首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Mesenchymal stem cells overexpressing Akt dramatically repair infarcted myocardium and improve cardiac function despite infrequent cellular fusion or differentiation.
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Mesenchymal stem cells overexpressing Akt dramatically repair infarcted myocardium and improve cardiac function despite infrequent cellular fusion or differentiation.

机译:尽管细胞融合或分化不频繁,但过表达Akt的间充质干细胞仍能显着修复梗塞的心肌并改善心脏功能。

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We previously reported that intramyocardial injection of bone marrow-derived mesenchymal stem cells overexpressing Akt (MSC-Akt) efficiently repaired infarcted rat myocardium and improved cardiac function. Controversy still exists over the mechanisms by which MSC contribute to tissue repair. Herein, we tested if cellular fusion of MSC plays a determinant role in cardiac repair. We injected MSC expressing Cre recombinase, with or without Akt, into Cre reporter mice. In these mice, LacZ is expressed only after Cre-mediated excision of a loxP-flanked stop signal and is indicative of fusion. MSC engraftment within infarcted myocardium was transient but significantly enhanced by Akt. MSC fusion with cardiomyocytes was observed as early as 3 days, but was infrequent, and we found a low rate of differentiation of MSC into cardiomyocytes. MSC-Akt decreased infarct size at 3 days and restored early cardiac function. In conclusion, MSC-Akt improved early repair despite transient engraftment, low levels of cellular fusion, and differentiation. These new observations further confirm our recently reported data that early paracrine mechanisms mediated by MSC are responsible for enhancing the survival of existing myocytes and that Akt could alter the secretion of various cytokines and growth factors.
机译:我们以前曾报道过,心肌内注射过表达Akt的骨髓间充质干细胞(MSC-Akt)有效修复了梗塞的大鼠心肌并改善了心脏功能。关于MSC促进组织修复的机制仍存在争议。本文中,我们测试了MSC的细胞融合是否在心脏修复中起决定性作用。我们将具有或不具有Akt的表达Cre重组酶的MSC注入Cre报告基因小鼠。在这些小鼠中,LacZ仅在Cre介导的loxP侧翼终止信号切除后表达,并指示融合。 MSC在梗死心肌内的植入是短暂的,但被Akt明显增强。早在3天就观察到MSC与心肌细胞融合,但这种情况很少见,我们发现MSC向心肌细胞的分化率很低。 MSC-Akt在3天时减少了梗塞面积并恢复了早期心脏功能。总之,尽管短暂植入,低水平的细胞融合和分化,MSC-Akt仍能改善早期修复。这些新的观察结果进一步证实了我们最近报道的数据,即由MSC介导的早期旁分泌机制负责增强现有心肌细胞的存活,而Akt可以改变各种细胞因子和生长因子的分泌。

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