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首页> 外文期刊>Steroids: An International Journal >Dehydroepiandrosterone fatty acyl esters in high density lipoprotein: interaction with human vascular endothelial cells and vascular responses ex vivo.
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Dehydroepiandrosterone fatty acyl esters in high density lipoprotein: interaction with human vascular endothelial cells and vascular responses ex vivo.

机译:高密度脂蛋白中的脱氢表雄酮脂肪酰基酯:与人血管内皮细胞的相互作用以及离体的血管反应。

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Dehydroepiandrosterone (DHEA) fatty acyl esters once incorporated in high density lipoprotein (HDL) induce a stronger vasodilatory response in rat mesenteric arteries ex vivo compared to native HDL. We studied the role of HDL receptor, scavenger receptor class B, type 1 (SR-B1), as well as estrogen and androgen receptors in the vasodilatory response of HDL-associated DHEA fatty acyl esters. Using cultured human vascular endothelial cells (HUVEC), we investigated the possible internalization and cellular response of HDL-associated DHEA esters. We prepared DHEA ester-enriched HDL by incubating human plasma in the presence of DHEA. After isolation and purification, HDL was added in cumulative doses to arterial rings precontracted with noradrenaline. Inhibition of the function of SR-B1 almost completely abolished maximal vasorelaxation by DHEA-enriched HDL while estrogen or androgen receptor blockage had no significant effect. When HUVECs were incubated in the presence of [(3)H]DHEA ester-enriched HDL, the amount of intracellular [(3)H]-radioactivity increased steadily during 24 h. Blocking of SR-B1 reduced this uptake by a mean of 30%. The proportion of unesterified [(3)H]DHEA, as analyzed by thin-layer chromatography, increased intracellularly and in the cell culture media after several hours of incubation of the cells in the presence of [(3)H]DHEA ester-enriched HDL. This indicated slow hydrolysis of DHEA fatty acyl esters and subsequent excretion of unesterified DHEA by the cells. In conclusion, DHEA-enriched HDL induced vasorelaxation via the SR-B1-facilitated pathway. However, this vasodilation is not likely to be attributed to rapid hydrolysis of HDL-associated DHEA esters by the vascular endothelium.
机译:与天然HDL相比,一旦掺入高密度脂蛋白(HDL)中的脱氢表雄酮(DHEA)脂肪酰基酯在离体大鼠肠系膜动脉中诱导更强的血管舒张反应。我们研究了HDL受体相关的DHEA脂肪酰基酯的血管舒张反应中HDL受体,B类清道夫受体1型(SR-B1)以及雌激素和雄激素受体的作用。使用培养的人血管内皮细胞(HUVEC),我们研究了HDL相关的DHEA酯的可能的内在化和细胞反应。我们通过在DHEA存在下孵育人血浆来制备富含DHEA酯的HDL。分离和纯化后,将HDL以累积剂量添加到与去甲肾上腺素预收缩的动脉环中。富含DHEA的HDL对SR-B1功能的抑制几乎完全消除了最大的血管舒张作用,而雌激素或雄激素受体的阻滞没有明显作用。当HUVEC在富含[(3)H] DHEA酯的HDL存在下孵育时,细胞内[[3)H]放射性的量在24小时内稳定增加。阻断SR-B1可使摄取平均减少30%。通过薄层色谱分析,未酯化的[(3)H] DHEA的比例在富[[3] H] DHEA酯存在下孵育细胞数小时后,在细胞内和细胞培养基中增加高密度脂蛋白。这表明DHEA脂肪酰基酯水解缓慢,随后细胞排泄了未酯化的DHEA。总之,富含DHEA的HDL通过SR-B1促进的途径诱导了血管舒张。然而,这种血管舒张不太可能归因于HDL相关的DHEA酯被血管内皮快速水解。

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