Bysted A, Hølmer G, Lund P, Sandström B, Tholstrup T
BioCentrum-DTU, Section of Biochemistry and Nutrition, Center of Advanced Food Studies, The Technical University of Denmark, Lyngby, Denmark.
Eur J Clin Nutr. 2005 Jan;59(1):24-34. doi: 10.1038/sj.ejcn.1602028.
The aim of the present study was to investigate the effect of trans-18:1 isomers compared to other fatty acids, especially saturates, on the postprandial fatty acid composition of triacylglycerols (TAG) in chylomicrons and VLDL.
A randomised crossover experiment where five interesterified test fats with equal amounts of palmitic acid (P fat), stearic acid (S fat), trans-18:1 isomers (T fat), oleic acid (O fat), or linoleic acid (L fat) were tested.
A total of 16 healthy, normolipidaemic males (age 23+/-2 y) were recruited.
The participants ingested fat-rich test meals (1 g fat per kg body weight) and the fatty acid profiles of chylomicron and VLDL TAG were followed for 8 h.
The postprandial fatty acid composition of chylomicron TAG resembled that of the ingested fats. The fatty acids in chylomicron TAG were randomly distributed among the three positions in accordance with the distributions in test fats. Calculations of postprandial TAG concentrations from fatty acid data revealed increasing amounts up to 4 h but lower response curves (IAUC) for the two saturated fats in accordance with previous published data. The T fat gave results comparable to the O and L fats. The test fatty acids were much less reflected in VLDL TAG and there was no dietary influence on the response curves.
The fatty acid composition in the test fats as well as the positional distributions of these were maintained in the chylomicrons. No specific clearing of chylomicron TAG was observed in relation to time.
本研究旨在调查反式18:1异构体与其他脂肪酸(尤其是饱和脂肪酸)相比,对乳糜微粒和极低密度脂蛋白(VLDL)中三酰甘油(TAG)餐后脂肪酸组成的影响。
一项随机交叉实验,测试了五种含有等量棕榈酸(P脂肪)、硬脂酸(S脂肪)、反式18:1异构体(T脂肪)、油酸(O脂肪)或亚油酸(L脂肪)的酯交换测试脂肪。
共招募了16名健康、血脂正常的男性(年龄23±2岁)。
参与者摄入富含脂肪的测试餐(每千克体重1克脂肪),并跟踪乳糜微粒和VLDL TAG的脂肪酸谱8小时。
乳糜微粒TAG的餐后脂肪酸组成与摄入的脂肪相似。乳糜微粒TAG中的脂肪酸根据测试脂肪中的分布随机分布在三个位置。根据脂肪酸数据计算餐后TAG浓度,结果显示在4小时内含量增加,但根据先前发表的数据,两种饱和脂肪的反应曲线(IAUC)较低。T脂肪的结果与O脂肪和L脂肪相当。测试脂肪酸在VLDL TAG中的反映要少得多,并且饮食对反应曲线没有影响。
测试脂肪中的脂肪酸组成及其位置分布在乳糜微粒中得以维持。未观察到乳糜微粒TAG随时间的特定清除情况。