A Combined GLP-1/PPARa/CB1-Based Therapy to Restore the Central and Peripheral Metabolic Dysregulation Induced by a
Marialuisa de Ceglia1,2, Nabila Rasheed3, Rubén Tovar1
1Grupo de Neuropsicofarmacología, Instituto IBIMA-Plataforma BIONAND, Unidad de Gestión Clínica de Salud Mental, Hospital Regional Universitario de Málaga, Av. de Carlos Haya, 29010 Málaga, Spain.
Abstract:
Obesity remains a major epidemic in developed countries, with a limited range of effective pharmacological treatments. The pharmacological modulation of PPARα, CB1, or GLP-1 receptor activity has demonstrated beneficial effects, including anti-obesity actions. In this study, we evaluated a novel amide derivative of oleic acid and tyrosol (Oleyl hydroxytyrosol ether, OLHHA), a PPARα agonist, and CB1 antagonist, in combination with the GLP-1 agonist liraglutide (LIG), as an effective multitarget therapy to improve both the peripheral and central alterations in an animal model of diet-induced obesity. In rats, exposure to a high-fat high-fructose diet (HFHFD) induced weight gain and increased plasma triglycerides, LDL, and hepatic parameters. In the brain, the HFHFD provoked disruptions in the expression of proteins regulating food intake, the endocannabinoid system, the insulin pathway, and inflammation and resulted in altered tau expression and phosphorylation, thus indicating neurodegenerative changes. Based on our results, the administration of LIG or OLHHA alone was insufficient to completely reverse the alterations noticed at the peripheral and central levels. On the other hand, the combined treatment with both compounds (OLHHA+LIG) was the most effective in promoting body weight loss and ameliorating both the central and peripheral alterations induced by HFHFDs in rats. This multitarget therapeutic approach could represent a promising strategy for treating obesity and associated comorbidities.
Insights
A novel combination therapy using Oleyl hydroxytyrosol ether (OLHHA) and liraglutide (LIG) effectively combats diet-induced obesity in rats. This dual-action treatment reverses both body weight gain and associated neurodegenerative changes.
Area of Science:
- Metabolic disorders
- Neuroendocrinology
- Pharmacology
Background:
- Obesity is a global epidemic with limited effective pharmacological treatments.
- Modulating PPARα, CB1, and GLP-1 receptors shows anti-obesity potential.
- Diet-induced obesity causes peripheral and central metabolic and neurodegenerative alterations.
Purpose of the Study:
- To evaluate a novel multitarget therapy for diet-induced obesity.
- To assess the efficacy of Oleyl hydroxytyrosol ether (OLHHA) and liraglutide (LIG) combination.
- To investigate peripheral and central effects in an animal model.
Main Methods:
- Rats were fed a high-fat, high-fructose diet (HFHFD) to induce obesity.
- Treatment groups included vehicle, OLHHA alone, LIG alone, and OLHHA+LIG combination.
- Peripheral (plasma lipids, liver) and central (brain protein expression, tau pathology) parameters were analyzed.
Main Results:
- HFHFD induced weight gain, dyslipidemia, hepatic issues, and neuroinflammation/neurodegeneration.
- Single treatments (OLHHA or LIG) partially reversed HFHFD-induced changes.
- Combined OLHHA+LIG treatment significantly promoted weight loss and ameliorated both peripheral and central alterations.
Conclusions:
- A multitarget approach combining OLHHA and LIG is highly effective against diet-induced obesity.
- This combination therapy addresses both metabolic and neurodegenerative comorbidities.
- The OLHHA+LIG strategy shows promise for treating obesity and related conditions.
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