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Published on: November 16, 2011
Glucagon receptor antagonism improves islet function in mice with insulin resistance induced by a high-fat diet
M Sörhede Winzell1, C L Brand, N Wierup
1Department of Clinical Sciences, Lund, Division of Medicine, BMC, B11, Lund University, 221 84, Lund, Sweden. Maria.Sorhede_Winzell@med.lu.se
Aims/Hypothesis:
Increased glucagon secretion predicts deterioration of glucose tolerance, and high glucagon levels contribute to hyperglycaemia in type 2 diabetes. Inhibition of glucagon action may therefore be a potential novel target to reduce hyperglycaemia. Here, we investigated whether chronic treatment with a glucagon receptor antagonist (GRA) improves islet dysfunction in female mice on a high-fat diet (HFD).
Materials And Methods:
After 8 weeks of HFD, mice were treated with a small molecule GRA (300 mg/kg, gavage once daily) for up to 30 days. Insulin secretion was studied after oral and intravenous administration of glucose and glucagon secretion after intravenous arginine. Islet morphology was examined and insulin secretion and glucose oxidation were measured in isolated islets.
Results:
Fasting plasma glucose levels were reduced by GRA (6.0 +/- 0.2 vs 7.4 +/- 0.5 mmol/l; p = 0.017). The acute insulin response to intravenous glucose was augmented (1,300 +/- 110 vs 790 +/- 64 pmol/l; p < 0.001). The early insulin response to oral glucose was reduced in mice on HFD + GRA (1,890 +/- 160 vs 3,040 +/- 420 pmol/l; p = 0.012), but glucose excursions were improved. Intravenous arginine significantly increased the acute glucagon response (129 +/- 12 vs 36 +/- 6 ng/l in controls; p < 0.01), notably without affecting plasma glucose. GRA caused a modest increase in alpha cell mass, while beta cell mass was similar to that in mice on HFD + vehicle. Isolated islets displayed improved glucose-stimulated insulin secretion after GRA treatment (0.061 +/- 0.007 vs 0.030 +/- 0.004 pmol islet(-1) h(-1) at 16.7 mmol/l glucose; p < 0.001), without affecting islet glucose oxidation.
Conclusions/Interpretation:
Chronic glucagon receptor antagonism in HFD-fed mice improves islet sensitivity to glucose and increases insulin secretion, suggesting improvement of key defects underlying impaired glucose tolerance and type 2 diabetes.
Insights
Glucagon receptor antagonism improved glucose tolerance in mice fed a high-fat diet. This treatment enhanced insulin secretion and islet sensitivity, offering potential for type 2 diabetes management.
Area of Science:
- Metabolic research
- Endocrinology
- Diabetes research
Background:
- Elevated glucagon secretion worsens glucose tolerance and contributes to hyperglycemia in type 2 diabetes.
- Inhibiting glucagon action is a potential therapeutic strategy for hyperglycemia.
Purpose of the Study:
- To investigate the effects of chronic glucagon receptor antagonist (GRA) treatment on islet dysfunction in female mice consuming a high-fat diet (HFD).
Main Methods:
- Mice on HFD received a small molecule GRA daily for up to 30 days.
- Insulin and glucagon secretion were measured following glucose and arginine challenges.
- Islet morphology, insulin secretion, and glucose oxidation were assessed in isolated islets.
Main Results:
- GRA treatment reduced fasting plasma glucose and augmented the acute insulin response to intravenous glucose.
- Despite reduced early oral glucose insulin response, glucose excursions improved.
- Islets showed enhanced glucose-stimulated insulin secretion without changes in glucose oxidation.
Conclusions:
- Chronic GRA treatment in HFD-fed mice improves glucose sensitivity of islets and enhances insulin secretion.
- These findings suggest GRA can ameliorate key defects associated with impaired glucose tolerance and type 2 diabetes.
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