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Differential modulation of white adipose tissue endocannabinoid levels by n-3 fatty acids in obese mice and type 2 diabetic patients
Authors:Martin Rossmeisl  Jana Pavlisova  Petra Janovska  Ondrej Kuda  Kristina Bardova  Jana Hansikova  Michaela Svobodova  Marina Oseeva  Jiri Veleba  Jan Kopecky  Petr Zacek  Eva Fiserova  Terezie Pelikanova  Jan Kopecky
Institution:1. Department of Adipose Tissue Biology, Institute of Physiology of the Czech Academy of Sciences, Prague, Czech Republic;2. Diabetes Centre, Institute for Clinical and Experimental Medicine, Prague, Czech Republic;3. Proteomics Core Facility, Faculty of Science, Charles University, Division BIOCEV, Vestec, Czech Republic;4. Department of Mathematical Analysis and Applications of Mathematics, Faculty of Science, Palacky University, Olomouc, Czech Republic;5. International Clinical Research Center, St. Anne''s University Hospital Brno, Brno, Czech Republic
Abstract:n-3 polyunsaturated fatty acids (n-3 PUFA) might regulate metabolism by lowering endocannabinoid levels. We examined time-dependent changes in adipose tissue levels of endocannabinoids as well as in parameters of glucose homeostasis induced by n-3 PUFA in dietary-obese mice, and compared these results with the effect of n-3 PUFA intervention in type 2 diabetic (T2DM) subjects. Male C57BL/6J mice were fed for 8, 16 or 24?weeks a high-fat diet alone (cHF) or supplemented with n-3 PUFA (cHF?+?F). Overweight/obese, T2DM patients on metformin therapy were given for 24?weeks corn oil (Placebo; 5?g/day) or n-3 PUFA concentrate as above (Omega-3; 5?g/day). Endocannabinoids were measured by liquid chromatography-tandem mass-spectrometry. Compared to cHF-fed controls, the cHF?+?F mice consistently reduced 2-arachidonoylglycerol (up to ~2-fold at week 24) and anandamide (~2-fold) in adipose tissue, while the levels of endocannabinoid-related anti-inflammatory molecules N-eicosapentaenoyl ethanolamine (EPEA) and N-docosahexaenoyl ethanolamine (DHEA) increased more than ~10-fold and ~8-fold, respectively. At week 24, the cHF?+?F mice improved glucose tolerance and fasting blood glucose, the latter being positively correlated with adipose 2-arachidonoylglycerol levels only in obese cHF-fed controls, like fasting insulin and HOMA-IR. In the patients, n-3 PUFA failed to reduce 2-arachidonoylglycerol and anandamide levels in adipose tissue and serum, but they increased both adipose tissue and serum levels of EPEA and DHEA. In conclusion, the inability of n-3 PUFA to reduce adipose tissue and serum levels of classical endocannabinoids might contribute to a lack of beneficial effects of these lipids on glucose homeostasis in T2DM patients.
Keywords:2-AG  arachidonoyl glycerol  AEA  AMPK  AMP-activated protein kinase  cHF  high-fat diet based on corn oil  cHF?+?F  high-fat diet supplemented with EPA?+?DHA in the form of triacylglycerol concentrate  Chow  standard low-fat diet  DHA  docosahexaenoic acid  DHEA  DNL  de novo lipogenesis  EC(s)  endocannabinoid(s)  EPA  eicosapentaenoic acid  EPEA  eWAT  epididymal white adipose tissue  FBG  fasting blood glucose  FPG  fasting plasma glucose  GTT  glucose tolerance test  1  glycated heamoglobin  HOMA-IR  homeostatic model assessment of insulin resistance  iAUC  incremental area under the glucose curve  LC-MS/MS  liquid chromatography-tandem mass spectrometry  mWAT  mesenteric white adipose tissue  n-3 PUFA  n-3 polyunsaturated fatty acids of marine origin  NEFA  non-esterified fatty acids  OEA  Omega-3  n-3 PUFA-containing capsules  Omega-3 index  sum of EPA and DHA relative to total fatty acids measured in the total lipid fraction from serum or adipose tissue  PCA  principal component analysis  PEA  Placebo  corn oil-containing capsules  PPAR  peroxisome proliferator-activated receptor  qPCR  real-time quantitative PCR  scWAT  subcutaneous white adipose tissue  T2DM  type 2 diabetes mellitus  tAUC  total area under the glucose curve  WAT  white adipose tissue  2-AG  DHEA  High-fat diet  Obesity  Omega-3 PUFA
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