首页> 外文期刊>The British Journal of Nutrition >In vitro lipolysis and lymphatic absorption of n-3 long-chain PUFA in the rat: influence of the molecular lipid species as carrier
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In vitro lipolysis and lymphatic absorption of n-3 long-chain PUFA in the rat: influence of the molecular lipid species as carrier

机译:大鼠N-3长链PUFA的体外脂解和淋巴吸收:分子脂质物种作为载体的影响

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摘要

The aim of this work was to study the bioavailability of fatty acids (FA), focusing on n-3 long-chain (LC) PUFA, carried by different molecular lipid species, that is, phospholipids (PL) or TAG, with three formulations based on fish oils or marine PL, providing a similar n-3 LC PUFA amount. The digestive lipolysis was first assessed using an in vitro enzymatic model. Then, intestinal absorption and enterocyte metabolism were investigated in vivo, on male Wistar rats through lymph lipid analysis. The in vitro results showed that the release of n-3 LC PUFA from lipolysis was increased by 48?% when FA were provided as PL rather than TAG. The in vivo results demonstrated that EPA and DHA from both TAG and PL were similarly absorbed and incorporated into lymph lipids. However, DHA was mainly distributed at the sn-1/3 positions of lymph TAG when provided as marine PL, whereas it was equally distributed at the three positions with marine TAG. On the whole, even if the molecular lipid species of n-3 LC PUFA did not greatly modify the in vivo digestion and absorption steps, it modulated the rearrangement of DHA on the glyceride positions of the lymph TAG, which may further impact the DHA metabolic fate and tissue accretion. Consequently, the present study has provided data which may be used to formulate lipid diets rich in DHA in the context of an insufficient consumption of n-3 PUFA in Western countries.
机译:这项工作的目的是研究脂肪酸(FA)的生物利用度,聚焦在N-3长链(LC)PUFA,由不同分子脂质物种,即磷脂(PL)或标签,具有三种制剂基于鱼油或海洋PL,提供类似的N-3 LC PUFA量。首先使用体外酶促模型评估消化脂肪解。然后,通过淋巴脂分析对雄性Wistar大鼠体内进行肠道吸收和肠细胞代谢。体外结果表明,当FA作为PL而不是标签时,当提供FA而不是标记时,脂解的N-3 LC PUFA的释放增加了48〜%。体内结果表明,来自两个标签和PL的EPA和DHA类似地被吸收并掺入淋巴脂质中。然而,当作为船舶PL提供时,DHA主要分布在淋巴标签的SN-1/3位置,而它在用海洋标签的三个位置同样分布。在整体上,即使N-3LC PUFA的分子脂质种类没有大大修饰体内消化和吸收步骤,它也调节DHA对淋巴标签的甘油酯位置的重新排列,这可能进一步影响DHA代谢命运和组织增生。因此,本研究提供了可用于在西方国家N-3 Pufa的不足的背景下制备富含DHA富含DHA的脂质饮食的数据。

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