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Updated: Jun 3, 2025

A Method for Mouse Pancreatic Islet Isolation and Intracellular cAMP Determination
Published on: June 25, 2014
Chronic GIPR agonism results in pancreatic islet GIPR functional desensitisation
Iona Davies1, Alice E Adriaenssens2, William R Scott3
1Section of Endocrinology and Investigative Medicine, Imperial College London, United Kingdom.
Objectives:
There is renewed interest in targeting the glucose-dependent insulinotropic polypeptide receptor (GIPR) for treatment of obesity and type 2 diabetes. G-protein coupled receptor desensitisation is suggested to reduce the long-term efficacy of glucagon-like-peptide 1 receptor (GLP-1R) agonists and may similarly affect the efficacy of GIPR agonists. We explored the extent of pancreatic GIPR functional desensitisation with sustained agonist exposure.
Methods:
A long-acting GIPR agonist, GIP108, was used to probe the effect of sustained agonist exposure on cAMP responses in dispersed pancreatic islets using live cell imaging, with rechallenge cAMP responses after prior agonist treatment used to quantify functional desensitisation. Receptor internalisation and β-arrestin-2 activation were investigated in vitro using imaging-based assays. Pancreatic mouse GIPR desensitisation was assessed in vivo via intraperitoneal glucose tolerance testing.
Results:
GIP108 treatment led to weight loss and improved glucose homeostasis in mice. Prolonged exposure to GIPR agonists produced homologous functional GIPR desensitisation in isolated islets. GIP108 pre-treatment in vivo also reduced the subsequent anti-hyperglycaemic response to GIP re-challenge. GIPR showed minimal agonist-induced internalisation or β-arrestin-2 activation.
Conclusions:
Although GIP108 chronic treatment improved glucose tolerance, it also resulted in partial desensitisation of the pancreatic islet GIPR. This suggests that ligands with reduced desensitisation tendency might lead to improved in vivo efficacy. Understanding whether pancreatic GIPR desensitisation affects the long-term benefits of GIPR agonists in humans is vital to design effective metabolic pharmacotherapies.
Insights
Sustained exposure to a glucose-dependent insulinotropic polypeptide receptor (GIPR) agonist caused functional desensitisation in pancreatic islets, potentially impacting long-term obesity and diabetes treatments. Further research is needed to understand GIPR desensitisation in humans.
Area of Science:
- Metabolic pharmacology
- Endocrinology
- Receptor pharmacology
Background:
- Renewed interest exists in targeting the glucose-dependent insulinotropic polypeptide receptor (GIPR) for obesity and type 2 diabetes treatment.
- G-protein coupled receptor desensitisation may limit the long-term efficacy of GIPR agonists, similar to glucagon-like-peptide 1 receptor (GLP-1R) agonists.
Purpose of the Study:
- To investigate the extent of pancreatic GIPR functional desensitisation following sustained agonist exposure.
- To evaluate the impact of GIPR desensitisation on therapeutic efficacy.
Main Methods:
- A long-acting GIPR agonist, GIP108, was used to assess cAMP responses in dispersed pancreatic islets via live cell imaging.
- Receptor internalisation and β-arrestin-2 activation were studied in vitro.
- In vivo desensitisation was assessed through intraperitoneal glucose tolerance testing in mice.
Main Results:
- GIP108 treatment resulted in weight loss and improved glucose homeostasis in mice.
- Prolonged GIPR agonist exposure induced homologous functional desensitisation in isolated islets.
- In vivo GIP108 pre-treatment reduced the anti-hyperglycaemic response to subsequent GIP re-challenge, with minimal receptor internalisation or β-arrestin-2 activation.
Conclusions:
- Chronic GIP108 treatment improved glucose tolerance but caused partial pancreatic islet GIPR desensitisation.
- Ligands with reduced desensitisation potential may offer improved in vivo efficacy.
- Understanding human pancreatic GIPR desensitisation is crucial for developing effective metabolic pharmacotherapies.
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