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Rescue of neonatal cardiac dysfunction in mice by administration of cardiac progenitor cells in utero

机译:通过在子宫内施用心脏祖细胞来挽救小鼠新生儿心脏功能障碍

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摘要

Striated preferentially expressed gene (Speg) is a member of the myosin light chain kinase family. We previously showed that disruption of the Speg gene locus in mice leads to a dilated cardiomyopathy with immature-appearing cardiomyocytes. Here we show that cardiomyopathy of Speg ?/? mice arises as a consequence of defects in cardiac progenitor cell (CPC) function, and that neonatal cardiac dysfunction can be rescued by in utero injections of wild-type CPCs into Speg ?/? foetal hearts. CPCs harvested from Speg ?/? mice display defects in clone formation, growth and differentiation into cardiomyocytes in vitro , which are associated with cardiac dysfunction in vivo . In utero administration of wild-type CPCs into the hearts of Speg ?/? mice results in CPC engraftment, differentiation and myocardial maturation, which rescues Speg ?/? mice from neonatal heart failure and increases the number of live births by fivefold. We propose that in utero administration of CPCs may have future implications for treatment of neonatal heart diseases.
机译:横纹优先表达基因(Speg)是肌球蛋白轻链激酶家族的成员。我们以前表明,小鼠中Speg基因位点的破坏会导致心肌细胞未成熟而导致扩张型心肌病。在这里,我们显示Speg ?/?的心肌病。 小鼠是由于心脏祖细胞(CPC)功能缺陷而出现的,并且可以通过在子宫内向Speg ?/?中注射野生型CPC来挽救新生儿心脏功能障碍。 胎儿的心。从Speg ?/?收获的每次点击费用小鼠在体外克隆形成,生长和分化为心肌细胞方面存在缺陷,这与体内心脏功能障碍有关。在子宫内将野生型CPC施用到Speg ?/?的心脏中小鼠导致CPC植入,分化和心肌成熟,从而挽救Speg ?/? 来自新生儿心力衰竭的小鼠,活产数量增加了五倍。我们建议在子宫内进行CPC可能对新生儿心脏病的治疗有未来的影响。

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