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人类血管内皮细胞合成并释放24碳和26碳的多不饱和脂肪酸。

Human vascular endothelial cells synthesize and release 24- and 26-carbon polyunsaturated fatty acids.

作者信息

Rosenthal M D, Hill J R

出版信息

Biochim Biophys Acta. 1984 Sep 12;795(2):171-8. doi: 10.1016/0005-2760(84)90063-8.

Abstract

Vascular endothelial cells from human umbilical vein readily incorporate [14C]eicosatrienoate (20:3 (n - 6) and desaturate it to synthesize [14C]arachidonate (20:4) and [14C]docosatetraenoate (22:4). Both substrate and metabolites are extensively esterified in cellular phospholipids and triacylglycerol. After these cells are incubated for 24-48 h with 4.5 microM [14C]20:3 in culture medium plus 10% fetal bovine serum, the medium contains a number of radiolabeled free fatty acids. In addition to arachidonate and docosatetraenoate, these include still longer-chain polyunsaturated fatty acids. We have identified these as 24:4, 24:5, 26:4 and 26:5 by both radio-gas chromatography and HPLC. Although the 24- and 26-carbon polyunsaturated fatty acids represent a negligible percentage of cellular 14C-labeled fatty acids, they are each present in the medium at a concentration of 10-40 nM, whereas [14C]arachidonate is 60-100 nM. In particular, products of delta 4 desaturation are a significant component of radiolabeled polyunsaturated fatty acids in medium but not in the cells. Since docosapolyenoic fatty acids have recently been shown to give rise to biologically active oxygenated derivatives, the selective release and possible subsequent metabolism of even longer polyunsaturated fatty acids warrants further investigation.

摘要

人脐静脉血管内皮细胞很容易摄取[14C]二十碳三烯酸(20:3(n - 6))并使其去饱和,以合成[14C]花生四烯酸(20:4)和[14C]二十二碳四烯酸(22:4)。底物和代谢产物都大量酯化为细胞磷脂和三酰甘油。在这些细胞于含有10%胎牛血清的培养基中用4.5微摩尔[14C]20:3孵育24 - 48小时后,培养基中含有多种放射性标记的游离脂肪酸。除了花生四烯酸和二十二碳四烯酸外,这些还包括更长链的多不饱和脂肪酸。我们通过放射性气相色谱法和高效液相色谱法将这些鉴定为24:4、24:5、26:4和26:5。尽管24碳和26碳的多不饱和脂肪酸在细胞14C标记的脂肪酸中所占比例可忽略不计,但它们在培养基中的浓度均为10 - 40纳摩尔,而[14C]花生四烯酸为60 - 100纳摩尔。特别是,δ4去饱和产物是培养基中放射性标记多不饱和脂肪酸的重要组成部分,但在细胞中并非如此。由于最近已表明二十二碳多烯酸会产生具有生物活性的氧化衍生物,因此更长链多不饱和脂肪酸的选择性释放及其可能的后续代谢值得进一步研究。

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