Picchio Vittorio, Bordin Antonella, Floris Erica, Cozzolino Claudia, Dhori Xhulio, Peruzzi Mariangela, Frati Giacomo, De Falco Elena, Pagano Francesca, Chimenti Isotta
Department of Medical Surgical Sciences and Biotechnologies, Sapienza University of Rome Italy.
Mediterranea Cardiocentro Napoli, Italy.
Am J Transl Res. 2022 Feb 15;14(2):1172-1187. eCollection 2022.
Cardiac stromal cells have been long underestimated in their functions in homeostasis and repair. Recent evidence has changed this perspective in that many more players and facets than just "cardiac fibroblasts" have entered the field. Single cell transcriptomic studies on cardiac interstitial cells have shed light on the phenotypic plasticity of the stroma, whose transcriptional profile is dynamically regulated in homeostatic conditions and in response to external stimuli. Different populations and/or functional states that appear in homeostasis and pathology have been described, particularly increasing the complexity of studying the cardiac response to injury. In this review, we outline current phenotypical and molecular markers, and the approaches developed for identifying and classifying cardiac stromal cells. Significant advances in our understanding of cardiac stromal populations will provide a deeper knowledge on myocardial functional cellular components, as well as a platform for future developments of novel therapeutic strategies to counteract cardiac fibrosis and adverse cardiac remodeling.
心脏基质细胞在稳态和修复中的功能长期以来一直被低估。最近的证据改变了这一观点,因为进入该领域的不仅仅是“心脏成纤维细胞”,还有更多的参与者和方面。对心脏间质细胞的单细胞转录组学研究揭示了基质的表型可塑性,其转录谱在稳态条件下和对外部刺激的反应中受到动态调节。已经描述了在稳态和病理状态下出现的不同细胞群和/或功能状态,这尤其增加了研究心脏对损伤反应的复杂性。在这篇综述中,我们概述了当前的表型和分子标志物,以及用于识别和分类心脏基质细胞的方法。我们对心脏基质细胞群理解的重大进展将为心肌功能细胞成分提供更深入的认识,并为对抗心脏纤维化和不良心脏重塑的新型治疗策略的未来发展提供一个平台。