Sygitowicz Grażyna, Maciejak-Jastrzębska Agata, Sitkiewicz Dariusz
Department of Clinical Chemistry and Laboratory Diagnostics, Medical University of Warsaw, 02-097 Warsaw, Poland.
J Clin Med. 2021 Sep 27;10(19):4430. doi: 10.3390/jcm10194430.
The cellular and molecular mechanism involved in the pathogenesis of atrial fibrosis are highly complex. We have reviewed the literature that covers the effectors, signal transduction and physiopathogenesis concerning extracellular matrix (ECM) dysregulation and atrial fibrosis in atrial fibrillation (AF). At the molecular level: angiotensin II, transforming growth factor-β1, inflammation, and oxidative stress are particularly important for ECM dysregulation and atrial fibrotic remodelling in AF. We conclude that the Ang-II-MAPK and TGF-β1-Smad signalling pathways play a major, central role in regulating atrial fibrotic remodelling in AF. The above signalling pathways induce the expression of genes encoding profibrotic molecules (MMP, CTGF, TGF-β1). An important mechanism is also the generation of reactive oxygen species. This pathway induced by the interaction of Ang II with the ATR receptor and the activation of NADPH oxidase. Additionally, the interplay between cardiac MMPs and their endogenous tissue inhibitors of MMPs, is thought to be critical in atrial ECM metabolism and fibrosis. We also review recent evidence about the role of changes in the miRNAs expression in AF pathophysiology and their potential as therapeutic targets. Furthermore, keeping the balance between miRNA molecules exerting anti-/profibrotic effects is of key importance for the control of atrial fibrosis in AF.
心房纤维化发病机制中涉及的细胞和分子机制极为复杂。我们回顾了涵盖效应器、信号转导以及与细胞外基质(ECM)失调和心房颤动(AF)中心房纤维化相关的生理病理机制的文献。在分子水平上:血管紧张素II、转化生长因子-β1、炎症和氧化应激对于AF中ECM失调和心房纤维化重塑尤为重要。我们得出结论,Ang-II-MAPK和TGF-β1-Smad信号通路在调节AF中的心房纤维化重塑中起主要的核心作用。上述信号通路诱导编码促纤维化分子(MMP、CTGF、TGF-β1)的基因表达。一个重要机制也是活性氧的产生。该途径由Ang II与ATR受体相互作用以及NADPH氧化酶激活所诱导。此外,心脏MMP与其内源性MMP组织抑制剂之间的相互作用,被认为在心房ECM代谢和纤维化中至关重要。我们还回顾了关于miRNAs表达变化在AF病理生理学中的作用及其作为治疗靶点潜力的最新证据。此外,保持发挥抗纤维化/促纤维化作用的miRNA分子之间的平衡对于控制AF中的心房纤维化至关重要。