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首页> 外文期刊>Cardiovascular Research >MicroRNA-21 is a key determinant in IL-11/Stat3 anti-apoptotic signalling pathway in preconditioning of skeletal myoblasts.
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MicroRNA-21 is a key determinant in IL-11/Stat3 anti-apoptotic signalling pathway in preconditioning of skeletal myoblasts.

机译:MicroRNA-21是骨骼肌成肌细胞预处理中IL-11 / Stat3抗凋亡信号通路中的关键决定因素。

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AIMS: We have previously shown that preconditioning of stem and progenitor cells promotes their survival post-engraftment in the infarcted heart. The present study was designed to (i) delineate the role of microRNA-21 (miR-21) in interleukin-11 (IL-11) signalling during preconditioning of skeletal myoblasts (MY) and (ii) study the long-term fate of preconditioned MY ((PC)MY) post-transplantation in the infarcted heart. METHODS AND RESULTS: We report that pharmacological preconditioning of MY with diazoxide showed robust expression of IL-11 and activation of extracellular signal-regulated kinase 1/2 (Erk1/2) and signal transducers and activators of transcription-3 (Stat3) with concomitantly increased miR-21. These molecular events improved cytoprotection of (PC)MY under oxidant stress in vitro which was compromised by pre-treatment of (PC)MY with IL-11-specific siRNA, Erk1/2 blocker, or anti-miR-21. In vivo studies for sry-gene detection in a female rat heart model of acute myocardial infarction showed two-fold higher survival of male donor (PC)MY 4 and 7 days post-engraftment. Long-term fate of the engrafted cells was determined at 4 months after transplantation. Immunohistological studies revealed that in comparison with (non-PC)MY, (PC)MY improved angiogenic response in the heart which was evident from a higher number of blood vessels per surface area (0.155 mm(2)) and myogenic differentiation of (PC)MY in the heart. Indices of myocardial contractility including ejection fraction and fractional shortening showed significant improvement in (PC)MY-treated animals. CONCLUSION: miR-21 is a key regulator of Erk1/2-Stat3 signalling downstream of IL-11 during preconditioning of MY. The therapeutic benefits of (PC)MY were stable and persisted until 4 months of observation.
机译:目的:我们先前已经表明,对干细胞和祖细胞进行预处理可提高其在梗死心脏中植入后的存活率。本研究旨在(i)阐明骨骼肌成肌细胞(MY)预处理过程中microRNA-21(miR-21)在白介素11(IL-11)信号传导中的作用,以及(ii)研究其长期命运在梗塞的心脏中进行预处理的MY((PC)MY)移植后。方法和结果:我们报道,用重氮嗪对MY进行药理学预处理表明,IL-11的表达强劲,并激活细胞外信号调节激酶1/2(Erk1 / 2)以及信号转导和转录因子3(Stat3)的活化。增加的miR-21。这些分子事件改善了体外在氧化应激下(PC)MY的细胞保护作用,这受到(PC)MY的IL-11-特异性siRNA,Erk1 / 2阻断剂或抗miR-21预处理的损害。在急性心肌梗死的雌性大鼠心脏模型中进行的sry基因检测的体内研究显示,植入后第4天和第7天,雄性供体(PC)MY的存活率提高了两倍。在移植后4个月确定移植细胞的长期命运。免疫组织学研究表明,与(非PC)MY相比,(PC)MY改善了心脏的血管生成反应,这可以通过每单位表面积(0.155 mm(2))的血管数量增加和(PC我的心心肌收缩力的指标包括射血分数和缩短分数在(PC)MY治疗的动物中显示出明显的改善。结论:miR-21是MY预处理过程中IL-11下游Erk1 / 2-Stat3信号的关键调节因子。 (PC)MY的治疗益处稳定且持续到观察到的4个月。

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