Romano Veronica, Belviso Immacolata, Sacco Anna Maria, Cozzolino Domenico, Nurzynska Daria, Amarelli Cristiano, Maiello Ciro, Sirico Felice, Di Meglio Franca, Castaldo Clotilde
Department of Public Health, University of Naples Federico II, Naples, Italy.
Department of Medicine, Surgery and Dentistry "Scuola Medica Salernitana"/DIPMED, University of Salerno, Baronissi, Italy.
Front Physiol. 2022 May 20;13:879046. doi: 10.3389/fphys.2022.879046. eCollection 2022.
Although human Cardiac Progenitor Cells (hCPCs) are not retained by host myocardium they still improve cardiac function when injected into ischemic heart. Emerging evidence supports the hypothesis that hCPC beneficial effects are induced by paracrine action on resident cells. Extracellular vesicles (EVs) are an intriguing mechanism of cell communication based on the transport and transfer of peptides, lipids, and nucleic acids that have the potential to modulate signaling pathways, cell growth, migration, and proliferation of recipient cells. We hypothesize that EVs are involved in the paracrine effects elicited by hCPCs and held accountable for the response of the infarcted myocardium to hCPC-based cell therapy. To test this theory, we collected EVs released by hCPCs isolated from healthy myocardium and evaluated the effects they elicited when administered to resident hCPC and cardiac fibroblasts (CFs) isolated from patients with post-ischemic end-stage heart failure. Evidence emerging from our study indicated that hCPC-derived EVs impacted upon proliferation and survival of hCPCs residing in the ischemic heart and regulated the synthesis and deposition of extracellular-matrix by CFs. These findings suggest that beneficial effects exerted by hCPC injection are, at least to some extent, ascribable to the delivery of signals conveyed by EVs.
尽管人心脏祖细胞(hCPCs)不会被宿主心肌保留,但将其注入缺血性心脏时仍能改善心脏功能。越来越多的证据支持这样一种假说,即hCPCs的有益作用是通过对驻留细胞的旁分泌作用诱导产生的。细胞外囊泡(EVs)是一种基于肽、脂质和核酸的运输与传递的有趣细胞通讯机制,这些物质有可能调节受体细胞的信号通路、细胞生长、迁移和增殖。我们假设EVs参与了hCPCs引发的旁分泌效应,并对梗死心肌对基于hCPCs的细胞治疗的反应负责。为了验证这一理论,我们收集了从健康心肌中分离出的hCPCs释放的EVs,并评估了将其施用于从缺血性终末期心力衰竭患者中分离出的驻留hCPCs和心脏成纤维细胞(CFs)时所引发的效应。我们研究中出现的证据表明,hCPCs衍生的EVs影响了缺血性心脏中hCPCs的增殖和存活,并调节了CFs对细胞外基质的合成和沉积。这些发现表明,hCPCs注射所产生的有益作用至少在一定程度上可归因于EVs所传递信号的递送。