Dietary fatty acid intake and gut microbiota determine circulating endocannabinoidome signaling beyond the effect of body fat
Sophie Castonguay-Paradis, Sébastien Lacroix, Gabrielle Rochefort, Lydiane Parent, Julie Perron, Cyril Martin, Benoît Lamarche, Frédéric Raymond, Nicolas Flamand, Vincenzo Di Marzo, Alain Veilleux

TL;DR
Diet and gut bacteria influence endocannabinoid levels in the blood, independent of body fat.
Contribution
Identifies diet and gut microbiota as key factors affecting endocannabinoid signaling beyond body fat.
Findings
Dietary fatty acids and gut bacteria are linked to endocannabinoid levels regardless of body fat.
A Mediterranean diet increased NAE and 2-MAG levels in line with changes in fatty acid intake.
Certain gut bacterial families correlate with specific endocannabinoid derivatives independently of fat mass.
Abstract
The endocannabinoidome encompasses several fatty acid (FA)-derived mediators, including the endocannabinoid anandamide (AEA) and 2-arachidonoyl-glycerol (2-AG), which served as targets for anti-obesity drug development, and their congener N-acyl-ethanolamines (NAEs) and 2-monoacyl-glycerols (2‑MAGs), which are involved in food intake and energy metabolism. Body weight and fat distribution have been suggested as determinants of peripheral endocannabinoid levels. We aimed at investigating factors, beyond body fat composition, that are associated with circulating NAE and 2-MAG levels in a heterogeneous human population. Plasma NAEs and 2-MAGs were measured using LC–MS/MS in a cross-sectional sample of healthy men and women (n = 195) covering a wide range of BMI and individuals before and after a 2-day Mediterranean diet (n = 21). Circulating levels of all 2-MAGs and NAEs, other than…
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Taxonomy
TopicsCannabis and Cannabinoid Research · Diet, Metabolism, and Disease · Dietary Effects on Health
