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Caco-2细胞对结构化甘油三酯的摄取与代谢:必需脂肪酸缺乏的逆转

Uptake and metabolism of structured triglyceride by Caco-2 cells: reversal of essential fatty acid deficiency.

作者信息

Spalinger J H, Seidman E G, Lepage G, Ménard D, Gavino V, Levy E

机构信息

Division of Gastroenterology and Nutrition, Centre de Recherche, Hôpital Sainte-Justine, University of Montreal, Montreal, Quebec, H3T 1C5 Canada.

出版信息

Am J Physiol. 1998 Oct;275(4):G652-9. doi: 10.1152/ajpgi.1998.275.4.G652.

Abstract

Structured lipids have been proposed as efficient vehicles for the supplementation of essential fatty acids (EFA) to patients with malabsorption. We investigated how a novel structured triglyceride (STG), containing purely octanoic acid in the sn-1/sn-3 and [14C]linoleic acid in the sn-2 positions, was incorporated into different lipid classes in Caco-2 cells. We also evaluated the contribution of gastric lipase in the uptake and metabolism of [14C]linoleic acid from the STG. We furthermore determined the potential of the STG to correct EFA deficiency induced in Caco-2 cells. The absorption of STG by Caco-2 cells was significantly greater compared with that of triolein. The addition of human gastric lipase significantly enhanced cellular uptake of the labeled substrate, reflecting the stereoselectivity of gastric lipase to hydrolyze medium chain FA. Analysis of the intracellular lipids synthesized revealed a predominance of phospholipids-monoglycerides. Most of the radioactivity in the lipoproteins isolated from Caco-2 cells was recovered in TG-rich lipoproteins (45%) and to a lesser extent in the high-density lipoprotein (36%) and low-density lipoprotein (17%) fractions. The administration of STG to Caco-2 cells rendered EFA deficient produced a marked increase of the cellular level of linoleic and arachidonic acids. This resulted in a lower ratio of 20:3(n-9) to 20:4(n-6), reflecting the correction of EFA deficiency in Caco-2 cells. Our data demonstrate that STG, in the presence of gastric lipase, have beneficial effects on lipid incorporation, lipoprotein production, and EFA status, utilizing Caco-2 cells as a model of EFA deficiency.

摘要

结构化脂质已被提议作为向吸收不良患者补充必需脂肪酸(EFA)的有效载体。我们研究了一种新型结构化甘油三酯(STG),其sn-1/sn-3位含有纯辛酸,sn-2位含有[14C]亚油酸,是如何被Caco-2细胞整合到不同脂质类别中的。我们还评估了胃脂肪酶在从STG摄取和代谢[14C]亚油酸中的作用。此外,我们确定了STG纠正Caco-2细胞中诱导的EFA缺乏的潜力。与三油精相比,Caco-2细胞对STG的吸收显著更高。添加人胃脂肪酶显著增强了标记底物的细胞摄取,反映了胃脂肪酶水解中链脂肪酸的立体选择性。对合成的细胞内脂质的分析显示,磷脂-单甘油酯占主导。从Caco-2细胞分离的脂蛋白中,大部分放射性存在于富含甘油三酯的脂蛋白中(45%),在高密度脂蛋白(36%)和低密度脂蛋白(17%)组分中的比例较小。向EFA缺乏的Caco-2细胞施用STG导致亚油酸和花生四烯酸的细胞水平显著增加。这导致20:3(n-9)与二十碳四烯酸(20:4(n-6))的比例降低,反映了Caco-2细胞中EFA缺乏的纠正。我们的数据表明,以Caco-2细胞作为EFA缺乏的模型,在胃脂肪酶存在的情况下,STG对脂质整合、脂蛋白产生和EFA状态具有有益作用。

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