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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Mesenchymal stromal cells affect cardiomyocyte growth through juxtacrine Notch-1/Jagged-1 signaling and paracrine mechanisms: clues for cardiac regeneration.
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Mesenchymal stromal cells affect cardiomyocyte growth through juxtacrine Notch-1/Jagged-1 signaling and paracrine mechanisms: clues for cardiac regeneration.

机译:间充质基质细胞通过并列分泌的Notch-1 / Jagged-1信号传导和旁分泌机制影响心肌细胞的生长:提示心脏再生。

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The possibility to induce myocardial regeneration by the activation of resident cardiac stem cells (CSCs) has raised great interest. However, to propose endogenous CSCs as therapeutic options, a better understanding of the complex mechanisms controlling heart morphogenesis is needed, including the cellular and molecular interactions that cardiomyocyte precursors establish with cells of the stromal compartment. In the present study, we co-cultured immature cardiomyocytes from neonatal mouse hearts with mouse bone marrow-derived mesenchymal stromal cells (MSCs) to investigate whether these cells could influence cardiomyocyte growth in vitro. We found that cardiomyocyte proliferation was enhanced by direct co-culture with MSCs compared with the single cultures. We also showed that the proliferative response of the neonatal cardiomyocytes involved the activation of Notch-1 receptor by its ligand Jagged-1 expressed by the adjacent MSCs. In fact, the cardiomyocytes in contact with MSCs revealed a stronger immunoreactivity for the activated Notch-intracellular domain (Notch-ICD) as compared with those cultured alone and this response was significantly attenuated when MSCs were silenced for Jagged-1. The presence of various cardiotropic cytokines and growth factors in the conditioned medium of MSCs underscored the contribution of paracrine mechanisms to Notch-1 up-regulation by the cardiomyocytes. In conclusions these findings unveil a previously unrecognized function of MSCs in regulating cardiomyocyte proliferation through Notch-1/Jagged-1 pathway and suggest that stromal-myocardial cell juxtacrine and paracrine interactions may contribute to the development of new and more efficient cell-based myocardial repair strategies.
机译:通过驻留的心脏干细胞(CSCs)的激活来诱导心肌再生的可能性引起了极大的兴趣。但是,要提出内源性CSC作为治疗选择,需要更好地了解控制心脏形态发生的复杂机制,包括心肌细胞前体与基质区室细胞建立的细胞和分子相互作用。在本研究中,我们将新生小鼠心脏的未成熟心肌细胞与小鼠骨髓来源的间充质基质细胞(MSCs)共培养,以研究这些细胞是否可以在体外影响心肌细胞的生长。我们发现与单培养相比,与MSC直接共培养可增强心肌细胞的增殖。我们还显示,新生心肌细胞的增殖反应涉及Notch-1受体的激活,该受体由相邻MSC表达的配体Jagged-1激活。实际上,与单独培养的心肌细胞相比,与MSC接触的心肌细胞对活化的Notch细胞内结构域(Notch-ICD)表现出更强的免疫反应性,而当MSC对Jagged-1沉默时,这种反应会大大减弱。 MSCs条件培养基中存在各种心肌细胞因子和生长因子,这突出了旁分泌机制对心肌细胞Notch-1上调的贡献。综上所述,这些发现揭示了MSC在通过Notch-1 / Jagged-1途径调节心肌细胞增殖中前所未有的功能,并表明基质-心肌细胞并列分泌和旁分泌相互作用可能有助于新的,更有效的基于细胞的心肌修复策略。

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