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膳食植物 miRNA 的跨界调控:基于证据的综述及最新进展

Cross-kingdom regulation by dietary plant miRNAs: an evidence-based review with recent updates.

机构信息

National Engineering Laboratory for Deep Process of Rice and Byproducts, Hunan Province Key Laboratory of Edible forestry Resources Safety and Processing Utilization, College of Food Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, Hunan, China.

College of Light Industry and Food Sciences, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, Guangdong, China.

出版信息

Food Funct. 2021 Oct 19;12(20):9549-9562. doi: 10.1039/d1fo01156a.

Abstract

As non-coding RNA molecules, microRNAs (miRNAs) are widely known for their critical role in gene regulation. Recent studies have shown that plant miRNAs obtained through dietary oral administration can survive in the gastrointestinal (GI) tract, enter the circulatory system and regulate endogenous mRNAs. Diet-derived plant miRNAs have 2'--methylated modified 3'ends and high cytosine and guanine (GC) content, as well as exosomal packaging, which gives them high stability even in the harsh environment of the digestive system and circulatory system. The latest evidence shows that dietary plant miRNAs can not only be absorbed in the intestine, but also be absorbed and packaged by gastric epithelial cells and then secreted into the circulatory system. Alternatively, these biologically active plant-derived miRNAs may also affect the health of the host by affecting the function of the microbiome, while not need to be taken into the host's circulatory system and transferred to remote tissues. This cross-kingdom regulation of miRNAs gives us hope for exploring their therapeutic potential and as dietary supplements. However, doubts have also been raised about the cross-border regulation of miRNAs, suggesting that technical flaws in the experiments may have led to this hypothesis. In this article, we summarize the visibility of dietary plant miRNAs in the development of human health and recent research data on their use in therapeutics. The regulation of plant miRNAs across kingdoms is a novel concept. Continued efforts in this area will broaden our understanding of the biological role of plant miRNAs and will open the way for the development of new approaches to prevent or treat human diseases.

摘要

作为非编码 RNA 分子,microRNAs(miRNAs)因其在基因调控中的关键作用而广为人知。最近的研究表明,通过饮食口服获得的植物 miRNAs 可以在胃肠道(GI)中存活,进入循环系统并调节内源性 mRNAs。饮食来源的植物 miRNAs 具有 2'--甲基化修饰的 3'端和高胞嘧啶和鸟嘌呤(GC)含量,以及外泌体包装,这使它们即使在消化系统和循环系统的恶劣环境中也具有很高的稳定性。最新证据表明,饮食来源的植物 miRNAs 不仅可以在肠道中被吸收,还可以被胃上皮细胞吸收和包装,然后分泌到循环系统中。或者,这些具有生物活性的植物源性 miRNA 可能通过影响微生物组的功能来影响宿主的健康,而无需进入宿主的循环系统并转移到远处的组织。miRNAs 的这种跨领域调节给我们带来了探索其治疗潜力和作为饮食补充剂的希望。然而,人们对 miRNA 的跨界调节也提出了质疑,这表明实验中的技术缺陷可能导致了这一假设。在本文中,我们总结了饮食来源的植物 miRNAs 在人类健康发展中的可见性以及它们在治疗中的最新研究数据。miRNAs 跨领域的调节是一个新概念。在这一领域的持续努力将拓宽我们对植物 miRNAs 生物学作用的理解,并为开发预防或治疗人类疾病的新方法开辟道路。

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