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首页> 外文期刊>Frontiers in Cell and Developmental Biology >2-Hydroxy-Docosahexaenoic Acid Is Converted Into Heneicosapentaenoic Acid via α-Oxidation: Implications for Alzheimer’s Disease Therapy
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2-Hydroxy-Docosahexaenoic Acid Is Converted Into Heneicosapentaenoic Acid via α-Oxidation: Implications for Alzheimer’s Disease Therapy

机译:通过α-氧化将2-羟基二十二碳甲酸转化为丙烯辛烯酸:对阿尔茨海默病治疗的影响

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Alzheimer’s disease (AD) is a neurodegenerative disease with as yet no efficient therapies, the pathophysiology of which is still largely unclear. Many drugs and therapies have been designed and developed in the past decade to stop or slow down this neurodegenerative process, although none has successfully terminated a phase-III clinical trial in humans. Most therapies have been inspired by the amyloid cascade hypothesis, which has more recently come under question due to the almost complete failure of clinical trials of anti-amyloid/tau therapies to date. To shift the perspective for the design of new AD therapies, membrane lipid therapy has been tested, which assumes that brain lipid alterations lie upstream in the pathophysiology of AD. A hydroxylated derivative of docosahexaenoic acid was used, 2-hydroxy-docosahexaenoic acid (DHA-H), which has been tested in a number of animal models and has shown efficacy against hallmarks of AD pathology. Here, for the first time, DHA-H is shown to undergo α-oxidation to generate the heneicosapentaenoic acid (HPA, C21:5, n-3) metabolite, an odd-chain omega-3 polyunsaturated fatty acid that accumulates in cell cultures, mouse blood plasma and brain tissue upon DHA-H treatment, reaching higher concentrations than those of DHA-H itself. Interestingly, DHA-H does not share metabolic routes with its natural analog DHA (C22:6, n-3) but rather, DHA-H and DHA accumulate distinctly, both having different effects on cell fatty acid composition. This is partly explained because DHA-H α-hydroxyl group provokes steric hindrance on fatty acid carbon 1, which in turn leads to diminished incorporation into cell lipids and accumulation as free fatty acid in cell membranes. Finally, DHA-H administration to mice elevated the brain HPA levels, which was directly and positively correlated with cognitive spatial scores in AD mice, apparently in the absence of DHA-H and without any significant change in brain DHA levels. Thus, the evidence presented in this work suggest that the metabolic conversion of DHA-H into HPA could represent a key event in the therapeutic effects of DHA-H against AD.
机译:阿尔茨海默病(AD)是一种神经变性疾病,尚未有效疗法,其病理生理学仍然很大程度上尚不清楚。在过去的十年里,许多药物和疗法已经设计和开发,以停止或减缓这种神经变性过程,尽管没有成功终止了人类的III期临床试验。大多数疗法都受到淀粉样级级级假设的启发,这是由于迄今为止抗淀粉样疗法疗法的临床试验几乎完全失败,最近受到了问题。为了改变新广告疗法的设计的角度,已经过测试了膜脂质疗法,这假设脑脂改变在广告的病理生理学中的上游。使用二烷己烯酸的羟基化衍生物,2-羟基二十二碳甲酸(DHA-H),已经在许多动物模型中进行了测试,并显示了针对广告病理学的标志的功效。在此,首次显示DHA-H经历α-氧化以产生丙烯辛醚烯酸(HPA,C21:5,N-3)代谢物,奇数链Omega-3多不饱和脂肪酸积聚在细胞培养物中,小鼠血浆和脑组织在DHA-H治疗后,达到浓度高于DHA-H本身的浓度。有趣的是,DHA-H不与其天然模拟DHA(C22:6,N-3)共享代谢途径,而是,DHA-H和DHA明显积累,两者都对细胞脂肪酸组合物具有不同的影响。部分解释是因为DHA-Hα-羟基引起脂肪酸碳1上的空间阻力,这又导致将掺入细胞脂质和作为细胞膜中的游离脂肪酸的积累掺入。最后,DHA-H给小鼠施用于脑HPA水平,直接且与广告小鼠的认知空间评分直接相关,显然在没有DHA-H并且没有任何显着变化的脑DHA水平。因此,本作作品中提出的证据表明,DHA-H进入HPA的代谢转化可以代表DHA-H对广告的治疗效果的关键事件。

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