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GQ-11: A new PPAR agonist improves obesity-induced metabolic alterations in LDLr-/- mice
Jacqueline C Silva1, Edson M de Oliveira1, Walter M Turato1
1Department of Clinical and Toxicological Analyses, Faculty of Pharmaceutical Sciences, University of São Paulo, São Paulo, SP, Brazil.
Background:
Obesity and insulin resistance/diabetes are important risk factors for cardiovascular diseases and demand safe and efficacious therapeutics.
Objective:
To assess the effects of a new thiazolidine compound-GQ-11-on obesity and insulin resistance induced by a diabetogenic diet in LDL receptor-deficient (LDLr-/-) mice.
Methods:
Molecular docking simulations of GQ-11, PPARα and PPARγ structures were performed. Male C57BL/6J LDLr-/- mice fed a diabetogenic diet for 24 weeks were treated with vehicle, GQ-11 or pioglitazone or (20 mg/kg/day) for 28 days by oral gavage. Glucose tolerance test, insulin, HOMA-IR, adipokines (leptin, adiponectin) and the lipid profile were assessed after treatment. Adipose tissue was analysed by X-ray analysis and morphometry; gene and protein expression were evaluated by real-time PCR and western blot, respectively.
Results:
GQ-11 showed partial agonism to PPARγ and PPARα. In vivo, treatment with GQ-11 ameliorated insulin sensitivity and did not modify subcutaneous adipose tissue and body weight gain. In addition, GQ-11 restored adipokine imbalance induced by a diabetogenic diet and enhanced Glut-4 expression in the adipose tissue. Improved insulin sensitivity was also associated with lower levels of MCP-1 and higher levels of IL-10. Furthermore, GQ-11 reduced triglycerides and VLDL cholesterol and increased HDL-cholesterol by upregulation of Apoa1 and Abca1 gene expression in the liver.
Conclusion:
GQ-11 is a partial/dual PPARα/γ agonist that demonstrates anti-diabetic effects. Additionally, it improves the lipid profile and ameliorates chronic inflammation associated with obesity in atherosclerosis-prone mice.
Insights
GQ-11, a novel compound, improves insulin sensitivity and lipid profiles in mice with obesity and insulin resistance. It also reduces inflammation, offering potential therapeutic benefits for cardiovascular diseases.
Area of Science:
- Pharmacology
- Metabolic Diseases
- Cardiovascular Research
Background:
- Obesity and insulin resistance are key risk factors for cardiovascular diseases.
- Development of safe and effective therapeutics is crucial.
Purpose of the Study:
- To evaluate the effects of the thiazolidine compound GQ-11 on obesity and insulin resistance.
- To assess GQ-11's impact in LDL receptor-deficient mice fed a diabetogenic diet.
Main Methods:
- Molecular docking simulations of GQ-11 with PPARα and PPARγ.
- In vivo study using LDLr-/- mice treated with GQ-11 or pioglitazone.
- Assessment of glucose tolerance, insulin sensitivity, adipokines, lipid profiles, and gene/protein expression.
Main Results:
- GQ-11 demonstrated partial agonism to PPARα and PPARγ.
- GQ-11 improved insulin sensitivity, restored adipokine balance, and enhanced Glut-4 expression.
- GQ-11 reduced triglycerides and VLDL cholesterol, increased HDL cholesterol, and modulated inflammatory markers.
Conclusions:
- GQ-11 acts as a partial/dual PPARα/γ agonist with significant anti-diabetic effects.
- GQ-11 improves lipid profiles and reduces inflammation in obesity-related conditions.
- GQ-11 shows promise as a therapeutic agent for metabolic and cardiovascular diseases.
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