapine.
Materials And Methods:
Whole body glucagon receptor deficient mice (Gcgr-/-) or WT littermate controls were injected with olanzapine (5mg/kg BW IP) and changes in blood glucose measured over the following 120min. Separate cohorts of mice were treated with olanzapine and changes in pyruvate tolerance, insulin tolerance and whole body substrate oxidation were determined.
Results:
Olanzapine treatment increased serum glucagon and lead to rapid increases in blood glucose concentrations in WT mice. Gcgr-/- mice were protected against olanzapine-induced increases in blood glucose but this was not explained by differences in terminal serum insulin concentrations, enhanced AKT phosphorylation in skeletal muscle, adipose tissue or liver or differences in RER. In both genotypes olanzapine induced an equivalent degree of insulin resistance as measured using an insulin tolerance test. Olanzapine treatment led to an exaggerated glucose response to a pyruvate challenge in WT but not Gcgr-/- mice and this was paralleled by reductions in the protein content of PEPCK and G6Pase in livers from Gcgr-/- mice.
Conclusions:
Gcgr-/- mice are protected against olanzapine-induced increases in blood glucose. This is likely a result of reductions in liver glucose output, perhaps secondary to decreases in PEPCK and G6Pase protein content. Our findings highlight the central role of the liver in mediating olanzapine-induced disturbances in glucose homeostasis.
Insights
Glucagon receptor deficient mice are protected from olanzapine-induced hyperglycemia, suggesting glucagon
Area of Science:
- Endocrinology and Metabolism
- Pharmacology
Background:
- Second-generation antipsychotics, like olanzapine, are known to cause hyperglycemia.
- The precise mechanisms underlying olanzapine-induced glucose dysregulation require further elucidation.
Purpose of the Study:
- To investigate the role of glucagon in mediating olanzapine-induced increases in blood glucose levels.
- To determine if blocking the glucagon receptor can prevent hyperglycemia associated with olanzapine treatment.
Main Methods:
- Utilized whole-body glucagon receptor deficient (Gcgr-/-) mice and wild-type (WT) littermate controls.
- Administered olanzapine and monitored blood glucose, pyruvate tolerance, insulin tolerance, and substrate oxidation.
- Assessed key gluconeogenic enzyme protein content (PEPCK, G6Pase) in liver tissue.
Main Results:
- Olanzapine increased serum glucagon and blood glucose in WT mice.
- Gcgr-/- mice were protected against olanzapine-induced hyperglycemia, despite similar insulin resistance.
- Olanzapine-induced glucose intolerance was attenuated in Gcgr-/- mice, linked to reduced PEPCK and G6Pase expression.
Conclusions:
- Glucagon signaling is critical for olanzapine-induced hyperglycemia.
- Reduced hepatic glucose output, due to decreased PEPCK and G6Pase, protects Gcgr-/- mice.
- The liver plays a central role in olanzapine's adverse effects on glucose homeostasis.
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