Key result
Eicosapentaenoic acid attenuated weight and fat mass gain and improved glucose tolerance in UCP1 knockout mice at thermoneutrality, independent of UCP1.
Why the study?
Does eicosapentaenoic acid (EPA) reduce adiposity and improve glucose tolerance in UCP1 knockout mice on a high-fat diet?
Does eicosapentaenoic acid (EPA) reduce adiposity and improve glucose tolerance in UCP1 knockout mice on a high-fat diet?
EPA reduces adiposity and improves glucose tolerance independently of UCP1, suggesting alternative metabolic pathways for its anti-obesity effects.
Supports EPA's UCP1-independent metabolic effects in mice; leaves open human translation for obesity or diabetes.
SCOPE: Brown adipose tissue (BAT) dissipates energy through uncoupling protein 1 (UCP1) and has been proposed as an anti-obesity target. It was reported previously that a high-fat (HF) diet enriched in eicosapentaenoic acid (EPA) significantly increased UCP1 and other thermogenic markers in BAT. It is hypothesized that these effects are mediated through UCP1-dependent regulation. METHODS AND RESULTS: Wild-type (WT) and UCP1 knockout (KO) B6 male mice were housed at thermoneutrality and fed a HF diet, without or with eicosapentaenoic acid (EPA)-enriched fish oil. HF-fed KO mice were heavier and had higher BAT lipid content than other groups. Protective effects of EPA in WT, previously observed at 22 °C (reduced adiposity, improved glucose tolerance, and increased UCP1), disappeared at thermoneutrality. Mitochondrial proteins, cytochrome c oxidase subunit 1 (COX I), COX I, II, and IV were reduced in the KO mice compared to WT. Unexpectedly, EPA attenuated weight and fat mass gain and improved glucose tolerance in the KO mice. Finally, EPA increased BAT peroxisome proliferator-activated receptor gamma coactivator 1 alpha (PGC1α) protein and gene expression, and whole-body oxygen consumption in KO mice, consistent with increased mitochondria DNA (mtDNA)/nuclear DNA (nucDNA) ratio. CONCLUSIONS: EPA rescued the weight gain and glucose intolerance in UCP1 KO mice at thermoneutrality, independent of UCP1; these effects may be mediated in part via increased oxygen consumption and BAT PGC1α.
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Pahlavani et al. (2019) studied High-fat diet induced weight gain and glucose intolerance. Eicosapentaenoic acid (EPA)-enriched fish oil vs. High-fat diet without EPA was evaluated on Weight gain, fat mass gain, and glucose tolerance. Eicosapentaenoic acid attenuated weight and fat mass gain and improved glucose tolerance in UCP1 knockout mice at thermoneutrality, independent of UCP1.
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