首页> 外文期刊>Molecular medicine reports >Exogenous Nkx2.5-or GATA-4-transfected rabbit bone marrow mesenchymal stem cells and myocardial cell co-culture on the treatment of myocardial infarction in rabbits
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Exogenous Nkx2.5-or GATA-4-transfected rabbit bone marrow mesenchymal stem cells and myocardial cell co-culture on the treatment of myocardial infarction in rabbits

机译:Nkx2.5或GATA-4转染的兔骨髓间充质干细胞和心肌细胞共培养对兔心肌梗死的治疗

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The present study aimed to investigate the effects of Nkx2.5 or GATA-4 transfection with myocardial extracellular environment co-culture on the transformation of bone marrow mesenchymal stem cells ( BMSCs) into differentiated cardiomyocytes. Nkx2.5 or GATA-4 were transfected into myocardial extracellular environment co-cultured BMSCs, and then injected into the periphery of infarcted myocardium of a myocardial infarction rabbit model. The effects of these gene transfections and culture on the infarcted myocardium were observed and the results may provide an experimental basis for the efficient myocardial cell differentiation of BMSCs. The present study also suggested that these cells may provide a source and clinical basis for myocardial injury repair via stem cell transplantation. The present study examined whether Nkx2.5 or GATA-4 exogenous gene transfection with myocardial cell extracellular environment co-culture were able to induce the differentiation of BMSCs into cardiac cells. In addition, the effect of these transfected BMSCs on the repair of the myocardium following myocardial infarction was determined using New Zealand rabbit models. The results demonstrated that myocardial cell differentiation was significantly less effective following exogenous gene transfection of Nkx2.5 or GATA-4 alone compared with that of transfection in combination with extracellular environment co-culture. In addition, the results of the present study showed that exogenous gene transfection of Nkx2.5 or GATA-4 into myocardial cell extracellular environment co-cultured BMSCs was able to significantly enhance the ability to repair, death of myocardial cells and activation of the myocardium in rabbits with myocardial infarction compared with those of the rabbits transplanted with untreated BMSCs. In conclusion, the exogenous Nkx2.5 and GATA-4 gene transfection into myocardial extracellular environment co-cultured BMSCs induced increased differentiation into myocardial cells compared with that of gene transfection alone. Furthermore, significantly enhanced reparative effects were observed in the myocardium of rabbits following treatment with Nkx2.5- or GATA-4-transfected myocardial cell extracellular environment co-cultured BMSCs compared with those treated with untreated BMSCs.
机译:本研究旨在研究Nkx2.5或GATA-4转染心肌细胞外环境共培养对骨髓间充质干细胞(BMSCs)转化为分化的心肌细胞的影响。将Nkx2.5或GATA-4转染到共培养的BMSCs的心肌细胞外环境中,然后注射到心肌梗塞兔模型的梗塞心肌的周围。观察了这些基因转染和培养对梗塞心肌的影响,该结果可为BMSCs有效心肌细胞分化提供实验依据。本研究还表明,这些细胞可能通过干细胞移植为心肌损伤修复提供来源和临床基础。本研究检查了心肌细胞外环境共培养的Nkx2.5或GATA-4外源基因转染能否诱导BMSCs向心肌细胞的分化。另外,使用新西兰兔模型确定了这些转染的BMSC对心肌梗塞后心肌修复的作用。结果表明,与结合细胞外环境共培养的转染相比,单独的外源基因转染Nkx2.5或GATA-4后,心肌细胞分化的效力明显降低。另外,本研究的结果表明,将Nkx2.5或GATA-4外源基因转染到共培养的BMSCs的心肌细胞胞外环境中能够显着增强修复能力,心肌细胞的死亡和心肌的活化。与未经治疗的骨髓间充质干细胞移植的兔子相比总之,与单独基因转染相比,将外源性Nkx2.5和GATA-4基因转染入心肌细胞共培养的BMSCs诱导分化为心肌细胞的增加。此外,与未处理的BMSC相比,在用Nkx2.5或GATA-4转染的心肌细胞胞外环境共培养的BMSC处理后,在兔的心肌中观察到显着增强的修复效果。

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