Institute of Cardiovascular Regeneration, Center of Molecular Medicine, Goethe University Frankfurt, Theodor-Stern-Kai 760590 Frankfurt, Germany.
German Center for Cardiovascular Research DZHK, partner site Frankfurt Rhine-Main, Germany.
Cardiovasc Res. 2022 Jan 7;118(1):53-64. doi: 10.1093/cvr/cvab047.
It is well established that the vasculature plays a crucial role in maintaining oxygen and nutrients supply to the heart. Increasing evidence further suggests that the microcirculation has additional roles in supporting a healthy microenvironment. Heart failure is well known to be associated with changes and functional impairment of the microvasculature. The specific ablation of protective signals in endothelial cells in experimental models is sufficient to induce heart failure. Therefore, restoring a healthy endothelium and microcirculation may be a valuable therapeutic strategy to treat heart failure. This review article will summarize the current understanding of the vascular contribution to heart failure with reduced or preserved ejection fraction. Novel therapeutic approaches including next generation pro-angiogenic therapies and non-coding RNA therapeutics, as well as the targeting of metabolites or metabolic signalling, vascular inflammation and senescence will be discussed.
众所周知,血管系统在维持心脏的氧气和营养供应方面起着至关重要的作用。越来越多的证据进一步表明,微循环在支持健康的微环境方面还有其他作用。众所周知,心力衰竭与微血管的变化和功能障碍有关。在实验模型中,内皮细胞中保护性信号的特异性消融足以诱导心力衰竭。因此,恢复健康的内皮细胞和微循环可能是治疗心力衰竭的一种有价值的治疗策略。本文综述了目前对射血分数降低或保留的心力衰竭中血管贡献的认识。还讨论了新型治疗方法,包括新一代促血管生成治疗和非编码 RNA 治疗,以及代谢物或代谢信号、血管炎症和衰老的靶向治疗。