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巴旦木奶和磷虾油对老年大鼠海马 miRNA 表达的调节。

Modulation of miRNA expression in aged rat hippocampus by buttermilk and krill oil.

机构信息

Bioactive Ingredients Food Group, IMDEA Food, Madrid, 28049, Spain.

Servicio de Bioquímica Investigación, Hospital Universitario Ramón y Cajal, Madrid, 28034, Spain.

出版信息

Sci Rep. 2018 Mar 5;8(1):3993. doi: 10.1038/s41598-018-22148-5.

Abstract

The increasing incidence of age-induced cognitive decline justifies the search for complementary ways of prevention or delay. We studied the effects of concentrates of phospholipids, sphingolipids, and/or 3-n fatty acids on the expression of genes or miRNAs related to synaptic activity and/or neurodegeneration, in the hippocampus of aged Wistar rats following a 3-month supplementation. The combination of two phospholipidic concentrates of krill oil (KOC) and buttermilk (BMFC) origin modulated the hippocampal expression of 119 miRNAs (11 were common to both BMFC and BMFC + KOC groups). miR-191a-5p and miR-29a-3p changed significantly only in the BMFC group, whereas miR-195-3p and miR-148a-5p did so only in the combined-supplemented group. Thirty-eight, 58, and 72 differentially expressed genes (DEG) were found in the groups supplemented with KOC, BMFC and BMFC + KOC, respectively. Interaction analysis unveiled networks of selected miRNAs with their potential target genes. DEG found in the KOC and BMFC groups were mainly involved in neuroactive processes, whereas they were associated with lysosomes and mRNA surveillance pathways in the BMFC + KOC group. We also report a significant reduction in hippocampal ceramide levels with BMFC + KOC. Our results encourage additional in-depth investigations regarding the potential beneficial effects of these compounds.

摘要

随着年龄相关认知能力下降发病率的增加,有必要寻找预防或延缓的补充方法。我们研究了磷脂、鞘脂和/或 3-n 脂肪酸浓缩物对 3 个月补充后老年 Wistar 大鼠海马中与突触活动和/或神经退行性变相关的基因或 miRNA 表达的影响。两种磷酯浓缩物(来自磷虾油(KOC)和白脱乳(BMFC)的混合物)的组合调节了 119 种 miRNA 的海马表达(11 种 miRNA 在 BMFC 和 BMFC+KOC 组中均存在)。miR-191a-5p 和 miR-29a-3p 仅在 BMFC 组中显著变化,而 miR-195-3p 和 miR-148a-5p 仅在联合补充组中变化。在补充 KOC、BMFC 和 BMFC+KOC 的组中分别发现了 38、58 和 72 个差异表达基因(DEG)。相互作用分析揭示了选定 miRNA 与其潜在靶基因的网络。在 KOC 和 BMFC 组中发现的 DEG 主要参与神经活性过程,而在 BMFC+KOC 组中与溶酶体和 mRNA 监测途径相关。我们还报告了 BMFC+KOC 可显著降低海马神经酰胺水平。我们的研究结果鼓励进一步深入研究这些化合物的潜在有益作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cb2/5838111/e13958cd90ed/41598_2018_22148_Fig1_HTML.jpg

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