DC260126: a small-molecule antagonist of GPR40 that protects against pancreatic β-Cells dysfunction in db/db mice

Peng Sun1, Ting Wang, Yuren Zhou

  • 1Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China.

Plos One
|June 19, 2013
PubMed

Insights

GPR40 antagonist DC260126 protected pancreatic beta-cells in diabetic mice by reducing insulin secretion overload and improving insulin sensitivity, despite not lowering blood glucose.

Area of Science:

  • Endocrinology and Metabolism
  • Pharmacology
  • Diabetes Research

Background:

  • G protein-coupled receptor 40 (GPR40) influences free fatty acid (FFA) effects on insulin secretion.
  • The role of GPR40 inhibition in type 2 diabetes prevention is debated.
  • Obesity and diabetes are associated with beta-cell dysfunction.

Purpose of the Study:

  • To evaluate the effects of GPR40 antagonist DC260126 on beta-cell function and insulin sensitivity in obese diabetic db/db mice.
  • To assess the therapeutic potential of DC260126 in a preclinical model of type 2 diabetes.

Main Methods:

  • Administration of DC260126 (10 mg/kg) to db/db mice for 21 days.
  • Assessment of glucose homeostasis via oral glucose tolerance tests and insulin tolerance tests.
  • Measurement of glucose-stimulated insulin secretion, serum insulin, proinsulin/insulin ratio, and beta-cell apoptosis rates.

Main Results:

  • DC260126 treatment did not significantly alter blood glucose levels.
  • Significant inhibition of glucose-stimulated insulin secretion and reduced blood insulin levels were observed.
  • Improved insulin sensitivity, reduced proinsulin/insulin ratio, and decreased pancreatic beta-cell apoptosis were noted.

Conclusions:

  • DC260126 protects against pancreatic beta-cell dysfunction by mitigating overload.
  • The compound enhances insulin sensitivity, potentially by reducing hyperinsulinemia.
  • While not directly improving hyperglycemia, DC260126 shows promise in preserving beta-cell health in diabetes.

Related Concept Videos

Glucagon-like Receptor Agonists01:24

Glucagon-like Receptor Agonists

Incretins include glucagon-like peptide-1 (GLP-1) and glucose-dependent insulinotropic polypeptide (GIP), which stimulate insulin secretion post-meals. In type 2 diabetes, GIP's efficacy is reduced, making GLP-1 a viable drug target. GIP originates from preproGIP.
GLP-1, when administered in high doses intravenously, triggers insulin secretion, inhibits glucagon release, slows gastric emptying, reduces food intake, and restores normal insulin secretion. However, its rapid inactivation by the...
Dipeptidyl Peptidase 4 Inhibitors01:23

Dipeptidyl Peptidase 4 Inhibitors

Dipeptidyl peptidase 4 (DPP-4) is a serine protease widely distributed in the body. It's involved in the inactivation of GLP-1 and GIP hormones, which are crucial for insulin regulation. DPP-4 inhibitors, such as sitagliptin (Januvia), saxagliptin (Onglyza), linagliptin (Tradjenta), alogliptin (Nesina), and vildagliptin (Galvus), help increase the proportion of active GLP-1, enhancing insulin secretion. These inhibitors work by competitively binding to DPP-4. This binding causes a significant...
Oral Hypoglycemic Agents: Glinides01:06

Oral Hypoglycemic Agents: Glinides

Repaglinide (Prandin) and Nateglinide (Starlix), known as glinides, are oral insulin secretagogues that stimulate insulin release from pancreatic β cells by closing the ATP-sensitive potassium channels (KATP channel). Repaglinide controls insulin release from pancreatic β cells by managing potassium efflux. It shares two binding sites with sulfonylureas and also has a unique site, indicating overlapping mechanisms of action. With a rapid onset and a 4-7 hour duration, it effectively manages...