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探究围产期衍生物的旁分泌作用:人羊水干细胞外囊泡显示出用于心肌细胞更新的有前景的短暂潜力。

Investigating the Paracrine Role of Perinatal Derivatives: Human Amniotic Fluid Stem Cell-Extracellular Vesicles Show Promising Transient Potential for Cardiomyocyte Renewal.

作者信息

Costa Ambra, Balbi Carolina, Garbati Patrizia, Palamà Maria Elisabetta Federica, Reverberi Daniele, De Palma Antonella, Rossi Rossana, Paladini Dario, Coviello Domenico, De Biasio Pierangela, Ceresa Davide, Malatesta Paolo, Mauri Pierluigi, Quarto Rodolfo, Gentili Chiara, Barile Lucio, Bollini Sveva

机构信息

Experimental Biology Unit, Department of Experimental Medicine (DIMES), University of Genova, Genova, Italy.

Laboratory of Cellular and Molecular Cardiology, Istituto Cardiocentro Ticino, Ente Ospedaliero Cantonale, Lugano, Switzerland.

出版信息

Front Bioeng Biotechnol. 2022 Jun 8;10:902038. doi: 10.3389/fbioe.2022.902038. eCollection 2022.

Abstract

Cardiomyocyte renewal represents an unmet clinical need for cardiac regeneration. Stem cell paracrine therapy has attracted increasing attention to resurge rescue mechanisms within the heart. We previously characterized the paracrine effects that human amniotic fluid-derived stem cells (hAFSC) can exert to provide cardioprotection and enhance cardiac repair in preclinical models of myocardial ischemia and cardiotoxicity. Here, we analyze whether hAFSC secretome formulations, namely, hAFSC conditioned medium (hAFSC-CM) over extracellular vesicles (hAFSC-EVs) separated from it, can induce cardiomyocyte renewal. c-KIT+ hAFSC were obtained by leftover samples of II trimester prenatal amniocentesis (fetal hAFSC) and from clinical waste III trimester amniotic fluid during scheduled C-section procedures (perinatal hAFSC). hAFSC were primed under 1% O to enrich hAFSC-CM and EVs with cardioactive factors. Neonatal mouse ventricular cardiomyocytes (mNVCM) were isolated from cardiac tissue of R26pFUCCI2 mice with cell cycle fluorescent tagging by mutually exclusive nuclear signal. mNVCM were stimulated by fetal versus perinatal hAFSC-CM and hAFSC-EVs to identify the most promising formulation for assessment in a R26pFUCCI2 neonatal mouse model of myocardial infarction (MI) intraperitoneal delivery. While the perinatal hAFSC secretome did not provide any significant cardiogenic effect, fetal hAFSC-EVs significantly sustained mNVCM transition from S to M phase by 2-fold, while triggering cytokinesis by 4.5-fold over vehicle-treated cells. Treated mNVCM showed disorganized expression of cardiac alpha-actinin, suggesting cytoskeletal re-arrangements prior to cell renewal, with a 40% significant downregulation of and a positive trend of polymerized F-Actin. Fetal hAFSC-EVs increased cardiomyocyte cell cycle progression by 1.8-fold in the 4-day-old neonatal left ventricle myocardium short term after MI; however, such effect was lost at the later stage. Fetal hAFSC-EVs were enriched with a short isoform of Agrin, a mediator of neonatal heart regeneration acting by YAP-related signaling; yet application of YAP inhibitor verteporfin partially affected EV paracrine stimulation on mNVCM. EVs secreted by developmentally juvenile fetal hAFSC can support cardiomyocyte renewal to some extension, intercellular conveyance of candidates possibly involving Agrin in combination with other factors. These perinatal derivative promising cardiogenic effects need further investigation to define their specific mechanism of action and enhance their potential translation into therapeutic opportunity.

摘要

心肌细胞更新是心脏再生尚未满足的临床需求。干细胞旁分泌疗法已越来越受到关注,以复苏心脏内的救援机制。我们之前描述了人羊水来源干细胞(hAFSC)在心肌缺血和心脏毒性临床前模型中可发挥的旁分泌作用,以提供心脏保护并增强心脏修复。在这里,我们分析hAFSC分泌组制剂,即从其分离的细胞外囊泡(hAFSC-EV)上的hAFSC条件培养基(hAFSC-CM),是否能诱导心肌细胞更新。通过孕中期产前羊膜穿刺术的剩余样本(胎儿hAFSC)和择期剖宫产手术期间的临床废弃晚期羊水(围产期hAFSC)获得c-KIT+ hAFSC。hAFSC在1%氧气条件下预处理,以用心脏活性因子富集hAFSC-CM和EV。从具有相互排斥核信号的细胞周期荧光标记的R26pFUCCI2小鼠心脏组织中分离新生小鼠心室心肌细胞(mNVCM)。用胎儿与围产期hAFSC-CM和hAFSC-EV刺激mNVCM,以确定在R26pFUCCI2新生小鼠心肌梗死(MI)腹腔内递送模型中评估最有前景的制剂。虽然围产期hAFSC分泌组没有提供任何显著的心脏发生作用,但胎儿hAFSC-EV使mNVCM从S期到M期的转变显著持续2倍,同时与载体处理的细胞相比,细胞分裂触发4.5倍。处理后的mNVCM显示心脏α-肌动蛋白的表达紊乱,表明在细胞更新之前细胞骨架重新排列,其中 显著下调40%,聚合F-肌动蛋白呈阳性趋势。胎儿hAFSC-EV在MI后短期内使4日龄新生小鼠左心室心肌中的心肌细胞细胞周期进程增加1.8倍;然而,这种作用在后期消失。胎儿hAFSC-EV富含Agrin的短异构体,Agrin是一种通过YAP相关信号起作用的新生儿心脏再生介质;然而,YAP抑制剂维替泊芬的应用部分影响了EV对mNVCM的旁分泌刺激。发育早期的胎儿hAFSC分泌的EV可以在一定程度上支持心肌细胞更新,候选物的细胞间传递可能涉及Agrin与其他因子的组合。这些围产期衍生物有前景的心脏发生作用需要进一步研究,以确定其具体作用机制并增强其转化为治疗机会的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c27/9214211/d34f35ea4a77/fbioe-10-902038-g001.jpg

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