School of Engineering and Materials Science, Queen Mary University of London, London, UK.
Cardiovasc Drugs Ther. 2024 Apr;38(2):215-222. doi: 10.1007/s10557-022-07422-z. Epub 2023 Jan 18.
The local mechanical microenvironment impacts on the cell behavior. In the cardiovascular system, cells in both the heart and the vessels are exposed to continuous blood flow, blood pressure, stretching forces, and changing extracellular matrix stiffness. The force-induced signals travel all the way to the nucleus regulating epigenetic changes such as chromatin dynamics and gene expression. Mechanical cues are needed at the very early stage for a faultless embryological development, while later in life, aberrant mechanical signaling can lead to a range of pathologies, including diverse cardiovascular diseases. Hence, an investigation of force-generated epigenetic alteration at different time scales is needed to understand fully the phenotypic changes in disease onset and progression. That being so, cardiovascular mechano-epigenetics emerges as an attractive field of study. Given the rapid advances in this emergent field of research, this short review aims to provide an analysis of the state of knowledge of force-induced epigenetic changes in the cardiovascular field.
局部机械微环境会对细胞行为产生影响。在心血管系统中,心脏和血管中的细胞会持续受到血流、血压、拉伸力和不断变化的细胞外基质硬度的影响。力诱导信号一直传递到细胞核,调节表观遗传变化,如染色质动力学和基因表达。在胚胎发育的早期,机械线索是必需的,而在生命后期,异常的机械信号会导致一系列病理,包括各种心血管疾病。因此,需要在不同的时间尺度上研究力引起的表观遗传改变,以充分了解疾病发生和进展中的表型变化。因此,心血管机械表观遗传学成为一个有吸引力的研究领域。鉴于这一新兴研究领域的快速发展,本综述旨在分析心血管领域力诱导表观遗传改变的知识现状。