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二十二碳六烯酸的健康益处及其生物利用度:综述

Health benefits of docosahexaenoic acid and its bioavailability: A review.

作者信息

Li Jia, Pora Bernard L R, Dong Ke, Hasjim Jovin

机构信息

Roquette Management (Shanghai) Co., Ltd. R&D China Shanghai China.

出版信息

Food Sci Nutr. 2021 Jul 23;9(9):5229-5243. doi: 10.1002/fsn3.2299. eCollection 2021 Sep.

Abstract

Docosahexaenoic acid (DHA) is the predominant omega-3 long-chain polyunsaturated fatty acid found in human brain and eyes. There are a number of studies in the literature showing the health benefits of DHA. It is critical throughout all life stages from the need for fetal development, the prevention of preterm birth, and the prevention of cardiovascular disease to the improvements in the cognitive function and the eye health of adults and elderly. These benefits might be related to the modulation of gut microbiota by DHA. In addition, there are some discrepancies in the literature regarding certain health benefits of DHA, and this review is intended to explore and understand these discrepancies. Besides the variations in the DHA contents of different supplement sources, bioavailability is crucial for the efficacy of DHA supplements, which depends on several factors. For example, DHA in phospholipid and triglyceride forms are more readily to be absorbed by the body than that in ethyl ester form. In addition, dietary lipids in meals and emulsification of DHA oil can increase the bioavailability of DHA. Estrogens stimulated the biosynthesis of DHA, whereas testosterone stimulus induced a decrease in DHA. The roles of DHA through human lifespan, the sources, and its recommended daily intake in different countries are also discussed to provide a better understanding of the importance of this review.

摘要

二十二碳六烯酸(DHA)是在人类大脑和眼睛中发现的主要ω-3长链多不饱和脂肪酸。文献中有多项研究表明DHA对健康有益。从胎儿发育需求、预防早产、预防心血管疾病到改善成年人及老年人的认知功能和眼部健康,DHA在所有生命阶段都至关重要。这些益处可能与DHA对肠道微生物群的调节有关。此外,关于DHA的某些健康益处,文献中存在一些差异,本综述旨在探讨和理解这些差异。除了不同补充剂来源中DHA含量的差异外,生物利用度对DHA补充剂的功效至关重要,这取决于几个因素。例如,磷脂和甘油三酯形式的DHA比乙酯形式的DHA更容易被人体吸收。此外,膳食中的膳食脂质和DHA油的乳化可以提高DHA的生物利用度。雌激素刺激DHA的生物合成,而睾酮刺激则导致DHA减少。还讨论了DHA在人类整个生命周期中的作用、来源及其在不同国家的推荐每日摄入量,以便更好地理解本综述的重要性。

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