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Omega-3 fatty acids upregulate adult neurogenesis.

机译:Omega-3脂肪酸上调成人神经发生。

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Omega-3 fatty acids play crucial roles in the development and function of the central nervous system. These components, which must be obtained from dietary sources, have been implicated in a variety of neurodevelopmental and psychiatric disorders. Furthermore, the presence of omega-6 fatty acids may interfere with omega-3 fatty acid metabolism. The present study investigated whether changes in dietary ratios of omega-3:omega-6 fatty acids influence neurogenesis in the lobster (Homarus americanus) brain where, as in many vertebrate species, neurogenesis persists throughout life. The factors that regulate adult neurogenesis are highly conserved among species, and the crustacean brain has been successfully utilized as a model for investigating this process. In this study, lobsters were fed one of three diets that differed in fatty acid content. These animals were subsequently incubated in 5-bromo-2'-deoxyuridine (BrdU) to detect cells in S-phase of the cell cycle. A quantitative analysis of the resulting BrdU-labeled cells in the projection neuron cluster in the brain shows that short-term augmentation of dietary omega-3 relative to omega-6 fatty acids results in significant increases in the numbers of S phase cells, and that the circadian pattern of neurogenesis is also altered. It is proposed that the ratio of omega-3:omega-6 fatty acids may alter neurogenesis via modulatory influences on membrane proteins, cytokines and/or neurotrophins.
机译:Omega-3脂肪酸在中枢神经系统的发育和功能中起着至关重要的作用。这些必须从饮食中获取的成分与多种神经发育和精神疾病有关。此外,omega-6脂肪酸的存在可能会干扰omega-3脂肪酸的代谢。本研究调查了饮食中omega-3:omega-6脂肪酸比例的变化是否会影响龙虾(Homarus americanus)脑中的神经发生,而在许多脊椎动物中,龙虾的大脑在整个生命中都持续存在。调节成年神经发生的因素在物种中高度保守,并且甲壳动物脑已被成功地用作研究该过程的模型。在这项研究中,龙虾被喂食三种脂肪酸含量不同的饮食之一。随后将这些动物在5-溴-2'-脱氧尿苷(BrdU)中孵育,以检测处于细胞周期S期的细胞。对大脑投射神经元簇中的BrdU标记的细胞进行定量分析表明,相对于omega-6脂肪酸,饮食中omega-3的短期增加会导致S期细胞数量显着增加,并且神经发生的昼夜节律也改变了。有人提出,omega-3:omega-6脂肪酸的比例可能通过对膜蛋白,细胞因子和/或神经营养蛋白的调节作用而改变神经发生。

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