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揭开成年心脏干细胞衍生外泌体的生物学特性,以促进内源性心脏再生和修复。

Unravelling the Biology of Adult Cardiac Stem Cell-Derived Exosomes to Foster Endogenous Cardiac Regeneration and Repair.

机构信息

Molecular and Cellular Cardiology, Department of Experimental and Clinical Medicine, Magna Graecia University, 88100 Catanzaro, Italy.

Department of Translational Medical Sciences, AORN dei Colli/Monaldi Hospital, University of Campania "L. Vanvitelli", Via Leonardo Bianchi, 80131 Naples, Italy.

出版信息

Int J Mol Sci. 2020 May 25;21(10):3725. doi: 10.3390/ijms21103725.

Abstract

Cardiac remuscularization has been the stated goal of the field of regenerative cardiology since its inception. Along with the refreshment of lost and dysfunctional cardiac muscle cells, the field of cell therapy has expanded in scope encompassing also the potential of the injected cells as cardioprotective and cardio-reparative agents for cardiovascular diseases. The latter has been the result of the findings that cell therapies so far tested in clinical trials exert their beneficial effects through paracrine mechanisms acting on the endogenous myocardial reparative/regenerative potential. The endogenous regenerative potential of the adult heart is still highly debated. While it has been widely accepted that adult cardiomyocytes (CMs) are renewed throughout life either in response to wear and tear and after injury, the rate and origin of this phenomenon are yet to be clarified. The adult heart harbors resident cardiac/stem progenitor cells (CSCs/CPCs), whose discovery and characterization were initially sufficient to explain CM renewal in response to physiological and pathological stresses, when also considering that adult CMs are terminally differentiated cells. The role of CSCs in CM formation in the adult heart has been however questioned by some recent genetic fate map studies, which have been proved to have serious limitations. Nevertheless, uncontested evidence shows that clonal CSCs are effective transplantable regenerative agents either for their direct myogenic differentiation and for their paracrine effects in the allogeneic setting. In particular, the paracrine potential of CSCs has been the focus of the recent investigation, whereby CSC-derived exosomes appear to harbor relevant regenerative and reparative signals underlying the beneficial effects of CSC transplantation. This review focuses on recent advances in our knowledge about the biological role of exosomes in heart tissue homeostasis and repair with the idea to use them as tools for new therapeutic biotechnologies for "cell-less" effective cardiac regeneration approaches.

摘要

心脏再肌化一直是再生心脏病学领域自成立以来的既定目标。随着失去和功能失调的心肌细胞的更新,细胞治疗领域的范围也扩大了,包括注入细胞作为心血管疾病的心脏保护和心脏修复剂的潜力。后者是由于迄今为止在临床试验中测试的细胞疗法通过旁分泌机制对内源性心肌修复/再生潜能发挥其有益作用的发现。成年心脏的内源性再生潜能仍存在很大争议。虽然人们普遍认为,成年心肌细胞 (CM) 在整个生命过程中会不断更新,无论是在磨损和损伤后,还是在磨损和损伤后,但这种现象的速度和来源仍有待澄清。成年心脏中存在驻留的心脏/干细胞祖细胞 (CSC/CPC),它们的发现和特征最初足以解释 CM 在生理和病理应激下的更新,同时也考虑到成年 CM 是终末分化细胞。然而,一些最近的遗传命运图谱研究对 CSC 在成年心脏中形成 CM 的作用提出了质疑,这些研究被证明存在严重的局限性。尽管如此,无可争议的证据表明,克隆性 CSC 是有效的可移植再生剂,无论是因为它们的直接肌生成分化,还是因为它们在同种异体环境中的旁分泌作用。特别是,CSC 衍生的外泌体的旁分泌潜力是最近研究的重点,外泌体似乎包含了与 CSC 移植有益效果相关的再生和修复信号。这篇综述重点介绍了我们对心脏组织稳态和修复中外泌体生物学作用的最新认识进展,以期将它们用作新的治疗性生物技术的工具,用于“无细胞”的有效心脏再生方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbdd/7279257/2ed71f691e32/ijms-21-03725-g001.jpg

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