Abstract
Neuropeptide FF receptor 2 (NPFFR2) is a key regulator of energy homeostasis, influencing feeding behavior, insulin sensitivity, and lipid metabolism. This study investigates the metabolic consequences of Npffr2 deletion in a mouse model of diet-induced obesity. Wild-type and Npffr2 knockout mice were fed a high-fat, high-sucrose diet to induce obesity, followed by comprehensive metabolic assessments. Npffr2 knockout mice exhibited reduced food intake, accompanied by significant downregulation of hypothalamic orexigenic neuropeptides agouti-related peptide and neuropeptide Y. Enhanced energy expenditure was observed in knockout mice, as evidenced by increased thermogenic capacity, elevated uncoupling protein 1 expression in brown adipose tissue, and improved core temperature maintenance under cold exposure. Lipid metabolism was also improved, with reduced hepatic and adipose lipid accumulation and lower circulating triglyceride and non-esterified fatty acid levels. Molecular analyses revealed increased AKT phosphorylation in the hypothalamus and skeletal muscle, along with downregulation of protein tyrosine phosphatase 1B in the mediobasal hypothalamus, indicating improved central and peripheral insulin signaling. Here, we demonstrated that NPFFR2 plays a critical role in obesity-associated energy regulation, lipid accumulation, and insulin resistance. These findings highlight NPFFR2 as a potential therapeutic target for obesity and related metabolic disorders.
| Original language | English |
|---|---|
| Article number | bqaf157 |
| Journal | Endocrinology |
| Volume | 166 |
| Issue number | 12 |
| DOIs | |
| State | Published - 06 11 2025 |
Bibliographical note
© The Author(s) 2025. Published by Oxford University Press on behalf of the Endocrine Society. All rights reserved. For commercial re-use, please contact [email protected] for reprints and translation rights for reprints. All other permissions can be obtained through our RightsLink service via the Permissions link on the article page on our site—for further information please contact [email protected]. See the journal About page for additional terms.UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
Keywords
- adipocyte hypertrophy
- energy metabolism
- insulin signaling
- NPFFR2
- obesity
- Mice, Inbred C57BL
- Energy Metabolism/genetics
- Male
- Diet, High-Fat/adverse effects
- Obesity/metabolism
- Insulin Resistance/genetics
- Hypothalamus/metabolism
- Mice, Knockout
- Animals
- Adipose Tissue, Brown/metabolism
- Thermogenesis/genetics
- Mice
- Lipid Metabolism/genetics
- Receptors, Neuropeptide/genetics
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