Postprandial lipemia: The origin of an early peak studied by specific dietary fatty acid intake during sequential meals

被引:193
作者
Fielding, BA
Callow, J
Owen, RM
Samra, JS
Matthews, DR
Frayn, KN
机构
[1] RADCLIFFE INFIRM, SHEIKH RASHID LAB, OXFORD LIPID METAB GRP, NUFFIELD DEPT CLIN MED, OXFORD OX2 6HE, ENGLAND
[2] RADCLIFFE INFIRM, DEPT DIABET ENDOCRINOL & METAB, OXFORD OX2 6HE, ENGLAND
基金
英国惠康基金;
关键词
humans; triacylglycerol; nonesterified fatty acids; oleic acid; linoleic acid; postprandial lipemia; chylomicrons; dietary fatty acids;
D O I
10.1093/ajcn/63.1.36
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Previous studies have noted the presence of an early postprandial peak in plasma triacylglycerol concentration, particularly when successive meals have been consumed. We tested the hypothesis that fat from a previous meal contributes to this early postprandial lipemia. We investigated the effect of consuming a lunch containing 61 g fat 5 h after a breakfast containing 54 g fat. The predominant fatty acids in the first meal, expressed as % by wt of total fatty acids, were 18:2 (linoleic acid), 68%, and 18:1 (oleic acid), 19%. The main fatty acids in the second meal were 18:1 (75%) and 18:2 (8%). After lunch, the early peak (at 50-60 min) in chylomicron triacylglycerol was found to contain a large proportion of 18:2, the main constituent of the first meal, whereas at later time points the chylomicron triacylglycerol fatty acid profile more closely resembled that of the second meal. Control studies in three subjects showed the complete absence of the early peaks in plasma and chylomicron triacylglycerol concentrations when either the lunch was omitted or the first meal was low in fat. The plasma nonesterified fatty acid profile also showed a corresponding peak in 18:2 at 50-60 min, which may represent the release into the plasma of fatty acids arising from the hydrolysis of chylomicron triacylglycerol by adipose tissue lipoprotein lipase.
引用
收藏
页码:36 / 41
页数:6
相关论文
共 28 条
[1]   QUANTITATIVE STUDIES OF METABOLISM OF CHYLOMICRON TRIGLYCERIDES AND CHOLESTEROL BY LIVER AND EXTRAHEPATIC TISSUES OF SHEEP AND DOGS [J].
BERGMAN, EN ;
HAVEL, RJ ;
WOLFE, BM ;
BOHMER, T .
JOURNAL OF CLINICAL INVESTIGATION, 1971, 50 (09) :1831-+
[2]  
Callow J., 1995, Proceedings of the Nutrition Society, V54, p52A
[3]  
CIANFLONE K, 1989, J LIPID RES, V30, P1727
[4]   STABILITY OF PLASMA-GLUCOSE DURING STORAGE [J].
CLARK, ML ;
HUMPHREYS, SM ;
FRAYN, KN .
ANNALS OF CLINICAL BIOCHEMISTRY, 1990, 27 :373-377
[5]  
COHN JS, 1993, J LIPID RES, V34, P2033
[6]  
COHN JS, 1988, J LIPID RES, V29, P469
[7]   ROLE OF TRIGLYCERIDE-RICH LIPOPROTEINS FROM THE LIVER AND INTESTINE IN THE ETIOLOGY OF POSTPRANDIAL PEAKS IN PLASMA TRIGLYCERIDE CONCENTRATION [J].
COHN, JS ;
MCNAMARA, JR ;
KRASINSKI, SD ;
RUSSELL, RM ;
SCHAEFER, EJ .
METABOLISM-CLINICAL AND EXPERIMENTAL, 1989, 38 (05) :484-490
[8]   POSTPRANDIAL SUBSTRATE DEPOSITION IN HUMAN FOREARM AND ADIPOSE TISSUES INVIVO [J].
COPPACK, SW ;
FISHER, RM ;
GIBBONS, GF ;
HUMPHREYS, SM ;
MCDONOUGH, MJ ;
POTTS, JL ;
FRAYN, KN .
CLINICAL SCIENCE, 1990, 79 (04) :339-348
[9]  
COPPACK SW, 1989, EUR J CLIN NUTR, V43, P493
[10]  
Fielding B. A., 1995, Proceedings of the Nutrition Society, V54, p53A