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通过合成旁分泌因子修饰的信使核糖核酸进行心血管再生治疗

Cardiovascular regenerative therapeutics via synthetic paracrine factor modified mRNA.

作者信息

Lui Kathy O, Zangi Lior, Chien Kenneth R

机构信息

Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, USA.

Department of Stem Cell and Regenerative Biology, Harvard University, Cambridge, USA; Department of Cardiology, Children's Hospital Boston, Boston, USA.

出版信息

Stem Cell Res. 2014 Nov;13(3 Pt B):693-704. doi: 10.1016/j.scr.2014.06.007. Epub 2014 Jul 8.

Abstract

The heart has a limited capacity for regeneration following injury. Recent strategies to promote heart regeneration have largely focused on autologous and allogeneic cell-based therapy, where the transplanted cells have been suggested to secrete unknown paracrine factors that are envisioned to promote endogenous repair and/or mobilization of endogenous heart progenitors. Here, we discuss the importance of paracrine mechanisms in facilitating replication of endogenous epicardial progenitor cells in the adult heart and signaling their subsequent reactivation and de novo differentiation into functional cell types such as endothelial cells and cardiomyocytes. Moreover, we discuss the use of a novel modified RNA technology in delivering such therapeutic paracrine factors into myocardium following injury. These studies suggest that modified mRNA may be a valuable experimental tool for the precise in vivo identification of paracrine factors and their downstream signaling that may promote heart repair, cardiac muscle replication, and/or heart progenitor mobilization. In addition, these studies lay the foundation for a new clinically tractable technology for a cell-free approach to promote heart regeneration.

摘要

心脏损伤后的再生能力有限。近期促进心脏再生的策略主要集中在自体和异体细胞疗法上,据推测,移植的细胞会分泌未知的旁分泌因子,这些因子有望促进内源性修复和/或内源性心脏祖细胞的动员。在此,我们讨论旁分泌机制在促进成年心脏内源性心外膜祖细胞增殖以及促使其随后重新激活并从头分化为功能性细胞类型(如内皮细胞和心肌细胞)方面的重要性。此外,我们还讨论了一种新型修饰RNA技术在损伤后将此类治疗性旁分泌因子递送至心肌中的应用。这些研究表明,修饰后的mRNA可能是一种有价值的实验工具,可用于在体内精确鉴定可能促进心脏修复、心肌复制和/或心脏祖细胞动员的旁分泌因子及其下游信号传导。此外,这些研究为一种新的临床可行技术奠定了基础,该技术采用无细胞方法促进心脏再生。

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