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首页> 外文期刊>Stem Cell Research & Therapy >Bmi1 + cardiac progenitor cells contribute to myocardial repair following acute injury
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Bmi1 + cardiac progenitor cells contribute to myocardial repair following acute injury

机译:Bmi1 +心脏祖细胞有助于急性损伤后的心肌修复

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Background The inability of the adult mammalian heart to replace cells lost after severe cardiac injury compromises organ function. Although the heart is one of the least regenerative organs in the body, evidence accumulated in recent decades indicates a certain degree of renewal after injury. We have evaluated the role of cardiac Bmi1 + progenitor cells ( Bmi1 -CPC) following acute myocardial infarction (AMI). Methods Bmi1 Cre/+; Rosa26 YFP/+ ( Bmi1 -YFP) mice were used for lineage tracing strategy. After tamoxifen (TM) induction, yellow fluorescent protein (YFP) is expressed under the control of Rosa26 regulatory sequences in Bmi1 + cells. YFP+ cells were tracked following myocardial infarction. Additionally, whole transcriptome analysis of isolated YFP+ cells was performed in unchallenged hearts and after myocardial infarction. Results Deep-sequencing analysis of Bmi1 -CPC from unchallenged hearts suggests that this population expresses high levels of pluripotency markers. Conversely, transcriptome evaluation of Bmi1 -CPC following AMI shows a rich representation of genes related to cell proliferation, movement, and cell cycle. Lineage-tracing studies after cardiac infarction show that the progeny of Bmi1 -expressing cells contribute to de novo cardiomyocytes (CM) (13.8?±?5 % new YFP+ CM compared to 4.7?±?0.9 % in age-paired non-infarcted hearts). However, apical resection of TM-induced day 1 Bmi1 -YFP pups indicated a very minor contribution of Bmi1 -derived cells to de novo CM. Conclusions Cardiac Bmi1 progenitor cells respond to cardiac injury, contributing to the generation of de novo CM in the adult mouse heart.
机译:背景技术成年哺乳动物心脏无法替换严重心脏损伤后丢失的细胞,从而损害了器官功能。尽管心脏是人体中再生能力最差的器官之一,但近几十年来积累的证据表明,受伤后一定程度的更新。我们评估了急性心肌梗塞(AMI)后心脏Bmi1 + 祖细胞(Bmi1-CPC)的作用。方法Bmi1 Cre / + ;将Rosa26 YFP / + (Bmi1-YFP)小鼠用于谱系追踪策略。他莫昔芬(TM)诱导后,黄色荧光蛋白(YFP)在Rosa26调控序列的控制下在Bmi1 + 细胞中表达。心肌梗死后追踪YFP + 细胞。此外,在不受挑战的心脏和心肌梗死后,对分离的YFP + 细胞进行了完整的转录组分析。结果来自未受挑战的心脏的Bmi1-CPC的深度测序分析表明,该人群表达高水平的多能性标志物。相反,AMI后Bmi1-CPC的转录组评估显示了与细胞增殖,运动和细胞周期有关的基因的丰富表达。心肌梗塞后的血统追踪研究表明,表达Bmi1的细胞的后代有助于新生心肌(CM)(13.8?±?5%新的YFP + CM,而4.7?±?0.9%在年龄配对的非梗塞心脏中)。但是,TM诱导的第1天Bmi1-YFP幼仔的根尖切除表明Bmi1衍生的细胞对新生CM的贡献很小。结论心脏Bmi1祖细胞对心脏损伤有反应,有助于在成年小鼠心脏中产生从头CM。

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