Habitual Intake of Marine-Derived n-3 PUFAs is Inversely Associated with a Cardiometabolic Inflammatory Profile in Yup'ik Alaska Native People

The relationship between dietary n-3 PUFAs and the prevention of cardiometabolic diseases, including type 2 diabetes, is unresolved. Examination of the association between n-3 PUFAs and chronic low-grade inflammation in a population where many individuals have had an extremely high intake of marine...

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Veröffentlicht in:The Journal of nutrition 2022-03, Vol.152 (3), p.844-855
Hauptverfasser: Boyer, Bert B, Hopkins, Scarlett E, Wiener, Howard W, Purnell, Jonathan Q, O'Brien, Diane M, Zhang, Cindy X, Aslan, Joseph E, Aliwarga, Theresa, Pomeroy, Jeremy J, Thummel, Kenneth E, Tiwari, Hemant K
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Sprache:eng
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Zusammenfassung:The relationship between dietary n-3 PUFAs and the prevention of cardiometabolic diseases, including type 2 diabetes, is unresolved. Examination of the association between n-3 PUFAs and chronic low-grade inflammation in a population where many individuals have had an extremely high intake of marine mammals and fish throughout their lifespan may provide important clues regarding the impact of n-3 PUFAs on health. The aim of this study was to explore associations between concentrations of n-3 PUFAs resulting from habitual intake of natural food sources high in fish and marine mammals with immune biomarkers of metabolic inflammation and parameters of glucose regulation. A total of 569 Yup'ik Alaska Native adults (18–87 years old) were enrolled in this cross-sectional study between December 2016 and November 2019. The RBC nitrogen isotope ratio (NIR; 15N/14N) was used as a validated measure of n-3 PUFA intake to select 165 participant samples from the first and fourth quartiles of n-3 PUFA intakes. Outcomes included 38 pro- and anti-inflammatory cytokines and 8 measures of glucose homeostasis associated with type 2 diabetes risks. These outcomes were evaluated for their associations with direct measurements of EPA, DHA, and arachidonic acid in RBCs. Linear regression was used to detect significant relationships with cytokines and n-3 PUFAs, adiposity, and glucose-related variables. The DHA concentration in RBC membranes was inversely associated with IL-6 (β = –0.0066; P 
ISSN:0022-3166
1541-6100
DOI:10.1093/jn/nxab412