卷:10 | |
Fasting enriches liver triacylglycerol with n-3 polyunsaturated fatty acids: implications for understanding the adipose-liver axis in serum docosahexaenoic acid regulation | |
Marks, Kristin A. ; Marvyn, Phillip M. ; Henao, Juan J. Aristizabal ; Bradley, Ryan M. ; Stark, Ken D. ; Duncan, Robin E. | |
关键词: n-3 Polyunsaturated fatty acids; Triacylglycerol; Adipose; Non-esterified fatty acids; Liver; Phospholipids; Fatty acid desaturases; Fatty acid elongases; Fatty acid transport proteins; Fatty acid binding proteins; | |
DOI : 10.1007/s12263-015-0490-2 | |
学科分类:食品科学和技术 | |
【 摘 要 】
We investigated the effect of short-term fasting on coordinate changes in the fatty acid composition of adipose triacylglycerol (TAG), serum non-esterified fatty acids (NEFA), liver TAG, and serum TAG and phospholipids in mice fed ad libitum or fasted for 16 h overnight. In contrast to previous reports under conditions of maximal lipolysis, adipose tissue TAG was not preferentially depleted of n-3 PUFA or any specific fatty acids, nor were there any striking changes in the serum NEFA composition. Short-term fasting did, however, increase the hepatic proportion of n-3 PUFA, and almost all individual species of n-3 PUFA showed relative and absolute increases. The relative proportion of n-6 PUFA in liver TAG also increased but to a lesser extent, resulting in a significant decrease in the n-6: n-3 PUFA ratio (from 14.3 +/- 2.54 to 9.6 +/- 1.20), while the proportion of MUFA decreased significantly and SFA proportion did not change. Examination of genes involved in PUFA synthesis suggested that hepatic changes in the elongation and desaturation of precursor lipids could not explain this effect. Rather, an increase in the expression of fatty acid transporters specific for 22: 6n-3 and other long-chain n-3 and n-6 PUFA likely mediated the observed hepatic enrichment. Analysis of serum phospholipids indicated a specific increase in the concentration of 22: 6n-3 and 16: 0, suggesting increased specific synthesis of DHA-enriched phospholipid by the liver for recirculation. Given the importance of blood phospholipid in distributing DHA to neural tissue, these findings have implications for understanding the adiposeliver-brain axis in n-3 PUFA metabolism.
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