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Transgenic Restoration of Long-chain N-3 Fatty Acids in Insulin Target Tissues Improves Resolution Capacity and Alleviates Obesity-linked Inflammation and Insulin Resistance in High-fat-fed Mice

Overview
Journal Diabetes
Specialty Endocrinology
Date 2010 Sep 16
PMID 20841610
Citations 79
Authors
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Abstract

Objective: The catabasis of inflammation is an active process directed by n-3 derived pro-resolving lipid mediators. We aimed to determine whether high-fat (HF) diet-induced n-3 deficiency compromises the resolution capacity of obese mice and thereby contributes to obesity-linked inflammation and insulin resistance.

Research Design And Methods: We used transgenic expression of the fat-1 n-3 fatty acid desaturase from C. elegans to endogenously restore n-3 fatty acids in HF-fed mice. After 8 weeks on HF or chow diets, wild-type and fat-1 transgenic mice were subjected to insulin and glucose tolerance tests and a resolution assay was performed. Metabolic tissues were then harvested for biochemical analyses.

Results: We report that the n-3 docosanoid resolution mediator protectin D1 is lacking in muscle and adipose tissue of HF-fed wild-type mice. Accordingly, HF-fed wild-type mice have an impaired capacity to resolve an acute inflammatory response and display elevated adipose macrophage accrual and chemokine/cytokine expression. This is associated with insulin resistance and higher activation of iNOS and JNK in muscle and liver. These defects are reversed in HF-fed fat-1 mice, in which the biosynthesis of this important n-3 docosanoid resolution mediator is improved. Importantly, transgenic restoration of n-3 fatty acids prevented obesity-linked inflammation and insulin resistance in HF-fed mice without altering food intake, weight gain, or adiposity.

Conclusions: We conclude that inefficient biosynthesis of n-3 resolution mediators in muscle and adipose tissue contributes to the maintenance of chronic inflammation in obesity and that these novel lipids offer exciting potential for the treatment of insulin resistance and diabetes.

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References
1.
Arita M, Bianchini F, Aliberti J, Sher A, Chiang N, Hong S . Stereochemical assignment, antiinflammatory properties, and receptor for the omega-3 lipid mediator resolvin E1. J Exp Med. 2005; 201(5):713-22. PMC: 2212834. DOI: 10.1084/jem.20042031. View

2.
Hotamisligil G . Inflammation and metabolic disorders. Nature. 2006; 444(7121):860-7. DOI: 10.1038/nature05485. View

3.
Ruzickova J, Rossmeisl M, Prazak T, Flachs P, Sponarova J, Veck M . Omega-3 PUFA of marine origin limit diet-induced obesity in mice by reducing cellularity of adipose tissue. Lipids. 2005; 39(12):1177-85. DOI: 10.1007/s11745-004-1345-9. View

4.
Serhan C, Chiang N . Endogenous pro-resolving and anti-inflammatory lipid mediators: a new pharmacologic genus. Br J Pharmacol. 2007; 153 Suppl 1:S200-15. PMC: 2268040. DOI: 10.1038/sj.bjp.0707489. View

5.
Gingras A, White P, Chouinard P, Julien P, Davis T, Dombrowski L . Long-chain omega-3 fatty acids regulate bovine whole-body protein metabolism by promoting muscle insulin signalling to the Akt-mTOR-S6K1 pathway and insulin sensitivity. J Physiol. 2006; 579(Pt 1):269-84. PMC: 2075371. DOI: 10.1113/jphysiol.2006.121079. View