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首页> 外文期刊>Molecules >Promiscuous Effects of Some Phenolic Natural Products on Inflammation at Least in Part Arise from Their Ability to Modulate the Expression of Global Regulators, Namely microRNAs
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Promiscuous Effects of Some Phenolic Natural Products on Inflammation at Least in Part Arise from Their Ability to Modulate the Expression of Global Regulators, Namely microRNAs

机译:某些酚类天然产物对炎症的混杂效应至少部分来自其调节全局调节剂(即微RNA)表达的能力。

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摘要

Recent years have seen the exploration of a puzzling number of compounds found in human diet that could be of interest for prevention or treatment of various pathologies. Although many of these natural products (NPs) have long been used as remedies, their molecular effects still remain elusive. With the advent of biotechnology revolution, NP studies turned from chemistry and biochemistry toward global analysis of gene expression. Hope is to use genetics to identify groups of patient for whom certain NPs or their derivatives may offer new preventive or therapeutic treatments. Recently, microRNAs have gained the statute of global regulators controlling cell homeostasis by regulating gene expression through genetic and epigenetic regulatory loops. Realization that certain plant polyphenols can modify microRNA expression and thus impact gene expression globally, initiated new, mainly in vitro studies, in particular to determine phytochemicals effects on inflammatory response, whose exacerbation has been linked to several disorders including cancer, auto-immune, metabolic, cardiovascular and neuro-inflammatory diseases. However, very few mechanistic insights have been provided, given the complexity of genetic regulatory networks implicated. In this review, we will concentrate on data showing the potential interest of some plant polyphenols in manipulating the expression of pro- and anti-inflammatory microRNAs in pathological conditions. View Full-Text
机译:近年来,人们发现了在人类饮食中发现的令人费解的化合物,这些化合物可能对于预防或治疗各种病理学很重要。尽管许多此类天然产物(NP)长期以来一直被用作药物,但它们的分子作用仍然难以捉摸。随着生物技术革命的到来,NP研究从化学和生物化学转向了基因表达的整体分析。希望是利用遗传学来识别某些NP或它们的衍生物可以提供新的预防或治疗方法的患者群体。最近,microRNA通过通过遗传和表观遗传调控环调控基因表达,获得了控制细胞稳态的全球调控器。认识到某些植物多酚可以修饰microRNA表达并因此影响全球基因表达,因此开展了新的,主要是体外研究,尤其是确定植物化学物质对炎症反应的影响,炎症的加剧与多种疾病相关,包括癌症,自身免疫,代谢,心血管和神经炎性疾病。然而,鉴于所涉及的遗传调控网络的复杂性,很少提供机械学的见解。在这篇综述中,我们将集中于显示某些植物多酚在病理条件下操纵促炎性和消炎性microRNA表达的潜在兴趣的数据。查看全文

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