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Mesenchymal stem cells sense mitochondria released from damaged cells as danger signals to activate their rescue properties

机译:间充质干细胞感知线粒体从受损细胞中释放出作为危险信号,以激活它们的救援性能

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摘要

Mesenchymal stem cells (MSCs) protect tissues against cell death induced by ischemia/reperfusion insults. This therapeutic effect seems to be controlled by physiological cues released by the local microenvironment following injury. Recent lines of evidence indicate that MSC can communicate with their microenvironment through bidirectional exchanges of mitochondria. In particular, in vitro and in vivo studies report that MSCs rescue injured cells through delivery of their own mitochondria. However, the role of mitochondria conveyed from somatic cells to MSC remains unknown. By using a co-culture system consisting of MSC and distressed somatic cells such as cardiomyocytes or endothelial cells, we showed that mitochondria from suffering cells acted as danger-signaling organelles that triggered the anti-apoptotic function of MSC. We demonstrated that foreign somatic-derived mitochondria were engulfed and degraded by MSC, leading to induction of the cytoprotective enzyme heme oxygenase-1 (HO-1) and stimulation of mitochondrial biogenesis. As a result, the capacity of MSC to donate their mitochondria to injured cells to combat oxidative stress injury was enhanced. We found that similar mechanisms - activation of autophagy, HO-1 and mitochondrial biogenesis - occurred after exposure of MSC to exogenous mitochondria isolated from somatic cells, strengthening the idea that somatic mitochondria alert MSC of a danger situation and subsequently promote an adaptive reparative response. In addition, the cascade of events triggered by the transfer of somatic mitochondria into MSC was recapitulated in a model of myocardial infarction in vivo. Specifically, MSC engrafted into infarcted hearts of mice reduced damage, upregulated HO-1 and increased mitochondrial biogenesis, while inhibition of mitophagy or HO-1 failed to protect against cardiac apoptosis. In conclusion, our study reveals a new facet about the role of mitochondria released from dying cells as a key environmental cue that controls the cytoprotective function of MSC and opens novel avenues to improve the effectiveness of MSC-based therapies.
机译:间充质干细胞(MSCs)保护组织免受缺血/再灌注损伤诱导的细胞死亡。这种治疗效果似乎由受伤后局部微环境释放的生理学提示控制。最近的证据表明,MSC可以通过线粒体的双向交换与其微环境通信。特别是,体外和体内研究报告说,MSCS通过递送自己的线粒体来拯救受伤的细胞。然而,从体细胞输送到MSC的线粒体的作用仍然未知。通过使用由MSC和心肌细胞如心肌细胞或内皮细胞组成的共培养系统,我们表明线粒体来自患有细胞的线粒体作用为引发MSC的抗凋亡函数的危险信号传导细胞器。我们证明,外来体细胞衍生的线粒体被MSC吞噬并降解,导致诱导细胞保护酶血红素氧酶-1(HO-1)和线粒体生物发生的刺激。结果,提高了MSC将其线粒体赋予受伤细胞以对抗氧化胁迫损伤的能力。我们发现类似的机制 - 激活自噬,HO-1和线粒体生物发生 - 发生在MSC的暴露于从体细胞中分离的外源线粒体,加强了体细胞线粒体警报MSC的想法,随后促进适应性的修复反应。此外,通过体内心肌梗死模型综合,通过体细胞线粒体转移到MSC中引发的事件级联。具体而言,MSC植入小鼠的梗死心脏降低损伤,上调的HO-1和增加的线粒体生物发生,而MINOCOCHY或HO-1的抑制未能防止心脏凋亡。总之,我们的研究揭示了关于线粒体释放到染色细胞作为关键环境提示的新方面,以控制MSC的细胞保护功能,并打开新颖的途径以提高基于MSC的疗法的有效性。

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  • 来源
    《Cell death and differentiation》 |2017年第7期|共15页
  • 作者单位

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    INSERM UMR-1060 Laboratoire CarMeN Université Lyon 1 Faculté de Médecine Rockefeller Lyon;

    INSERM UMR-1060 Laboratoire CarMeN Université Lyon 1 Faculté de Médecine Rockefeller Lyon;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    UMR-1060 Laboratoire CarMeN Université Lyon 1 Faculté de Médecine Rockefeller Lyon France;

    UMR-1060 Laboratoire CarMeN Université Lyon 1 Faculté de Médecine Rockefeller Lyon France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Service de Chirurgie Plastique et Maxillo-Faciale AP-HP H?pital Henri Mondor-A. Chenevier Créteil;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

    Université Paris-Est UMR-S955 UPEC Créteil Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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