Liraglutide protects cardiac function in diabetic rats through the PPARα pathway.
Biosci Rep · 2018
Last updated 2026-08-29In a study on diabetic rats, those given liraglutide at doses of 0.2 mg/kg/day or 0.4 mg/kg/day showed improvements in heart function, blood sugar control, and blood fat levels compared to untreated diabetic rats. Liraglutide also reduced oxidative stress and increased beneficial markers like adiponectin and nitric oxide. The drug appeared to work by activating a pathway called PPARα, which helped protect the heart.
AI summary of the abstract below.
| Journal | Biosci Rep, 2018 |
|---|---|
| Citations | 31 |
| Relative citation ratio | 1.45 |
| NIH percentile | 63 |
| Molecules | liraglutide |
Abstract
Increasing evidence shows that diabetes causes cardiac dysfunction. We hypothesized that a glucagon-like peptide-1 analogue, liraglutide, would attenuate cardiac dysfunction in diabetic rats. Twenty-four Sprague Dawley (SD) rats were divided into 2 groups fed either a normal diet (normal, n = 6) or a high-fat diet (HFD, n = 18) for 4 weeks. Then, the HFD rats were injected with streptozotocin (STZ) to create a diabetic rat model. Diabetic rats were divided into 3 subgroups receiving vehicle (diabetic, n = 6), a low dose of liraglutide (Llirag, 0.2 mg/kg/day, n = 6) or a high dose of liraglutide (Hlirag, 0.4 mg/kg/day, n = 6). Metabolic parameters, systolic blood pressure, heart rate, left ventricular (LV) function, and whole genome expression of the heart were determined. Diabetic rats developed insulin resistance, increased blood lipid levels and oxidative stress, and impaired LV function, serum adiponectin, NO. Liraglutide improved insulin resistance, serum adiponectin, NO, heart rate and LV function and reduced blood triglyceride, total cholesterol levels and oxidative stress. Moreover, liraglutide increased heart , and expression and reduced , and expression. Liraglutide prevented in cardiac dysfunction by activating the PPARα pathway to inhibit expression and oxidative stress in diabetic rats.
Verbatim abstract via PubMed 29440457 ↗
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