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肠道 microRNA 响应膳食脂质的调节。

Intestinal miRNAs regulated in response to dietary lipids.

机构信息

Laboratory of Epigenetics of Lipid Metabolism, Madrid Institute for Advanced Studies Food (IMDEA Food), CEI UAM + CSIC, Carretera de Canto Blanco, 8, 28049, Madrid, Spain.

Laboratory of Functional Foods, Madrid Institute for Advanced Studies Food (IMDEA Food), CEI UAM CSIC, 28049, Madrid, Spain.

出版信息

Sci Rep. 2020 Nov 3;10(1):18921. doi: 10.1038/s41598-020-75751-w.

Abstract

The role of miRNAs in intestinal lipid metabolism is poorly described. The small intestine is constantly exposed to high amounts of dietary lipids, and it is under conditions of stress that the functions of miRNAs become especially pronounced. Approaches consisting in either a chronic exposure to cholesterol and triglyceride rich diets (for several days or weeks) or an acute lipid challenge were employed in the search for intestinal miRNAs with a potential role in lipid metabolism regulation. According to our results, changes in miRNA expression in response to fat ingestion are dependent on factors such as time upon exposure, gender and small intestine section. Classic and recent intestinal in vitro models (i.e. differentiated Caco-2 cells and murine organoids) partially mirror miRNA modulation in response to lipid challenges in vivo. Moreover, intestinal miRNAs might play a role in triglyceride absorption and produce changes in lipid accumulation in intestinal tissues as seen in a generated intestinal Dicer1-deletion murine model. Overall, despite some variability between the different experimental cohorts and in vitro models, results show that some miRNAs analysed here are modulated in response to dietary lipids, hence likely to participate in the regulation of lipid metabolism, and call for further research.

摘要

miRNAs 在肠道脂质代谢中的作用描述得还不够充分。小肠不断暴露于大量膳食脂质中,正是在应激条件下,miRNAs 的功能变得尤为明显。在寻找可能参与脂质代谢调节的肠道 miRNA 时,人们采用了慢性暴露于富含胆固醇和甘油三酯的饮食(数天或数周)或急性脂质挑战的方法。根据我们的研究结果,miRNA 表达的变化对脂肪摄入的反应取决于暴露时间、性别和小肠段等因素。经典和最近的肠道体外模型(即分化的 Caco-2 细胞和鼠类类器官)部分反映了体内脂质挑战对 miRNA 调节的反应。此外,肠道 miRNAs 可能在甘油三酯吸收中发挥作用,并在肠道组织中产生脂质积累的变化,就像在生成的肠道 Dicer1 缺失鼠模型中观察到的那样。总的来说,尽管不同的实验队列和体外模型之间存在一些差异,但结果表明,这里分析的一些 miRNA 会对膳食脂质做出反应,因此可能参与脂质代谢的调节,并需要进一步研究。

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