Department of Chemistry, School of Sciences and Engineering, The American University in Cairo, Cairo, Egypt.
Department of Pharmacology and Toxicology, Faculty of Pharmacy, The British University in Egypt, Cairo, Egypt.
Front Immunol. 2021 Mar 26;12:606069. doi: 10.3389/fimmu.2021.606069. eCollection 2021.
Innate immune response induces positive inflammatory transducers and regulators in order to attack pathogens, while simultaneously negative signaling regulators are transcribed to maintain innate immune homeostasis and to avoid persistent inflammatory immune responses. The gene expression of many of these regulators is controlled by different epigenetic modifications. The remarkable impact of epigenetic changes in inducing or suppressing inflammatory signaling is being increasingly recognized. Several studies have highlighted the interplay of histone modification, DNA methylation, and post-transcriptional miRNA-mediated modifications in inflammatory diseases, and inflammation-mediated tumorigenesis. Targeting these epigenetic alterations affords the opportunity of attenuating different inflammatory dysregulations. In this regard, many studies have identified the significant anti-inflammatory properties of distinct naturally-derived phytochemicals, and revealed their regulatory capacity. In the current review, we demonstrate the signaling cascade during the immune response and the epigenetic modifications that take place during inflammation. Moreover, we also provide an updated overview of phytochemicals that target these mechanisms in macrophages and other experimental models, and go on to illustrate the effects of these phytochemicals in regulating epigenetic mechanisms and attenuating aberrant inflammation.
先天免疫反应诱导正向炎症转录因子和调节因子以攻击病原体,同时转录负向信号调节因子以维持先天免疫稳态并避免持续的炎症免疫反应。这些调节因子的许多基因表达受不同的表观遗传修饰控制。越来越多的研究表明,表观遗传变化在诱导或抑制炎症信号方面具有显著影响。一些研究强调了组蛋白修饰、DNA 甲基化和转录后 miRNA 介导的修饰在炎症性疾病和炎症介导的肿瘤发生中的相互作用。针对这些表观遗传改变为减轻不同的炎症失调提供了机会。在这方面,许多研究已经确定了多种天然植物化学物质的显著抗炎特性,并揭示了它们的调节能力。在本综述中,我们展示了免疫反应过程中的信号级联和炎症过程中发生的表观遗传修饰。此外,我们还提供了针对巨噬细胞和其他实验模型中这些机制的植物化学物质的最新概述,并进一步说明了这些植物化学物质在调节表观遗传机制和减轻异常炎症方面的作用。