Department of Biotechnologies and Biosciences, University of Milano-Bicocca, p.za della Scienza 2, 20126, Milan, Italy.
Basic Res Cardiol. 2010 Nov;105(6):737-49. doi: 10.1007/s00395-010-0111-6. Epub 2010 Jul 23.
Cardiac progenitor cells (CPCs), migrating from heart tissue, in culture aggregate to form cardiospheres (CSs) in which replication and cardiogenic differentiation occur. However, the frequency of functional differentiation in CSs and the role of cell clustering in supporting it remain to be established. The aim of our study is to quantify differentiation of a muscle-type Ca(2+) release mechanism in CS-derived cells, correlate it with cardiac differentiation markers and test its dependency on CS formation. CPCs migrating from murine cardiac explants were studied prior and after CSs formation (Pre-CS and Post-CS). Inducibility of RyR- and IP3-R-mediated Ca(2+) transients in individual cells was tested by exposure to caffeine and ATP, respectively; expression of cardiac and non-cardiac lineage markers was assessed. Caffeine responsiveness was negligible in Pre-CS cells and increased by 7.5 fold in Post-CS cells (3.6 vs. 26.9%; p < 0.05), and was closely correlated with activation of the cardiac TnI gene promoter. ATP-induced responses, frequent in Pre-CS (86%), were slightly increased in Post-CS cells (94%; p < 0.05). Expression of cardiac-specific Ca(2+)-handling proteins (Cav1.2, NCX1, RyR2, SERCA2a) was either limited to the Post-CS stage, or markedly enhanced. CS beating was infrequent, but its pharmacology was compatible with cardiac excitation-contraction coupling. Expression of non-cardiac lineage was low in general, and similar between Pre- and Post-CS cells. Culture conditions inhibiting CSs formation prevented the increase in caffeine responders. In conclusion, clustering in CSs leads to the induction of a muscle-specific functional response in about 30% of CPCs; this is accompanied by development of a cardiac-specific expression pattern.
心脏祖细胞(CPCs)从心脏组织迁移,在培养中聚集形成心脏球(CSs),在其中发生复制和心脏发生分化。然而,CS 中功能分化的频率以及细胞聚集在支持其分化中的作用仍有待确定。我们的研究旨在定量 CS 衍生细胞中肌型 Ca2+释放机制的分化,将其与心脏分化标志物相关联,并测试其对 CS 形成的依赖性。研究了从鼠心脏外植体迁移的 CPCs 在 CS 形成之前(Pre-CS)和之后(Post-CS)的情况。通过分别用咖啡因和 ATP 处理来测试单个细胞中 RyR 和 IP3-R 介导的 Ca2+瞬变的诱导性;评估了心脏和非心脏谱系标志物的表达。Pre-CS 细胞中咖啡因反应性可忽略不计,而在 Post-CS 细胞中增加了 7.5 倍(3.6 对 26.9%;p<0.05),并且与心脏 TnI 基因启动子的激活密切相关。在 Pre-CS 细胞中频繁出现的 ATP 诱导反应在 Post-CS 细胞中略有增加(94%;p<0.05)。心脏特异性 Ca2+处理蛋白(Cav1.2、NCX1、RyR2、SERCA2a)的表达要么仅限于 Post-CS 阶段,要么显著增强。CS 跳动很少见,但它的药理学与心脏兴奋-收缩偶联兼容。非心脏谱系的表达总体上较低,且在 Pre-CS 和 Post-CS 细胞之间相似。抑制 CS 形成的培养条件阻止了咖啡因反应性的增加。总之,CS 中的聚集导致约 30%的 CPC 诱导出一种肌肉特异性的功能反应;这伴随着心脏特异性表达模式的发展。