首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Distinct influence of the anthracycline derivative doxorubicin on the differentiation efficacy of mESC-derived endothelial progenitor cells
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Distinct influence of the anthracycline derivative doxorubicin on the differentiation efficacy of mESC-derived endothelial progenitor cells

机译:蒽环素衍生物多柔比星对MESC衍生的内皮祖细胞分化疗效的显着影响

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摘要

Cardiotoxicity is a highly relevant, because often life-threatening, adverse effect of doxorubicin (Doxo)-based anticancer therapy. Here, we investigated the Doxo-response of cardiovascular stem/progenitor cells employing a mouse embryonic stem cell (mESC)-based in vitro differentiation model. Endothelial progenitor cells revealed a pronounced Doxo sensitivity as compared to mESC, differentiated endothelial-like (EC) and cardiomyocyte-like cells (CM) and CM progenitors, which rests on the activation of senescence. Doxo treatment of EC progenitors altered protein expression of individual endothelial markers, actin cytoskeleton morphology, mRNA expression of genes related to mitochondrial functions, autophagy, apoptosis, and DNA repair as well as mitochondrial DNA content, respiration and ATP production in the surviving differentiated EC progeny. By contrast, LDL uptake, ATP-stimulated Ca2+ release, and cytokine-stimulated ICAM-1 expression remained unaffected by the anthracycline treatment. Thus, exposure of EC progenitors to Doxo elicits isolated and persistent dysfunctions in the surviving EC progeny. In conclusion, we suggest that Doxo-induced injury of EC progenitors adds to anthracycline-induced cardiotoxicity, making this cell-type a preferential target for pharmacoprotective and regenerative strategies.
机译:心脏毒性是一种高度相关的,因为经常危及生命的危及生命,对多柔比星(DOXO)的抗癌治疗的不良影响。在这里,我们研究了在体外分化模型中采用小鼠胚胎干细胞(MESC)的心血管茎/祖细胞的DOXO响应。内皮祖细胞与MESC,分化的内皮样(EC)和心肌细胞样细胞(CM)和CM祖细胞相比显示出明显的DOXO敏感性,其依赖于衰老的活化。欧克索治疗EC祖细胞的蛋白质表达单个内皮标记物,肌动蛋白细胞骨架形态,mRNA表达与线粒体功能,自噬,细胞凋亡和DNA修复以及Mitocondrial DNA含量,呼吸和ATP在存活的分化的eM后代产生。相比之下,LDL摄取,ATP刺激的CA2 +释放和细胞因子刺激的ICAM-1表达仍未受到蒽环类治疗的影响。因此,暴露于幸存的EC后代的肠道祖细胞对DOXO引发的持续功能障碍。总之,我们表明,DOXO诱导的EC祖细胞损伤增加了蒽环类诱导的心脏毒性,使这种细胞型为药物保护和再生策略的优惠靶标。

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