首页> 外文期刊>Stem Cell Research & Therapy >Insulin-like growth factor-II overexpression accelerates parthenogenetic stem cell differentiation into cardiomyocytes and improves cardiac function after acute myocardial infarction in mice
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Insulin-like growth factor-II overexpression accelerates parthenogenetic stem cell differentiation into cardiomyocytes and improves cardiac function after acute myocardial infarction in mice

机译:胰岛素样生长因子-II过表达加速单位生干细胞分化进入心肌细胞,并在小鼠中急性心肌梗死后改善心脏功能

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Parthenogenetic stem cells (PSCs) are a promising source of regenerated cardiomyocytes; however, their application may be limited without a paternal genome. Insulin-like growth factor-II (IGF-II), a paternally expressed growth hormone, is critical in embryonic differentiation. This study investigated whether forced expression of IGF-II in PSCs can accelerate their differentiation. Overexpression and re-knockdown of IGF-II in PSCs were performed to investigate the role of IGF-II in PSC differentiation. The derivatives of PSCs with different IGF-II manipulations were transplanted into infarcted murine hearts to investigate the role of IGF-II in cardiomyocyte differentiation in vivo. Data showed that the expression of cardiac troponin T and troponin I in IGF-II-PSC outgrowths preceded that of parental PSC outgrowths, suggesting that IGF-II can accelerate PSC differentiation into cardiac lineage. Overexpression of IGF-II accelerated PSC differentiation towards cardiomyocytes while inhibiting PSC proliferation via the IGF-II/IGF1R signaling. Similar to that observed in cardiac marker expression, on differentiation day 24, IGF-II-PSCs showed PCNA and cyclin D2 expression comparable to juvenile mouse cardiomyocytes, showing that IGF-II-PSCs at this stage possess differential and proliferative properties similar to those of juvenile cardiomyocytes. Moreover, the expression pattern of cardiac markers in IGF-II-overexpressing PSC derivatives resembled that of juvenile mouse cardiomyocytes. After transplantation into the infarcted mouse hearts, IGF-II-PSC-derived cardiomyocytes displayed significant characteristics of mature cardiomyocytes, and IGF-II-depletion by shRNA significantly reversed these effects, suggesting the critical role of IGF-II in promoting cardiomyocyte maturation in vivo. Furthermore, IGF-II-overexpressing PSC derivatives reduced collagen deposition and mitochondrial damage in the infarcted areas and improved cardiac function. The re-knockdown of IGF-II could counteract these favorable effects of IGF-II. These findings suggest that the ectopic expression of IGF-II accelerates PSC differentiation into the cardiac lineage and promotes cardiomyocyte maturation. The underlying process includes the IGF-II/IGF1R signaling, which is involved in the suppressive effect of IGF-II on PSC proliferation. Moreover, transplanting IGF-II-overexpressing PSC derivatives into the infarcted heart could reduce collagen deposition and improve mitochondria biogenesis and measurements of cardiac function, highlighting the importance of IGF-II in the application of PSCs in cardiac regeneration.
机译:单向性干细胞(PSC)是再生心肌细胞的有前途的来源;然而,没有父基因组,它们的申请可能受到限制。胰岛素样生长因子-II(IGF-II),一种伴随的生长激素,对胚胎分化至关重要。本研究研究了PSC中IGF-II的强制表达是否可以加速其分化。进行PSC中IGF-II的过度表达和重新敲低,以研究IGF-II在PSC分化中的作用。将具有不同IGF-II操纵的PSCs的衍生物移植到梗死的鼠心中,以研究IGF-II在体内心肌细胞分化中的作用。数据表明,IGF-II-PSC产卵中的心肌肌钙蛋白T和肌钙蛋白I表达在父母的PSC产卵中,表明IGF-II可以将PSC分化加速到心脏谱系中。 IGF-II的过度表达加速PSC朝心肌细胞的分化,同时通过IGF-II / IGF1R信号传导抑制PSC增殖。类似于在心脏标志物表达中观察到的,在分化日24中,IGF-II-PSC显示与幼年小鼠心肌细胞相当的PCNA和细胞周期蛋白D2表达,表明该阶段的IGF-II-PSC具有与那些类似的差异和增殖性质青少年心肌细胞。此外,IGF-II过表达PSC衍生物中心脏标志物的表达模式类似于少年小鼠心肌细胞。移植到梗死的小鼠心中后,IGF-II-PSC衍生的心肌细胞显示出成熟心肌细胞的显着特征,并且SCRNA的IGF-II耗竭显着逆转了这些效果,表明IGF-II在促进体内心肌细胞成熟方面的关键作用。此外,IGF-II过表达PSC衍生物降低了梗塞区域的胶原沉积和线粒体损伤,并改善了心脏功能。 IGF-II的重新敲低可以抵消IGF-II的这些有利影响。这些发现表明IGF-II的异位表达将PSC分化加速到心脏谱系中并促进心肌细胞成熟。底层方法包括IGF-II / IGF1R信号传导,其参与IGF-II对PSC增殖的抑制作用。此外,将IGF-II-II-II-II-过度表达的PSC衍生物移植到梗塞的心脏中可以降低胶原沉积并改善线粒体生物发生和心脏功能的测量,突出IGF-II在PSC在心脏再生中的应用中的重要性。

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