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DNA microarray-based experimental strategy for trustworthy expression profiling of the hippocampal genes by astaxanthin supplementation in adult mouse

机译:基于DNA芯片的虾青素补充对成年小鼠海马基因可信赖表达谱的实验策略

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摘要

Naturally occurring astaxantin (ASX) is one of the noticeable carotenoid and dietary supplement, which has strong antioxidant and anti-inflammatory properties, and neuroprotective effects in the brain through crossing the blood–brain barrier. Specially, we are interested in the role of ASX as a brain food. Although ASX has been suggested to have potential benefit to the brain function, the underlying molecular mechanisms and events mediating such effect remain unknown. Here we examined molecular factors in the hippocampus of adult mouse fed ASX diets (0.1% and 0.5% doses) using DNA microarray (Agilent 4 × 44 K whole mouse genome chip) analysis. In this study, we described in detail our experimental workflow and protocol, and validated quality controls with the housekeeping gene expression (Gapdh and Beta-actin) on the dye-swap based approach to advocate our microarray data, which have been uploaded to Gene Expression Omnibus (accession number ) as a gene resource for the scientific community. This data will also form an important basis for further detailed experiments and bioinformatics analysis with an aim to unravel the potential molecular pathways or mechanisms underlying the positive effects of ASX supplementation on the brain, in particular the hippocampus.
机译:天然存在的虾青素(ASX)是一种值得注意的类胡萝卜素和膳食补充剂,它具有强大的抗氧化和抗炎特性,并通过跨血脑屏障对大脑具有神经保护作用。特别地,我们对ASX作为大脑食品的作用感兴趣。尽管已经提出ASX对大脑功能具有潜在的好处,但是介导这种作用的潜在分子机制和事件仍然未知。在这里,我们使用DNA微阵列(Agilent 4×44 K整个小鼠基因组芯片)分析检查了喂食ASX日粮(0.1%和0.5%剂量)的成年小鼠海马中的分子因子。在这项研究中,我们详细描述了我们的实验工作流程和协议,并通过基于染料交换的方法通过管家基因表达(Gapdh和Beta-actin)验证了质量控制,以倡导我们的微阵列数据,这些数据已上传至Gene Expression综合(登录号)作为科学界的基因资源。该数据还将为进一步详细的实验和生物信息学分析提供重要基础,以揭示潜在的分子途径或机制,这些分子或机制可能是ASX补充剂对大脑(尤其是海马体)产生积极作用的基础。

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