4.7 Article

N-3 fatty acids preserve insulin sensitivity in vivo in a peroxisonte proliferator-activated receptor-α-dependent manner

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DIABETES
卷 56, 期 4, 页码 1034-1041

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AMER DIABETES ASSOC
DOI: 10.2337/db06-1206

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  1. NIDDK NIH HHS [R01 DK040936, R01 DK-40936, U24 DK-59635] Funding Source: Medline

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Recent studies have suggested that n-3 fatty acids, abundant in fish oil, protect against high-fat diet-induced insulin resistance through peroxisome proliferator-activated receptor (PPAR)-alpha activation and a subsequent decrease in intracellular lipid abundance. To directly test this hypothesis, we fed PPAR-alpha null and wild-type mice for 2 weeks with isocaloric high-fat diets containing 27% fat from either safflower oil or safflower oil with an 8% fish oil replacement (fish oil diet). In both genotypes the safflower oil diet blunted insulin-mediated suppression of hepatic glucose production (P < 0.02 vs. genotype control) and PEPCK gene expression. Feeding wild-type mice a fish oil diet restored hepatic insulin sensitivity (hepatic glucose production [HGP], P < 0.002 vs. wild-type mice fed safflower oil), whereas in contrast, in PPAR-a null mice failed to counteract hepatic insulin resistance (HGP, P = NS vs. PPA-R-alpha null safflower oil-fed mice). In PPAR-alpha null mice fed the fish oil diet, safflower oil plus fish oil, hepatic insulin resistance was dissociated from increases in hepatic triacylglycerol and acyl-CoA but accompanied by a more than threefold increase in hepatic diacylglycerol concentration (P < 0.0001 vs. genotype control). These data support the hypothesis that n-3 fatty acids protect from high-fat diet-induced hepatic insulin resistance in a PPAR-alpha- and diacylglycerol-dependent manner.

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