Department of Biomolecular Sciences and Biotechnology, The PaceLab, University of Milano, via Celoria 26, 20133 Milan, Italy.
J Mol Cell Cardiol. 2010 Feb;48(2):415-23. doi: 10.1016/j.yjmcc.2009.10.006. Epub 2009 Oct 22.
Cardiac mesoangioblasts (MABs) are a class of vessel-associated clonogenic, self-renewing progenitor cells, recently identified in the post-natal murine heart and committed to cardiac differentiation. Cardiomyocytes generated during cardiogenesis from progenitor cells acquire several distinct phenotypes, corresponding to different functional properties in diverse structures of the adult heart. Given the special functional relevance to rhythm generation and rate control of sinoatrial cells, and in view of their prospective use in therapeutical applications, we sought to determine if, and to what extent, cardiac mesoangioblasts could also differentiate into myocytes with properties typical of mature pacemaker myocytes. We report here that a subpopulation of cardiac mesoangioblasts, induced to differentiate in vitro into cardiomyocytes, do acquire a phenotype with specific mature pacemaker myocytes properties. These include expression of the HCN4 isoform of pacemaker ("funny", f-) channels and connexin 45 (Cx45), as well as reduced expression of inwardly-rectifying potassium channels. Furthermore, MAB-derived myocytes form agglomerates of pacing cells displaying stable rhythmic activity, and as in native cardiac pacemaker cells, f-channel modulation by autonomic transmitters contributes to control of spontaneous rate in differentiated mesoangioblasts. These data represent the first evidence for in vitro generation of pacemaker-like myocytes from proliferating non-embryonic stem/progenitor cells.
心脏中胚层细胞(MAB)是一类与血管相关的克隆性、自我更新的祖细胞,最近在新生鼠心脏中被鉴定出来,并具有向心脏分化的特性。心脏祖细胞在心脏发生过程中生成的心肌细胞获得了几种不同的表型,对应于成年心脏不同结构的不同功能特性。鉴于窦房结细胞的节律产生和速率控制对其具有特殊的功能相关性,并且鉴于它们在治疗应用中的潜在用途,我们试图确定心脏中胚层细胞是否以及在何种程度上也能分化为具有成熟起搏细胞特性的心肌细胞。我们在这里报告说,心脏中胚层细胞的一个亚群,在体外诱导分化为心肌细胞后,确实获得了具有特定成熟起搏细胞特性的表型。这些特性包括起搏(“有趣的”,f-)通道和连接蛋白 45(Cx45)的 HCN4 同工型的表达,以及内向整流钾通道表达的减少。此外,MAB 衍生的心肌细胞形成起搏细胞的聚集体,显示出稳定的节律性活动,并且与天然心脏起搏细胞一样,自主递质对 f 通道的调节有助于控制分化的中胚层细胞中的自发速率。这些数据代表了首次从增殖的非胚胎干细胞/祖细胞体外生成起搏样心肌细胞的证据。