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Comparative lipidomics of mouse brain exposed to enriched environment

机译:暴露于丰富环境的小鼠大脑的比较脂质组学

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摘要

Several studies have shown that housing conditions and environmental exposure to a series of stimuli lead to behavior improvement in several species. While more works have been focused on illustrating changes of the proteome and transcriptome following enriched environment exposure in mice, little has been done to understand changes in the brain metabolome in this paradigm due to the complexity of this type of analysis. In this paper, lipidomics focused on phospholipids and gangliosides were conducted for brain tissues of mice exposed to enriched or impoverished conditions. We optimized previously reported method and established a reliable relative comparison method for phospholipids and gangliosides in brain tissue using prefractionation with weak anion exchange cartridge. We used liquid chromatography mass spectrometry to explore metabolic signatures of the cerebral cortex and hippocampus after confirming the animals had significant memory differences using the fear conditioning paradigm and brain immunohistochemistry. Although both cerebral cortex and hippocampus regions did not show major alterations in ganglioside composition, we found significant differences in a series of phospholipids containing 22:6 fatty acid in the prefrontal cortex, indicating that environmental enrichment and impoverished housing conditions might be a relevant paradigm to study aberrant lipid metabolism of docosahexaenoic acid consumption. Our study highlights the hypothesis-generating potential of lipidomics and identifies novel region-specific lipid changes possibly linked not only to change of memory function in these models, but also to help us better understand how lipid changes may contribute to memory disorders.
机译:多项研究表明,住房条件和环境受到一系列刺激会导致几种物种的行为改善。尽管更多的工作集中在说明富集环境暴露于小鼠中后蛋白质组和转录组的变化,但由于这种分析的复杂性,在这种范例中几乎没有做过了解脑代谢组变化的工作。在本文中,针对暴露于富集或贫困条件的小鼠的脑组织进行了脂质组学研究,重点研究了磷脂和神经节苷脂。我们优化了先前报道的方法,并建立了使用弱阴离子交换盒预分级分离脑组织中磷脂和神经节苷脂的可靠相对比较方法。在使用恐惧条件范式和脑免疫组织化学方法确认动物具有明显的记忆差异后,我们使用液相色谱质谱法探索了大脑皮层和海马的代谢特征。尽管大脑皮层和海马区均未显示神经节苷脂组成的主要变化,但我们发现前额叶皮层中一系列含有22:6脂肪酸的磷脂存在显着差异,这表明环境富集和居住条件差可能是与之相关的范例。研究二十二碳六烯酸消耗的脂质代谢异常。我们的研究突出了脂质组学的假说产生潜力,并确定了可能与这些模型中的记忆功能变化有关的新颖的区域特异性脂质变化,还有助于我们更好地了解脂质变化如何可能导致记忆障碍。

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