Regulation of microRNA with food. Part 1. Food of plant origin

A.E. Abaturov, V.L. Babуch
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Abstract

Тhe scientific review presents the mechanisms of microRNA regulation of biological processes in the human body with the help of food products of plant origin. To write the article, information was searched using Scopus, Web of Science, MedLine, PubMed, Google Scholar, EMBASE, Global Health, The Cochrane Library databases. The obtained information on dietary microRNAs is organized into the Dietary MicroRNA Databases (http://sbbi.unl.edu/dmd/), which is a repository for archiving and analyzing structural and functional microRNAs that enter the human body with food. It is stated that exogenous plant miRNAs entering the body with food are present in blood serum, tissues of humans and various animals, and regulate the expression of target genes. More than 50 miRNAs of plant origin have been identified in human blood serum using next-generation sequencing. The authors list some representatives from the multitude of dietary plant miRNAs. It is emphasized that several miRNAs show their functional activity both in plants and in mammals and easily overcome physiological barriers (miR-155, miR-168 and miR-854). Scientists believe that the ambiguous effect of plant products on the expression of human microRNA was shown by the results of a study conducted in vegetarians. Thus, with a comprehensive review using the latest information search databases, it was found that in modern scientific literature, the authors determine the horizontal transfer of numerous microRNA molecules from plants to the human body. Exogenous xenogenic xenomiRs are identified in most samples of human tissues and biological fluids. Entering the body together with food, they can significantly change the structure of the human transcriptome. Food products not only bring xenogeneic miRNAs, but also act as modulators of the endogenous miRNA generation by cells of the human body.
食物对microRNA的调控。第1部分。植物性食品
Тhe科学评论介绍了microRNA在植物性食品的帮助下调控人体生物过程的机制。为了撰写这篇文章,我们使用Scopus、Web of Science、MedLine、PubMed、Google Scholar、EMBASE、Global Health、Cochrane Library等数据库进行了信息搜索。获得的膳食MicroRNA信息被组织到膳食MicroRNA数据库(http://sbbi.unl.edu/dmd/)中,该数据库是一个存储库,用于存档和分析随食物进入人体的结构和功能MicroRNA。研究表明,外源植物mirna随食物进入机体,存在于人及多种动物的血清、组织中,并调节靶基因的表达。利用新一代测序技术,已在人血清中鉴定出50多种植物源性mirna。作者从众多的膳食植物mirna中列出了一些代表。有几个mirna在植物和哺乳动物中都显示出功能活性,并且很容易克服生理障碍(miR-155, miR-168和miR-854)。科学家们认为,一项对素食者进行的研究结果表明,植物产品对人类microRNA表达的模糊影响。因此,通过使用最新的信息检索数据库进行综合审查,发现在现代科学文献中,作者确定了许多microRNA分子从植物到人体的水平转移。在大多数人体组织和生物体液样本中发现了外源性异种染色体。它们与食物一起进入人体,可以显著改变人类转录组的结构。食品不仅能带来异种miRNA,还能作为人体细胞内源性miRNA生成的调节剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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