Knight-Schrijver Vincent R, Davaapil Hongorzul, Bayraktar Semih, Ross Alexander D B, Kanemaru Kazumasa, Cranley James, Dabrowska Monika, Patel Minal, Polanski Krzysztof, He Xiaoling, Vallier Ludovic, Teichmann Sarah, Gambardella Laure, Sinha Sanjay
Wellcome-MRC Cambridge Stem Cell Institute, Jeffrey Cheah Biomedical Centre, Cambridge Biomedical Campus, University of Cambridge, Cambridge, UK.
Department of Paediatrics, University of Cambridge, Cambridge, UK.
Nat Cardiovasc Res. 2022 Dec 21;1(12):1215-1229. doi: 10.1038/s44161-022-00183-w.
Re-activating quiescent adult epicardium represents a potential therapeutic approach for human cardiac regeneration. However, the exact molecular differences between inactive adult and active fetal epicardium are not known. In this study, we combined fetal and adult human hearts using single-cell and single-nuclei RNA sequencing and compared epicardial cells from both stages. We found that a migratory fibroblast-like epicardial population only in the fetal heart and fetal epicardium expressed angiogenic gene programs, whereas the adult epicardium was solely mesothelial and immune responsive. Furthermore, we predicted that adult hearts may still receive fetal epicardial paracrine communication, including WNT signaling with endocardium, reinforcing the validity of regenerative strategies that administer or reactivate epicardial cells in situ. Finally, we explained graft efficacy of our human embryonic stem-cell-derived epicardium model by noting its similarity to human fetal epicardium. Overall, our study defines epicardial programs of regenerative angiogenesis absent in adult hearts, contextualizes animal studies and defines epicardial states required for effective human heart regeneration.
重新激活静止的成年心外膜是人类心脏再生的一种潜在治疗方法。然而,成年静止心外膜与活跃的胎儿心外膜之间确切的分子差异尚不清楚。在本研究中,我们使用单细胞和单核RNA测序技术对胎儿和成人心脏进行整合,并比较了两个阶段的心外膜细胞。我们发现,仅在胎儿心脏中存在一种迁移性的成纤维细胞样心外膜细胞群,胎儿心外膜表达血管生成基因程序,而成人心外膜仅具有间皮细胞特性且对免疫有反应。此外,我们预测成年心脏可能仍会接受胎儿心外膜的旁分泌信号,包括与心内膜的WNT信号传导,这强化了在原位施用或重新激活心外膜细胞的再生策略的有效性。最后,我们通过指出其与人类胎儿心外膜的相似性,解释了我们的人类胚胎干细胞衍生的心外膜模型的移植效果。总体而言,我们的研究定义了成年心脏中不存在的再生性血管生成的心外膜程序,将动物研究背景化,并定义了有效人类心脏再生所需的心外膜状态。