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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The hydroxylated form of docosahexaenoic acid (DHA-H) modifies the brain lipid composition in a model of Alzheimer's disease, improving behavioral motor function and survival
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The hydroxylated form of docosahexaenoic acid (DHA-H) modifies the brain lipid composition in a model of Alzheimer's disease, improving behavioral motor function and survival

机译:二十二碳酸(DHA-H)的羟基化形式改变阿尔茨海默病的模型中的脑脂组合物,改善行为运动功能和生存

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摘要

Abstract We have compared the effect of the commonly used ω-3 fatty acid, docosahexaenoic acid ethyl ester (DHA-EE), and of its 2-hydroxylated DHA form (DHA-H), on brain lipid composition, behavior and lifespan in a new human transgenic Drosophila melanogaster model of Alzheimer's disease (AD). The transgenic flies expressed human Aβ42 and tau, and the overexpression of these human transgenes in the CNS of these flies produced progressive defects in motor function (antigeotaxic behavior) while reducing the animal's lifespan. Here, we demonstrate that both DHA-EE and DHA-H increase the longer chain fatty acids (≥ 18C) species in the heads of the flies, although only DHA-H produced an unknown chromatographic peak that corresponded to a non-hydroxylated lipid. In addition, only treatment with DHA-H prevented the abnormal climbing behavior and enhanced the lifespan of these transgenic flies. These benefits of DHA-H were confirmed in the well characterized transgenic PS1/APP mouse model of familial AD (5xFAD mice), mice that develop defects in spatial learning and in memory, as well as behavioral deficits. Hence, it appears that the modulation of brain lipid composition by DHA-H could have remedial effects on AD associated neurodegeneration. This article is part of a Special Issue entitled: Membrane Lipid Therapy: Drugs Targeting Biomembranes edited by Pablo V. Escribá. ]]>
机译:摘要我们已经比较了常用的ω-3脂肪酸,二十二碳甲酸乙酯(DHA-EE)和其2-羟基化DHA形式(DHA-H)的效果,在脑脂质组合物,行为和寿命中阿尔茨海默病(广告)的新人转基因果蝇。转基因苍蝇表达了人Aβ42和Tau,并且这些人转基因在这些中的CNS中的过度表达在这些苍蝇中产生了逐渐缺陷,同时减少了动物的寿命。在这里,我们证明DHA-EE和DHA-H两者均在恒星的头部增加较长的链脂肪酸(≥18C)种类,尽管仅DHA-H产生了与非羟基化脂质相对应的未知的色谱峰。此外,只有DHA-H治疗,防止了异常攀爬行为,并增强了这些转基因苍蝇的寿命。 DHA-H对DHA-H的这些益处被证实在特征性的转基因PS1 / APP鼠标模型中,小鼠,在空间学习和记忆中发展缺陷,以及行为赤字。因此,似乎DHA-H对脑脂组合物的调节可能对AD相关的神经变性进行补救效果。本文是标题的特殊问题的一部分:膜脂质疗法:靶向PabloV.Scribá编辑的生物膜的药物。 ]]>

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