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乙醇胺磷脂酰胆碱及其水解产物在小鼠体内的吸收动力学。

Absorption Kinetics of Ethanolamine Plasmalogen and Its Hydrolysate in Mice.

机构信息

Department of Life and Food Science, Obihiro University of Agriculture and Veterinary Medicine.

Food and Biodynamic Chemistry Laboratory, Graduate School of Agricultural Science, Tohoku University.

出版信息

J Oleo Sci. 2021 Feb 1;70(2):263-273. doi: 10.5650/jos.ess20223. Epub 2021 Jan 15.

Abstract

Ethanolamine plasmalogen (PlsEtn), a subclass of ethanolamine glycerophospholipid (EtnGpl), has been reported to have many biological and dietary functions. In terms of PlsEtn absorption, some studies have reported that PlsEtn is re-esterized at the sn-2 position using lymph cannulation and the everted jejunal sac model. In this study, we aimed to better understand the uptake kinetics of PlsEtn and increase its absorption. We thus compared the uptake kinetics of PlsEtn with that of the lyso-form, in which the fatty acid at the sn-2 position was hydrolyzed enzymatically. Upon administration of EtnGpl (extracted from oysters or ascidians, 75.4 mol% and 88.4 mol% of PlsEtn ratio, respectively), the plasma PlsEtn species in mice showed the highest levels at 4 or 8 hours after administration. In the contrast, administration of the EtnGpl hydrolysate, which contained lysoEtnGpl and free fatty acids, markedly increased the plasma levels of PlsEtn species at 2 h after administration. The area under the plasma concentration-time curve (AUC), especially the AUC of PlsEtn species, was higher with hydrolysate administration than that with EtnGpl administration. These results indicate that EtnGpl hydrolysis accelerated the absorption and metabolism of PlsEtn. Consequently, using a different experimental approach from that used in previous studies, we reconfirmed that PlsEtn species were absorbed via hydrolysis at the sn-2 position, suggesting that hydrolysis in advance could increase PlsEtn uptake.

摘要

乙醇胺-plasmalogen(PlsEtn)是乙醇胺甘油磷脂(EtnGpl)的一个亚类,据报道具有许多生物和饮食功能。就 PlsEtn 的吸收而言,一些研究报告称,PlsEtn 在 sn-2 位置使用淋巴插管和外翻空肠囊模型重新酯化。在这项研究中,我们旨在更好地了解 PlsEtn 的摄取动力学并增加其吸收。因此,我们比较了 PlsEtn 与 lyso 形式的摄取动力学,其中 sn-2 位置的脂肪酸被酶水解。在给予 EtnGpl(从牡蛎或海鞘中提取,PlsEtn 比例分别为 75.4 mol%和 88.4 mol%)后,小鼠血浆中的 PlsEtn 种类在给药后 4 或 8 小时达到最高水平。相比之下,给予含有 lysoEtnGpl 和游离脂肪酸的 EtnGpl 水解产物在给药后 2 小时显着增加了 PlsEtn 种类的血浆水平。血浆浓度-时间曲线下面积(AUC),特别是 PlsEtn 种类的 AUC,水解产物给药后高于 EtnGpl 给药后。这些结果表明,EtnGpl 水解加速了 PlsEtn 的吸收和代谢。因此,使用与先前研究中使用的不同实验方法,我们重新确认 PlsEtn 种类通过 sn-2 位置的水解被吸收,这表明预先水解可以增加 PlsEtn 的摄取。

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