Gourdie Robert G, Dimmeler Stefanie, Kohl Peter
Center for Heart and Regenerative Medicine Research, Virginia Tech Carilion Research Institute, Roanoke, 2 Riverside Circle, Virginia 24016, USA.
Virginia Tech-Wake Forest University School of Biomedical Engineering and Sciences, Kelly Hall, 325 Stanger Street, Blacksburg, Virginia 24061, USA.
Nat Rev Drug Discov. 2016 Sep;15(9):620-638. doi: 10.1038/nrd.2016.89. Epub 2016 Jun 24.
Our understanding of the functions of cardiac fibroblasts has moved beyond their roles in heart structure and extracellular matrix generation and now includes their contributions to paracrine, mechanical and electrical signalling during ontogenesis and normal cardiac activity. Fibroblasts also have central roles in pathogenic remodelling during myocardial ischaemia, hypertension and heart failure. As key contributors to scar formation, they are crucial for tissue repair after interventions including surgery and ablation. Novel experimental approaches targeting cardiac fibroblasts are promising potential therapies for heart disease. Indeed, several existing drugs act, at least partially, through effects on cardiac connective tissue. This Review outlines the origins and roles of fibroblasts in cardiac development, homeostasis and disease; illustrates the involvement of fibroblasts in current and emerging clinical interventions; and identifies future targets for research and development.
我们对心脏成纤维细胞功能的理解已超越其在心脏结构和细胞外基质生成中的作用,现在还包括它们在个体发育和正常心脏活动期间对旁分泌、机械和电信号传导的贡献。成纤维细胞在心肌缺血、高血压和心力衰竭等致病重塑过程中也起着核心作用。作为瘢痕形成的关键因素,它们对于包括手术和消融在内的干预后的组织修复至关重要。针对心脏成纤维细胞的新型实验方法有望成为心脏病的潜在治疗方法。事实上,几种现有药物至少部分是通过对心脏结缔组织的作用来发挥功效的。本综述概述了成纤维细胞在心脏发育、稳态和疾病中的起源及作用;阐述了成纤维细胞在当前及新兴临床干预中的参与情况;并确定了未来的研发靶点。