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Docosahexaenoic Acid (DHA): An Ancient Nutrient for the Modern Human Brain

机译:二十二碳六烯酸(DHA):现代人脑的古代营养物质

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Modern humans have evolved with a staple source of preformed docosahexaenoic acid (DHA) in the diet. An important turning point in human evolution was the discovery of high-quality, easily digested nutrients from coastal seafood and inland freshwater sources. Multi-generational exploitation of seafood by shore-based dwellers coincided with the rapid expansion of grey matter in the cerebral cortex, which characterizes the modern human brain. The DHA molecule has unique structural properties that appear to provide optimal conditions for a wide range of cell membrane functions. This has particular implications for grey matter, which is membrane-rich tissue. An important metabolic role for DHA has recently been identified as the precursor for resolvins and protectins. The rudimentary source of DHA is marine algae; therefore it is found concentrated in fish and marine oils. Unlike the photosynthetic cells in algae and higher plants, mammalian cells lack the specific enzymes required for the de novo synthesis of alpha-linolenic acid (ALA), the precursor for all omega-3 fatty acid syntheses. Endogenous synthesis of DHA from ALA in humans is much lower and more limited than previously assumed. The excessive consumption of omega-6 fatty acids in the modern Western diet further displaces DHA from membrane phospholipids. An emerging body of research is exploring a unique role for DHA in neurodevelopment and the prevention of neuropsychiatric and neurodegenerative disorders. DHA is increasingly being added back into the food supply as fish oil or algal oil supplementation.
机译:现代人类已经在饮食中使用了预先形成的二十二碳六烯酸(DHA)的主要来源。人类进化的一个重要转折点是从沿海海鲜和内陆淡水源中发现了优质,易消化的营养素。沿岸居民对海产品的多代开发与大脑皮层中灰质的快速膨胀相吻合,这是现代人脑的特征。 DHA分子具有独特的结构特性,似乎为广泛的细胞膜功能提供了最佳条件。这对富含膜的组织灰质有特殊的影响。 DHA的重要新陈代谢作用最近已被确认为RESOLVINS和保护素的前体。 DHA的基本来源是海藻。因此发现它集中在鱼和海洋油中。与藻类和高等植物中的光合作用细胞不同,哺乳动物细胞缺乏从头合成α-亚麻酸(ALA)(所有omega-3脂肪酸合成的前身)所需的特定酶。从人类中由ALA内源合成DHA的过程比以前设想的要低得多,并且受到的限制也更大。在现代西方饮食中,omega-6脂肪酸的过量消费进一步使DHA脱离了膜磷脂。新兴的研究机构正在探索DHA在神经发育以及预防神经精神病和神经退行性疾病中的独特作用。 DHA越来越多地作为鱼油或藻油补充品添加回食品供应中。

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