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首页> 外文期刊>The FASEB Journal >Human adipose tissue-derived stem cells exhibit proliferation potential and spontaneous rhythmic contraction after fusion with neonatal rat cardiomyocytes
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Human adipose tissue-derived stem cells exhibit proliferation potential and spontaneous rhythmic contraction after fusion with neonatal rat cardiomyocytes

机译:人脂肪组织衍生的干细胞在融合后融合后具有新生大鼠心肌细胞的增殖潜力和自发节律收缩

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Various types of stem cells have been shown to have beneficial effects on cardiac function. It is still debated whether fusion of injected stem cells with local resident cardiomyocytes is one of the mechanisms. To better understand the role of fusion in stem cell-based myocardial regeneration, the present study was designed to investigate the fate of human adipose tissue-derived stem cells (hASCs) fused with neonatal rat cardiomyocytes in vitro. hASCs labeled with the green fluorescent probe Vybrant DiO were cocultured with neonatal rat cardiomyocytes labeled with the red fluorescent probe Vybrant DiI and then treated with fusion-inducing hemagglutinating virus of Japan (HVJ). Cells that incorporated both red and green fluorescent signals were considered to be hASCs that had fused with rat cardiomyocytes. Fusion efficiency was 19.86 ± 4.84% at 5 d after treatment with HVJ. Most fused cells displayed cardiomyocyte-like morphology and exhibited spontaneous rhythmic contraction. Both immunofluorescence staining and lentiviral vector labeling showed that fused cells contained separate rat cardiomyocyte and hASC nuclei. Immunofluorescence staining assays demonstrated that human nuclei in fused cells still expressed the proliferation marker Ki67. In addition, hASCs fused with rat cardiomyocytes were positive for troponin I. Whole-cell voltage-clamp analysis demonstrated action potentials in beating fused cells. RT-PCR analysis using rat- or human-specific myosin heavy chain primers revealed that the myosin heavy-chain expression in fused cells was derived from rat cardiomyocytes. Real-time PCR identified expression of human troponin T in fused cells and the presence of rat cardiomyocytes induced a cardiomyogenic protein expression of troponin T in human ASCs. This study illustrates that hASCs exhibit both stem cell (proliferation) and cardiomyocyte properties (action potential and spontaneous rhythmic beating) after fusion with rat cardiomyocytes, supporting the theory that fusion, even if artificially induced in our study, could indeed be a mechanism for cardiomyocyte renewal in the heart.—Metzele, R., Alt, C., Bai, X., Yan, Y., Zhang, Z., Pan, Z., Coleman, M., Vykoukal, J., Song, Y.-H., Alt, E. Human adipose tissue-derived stem cells exhibit proliferation potential and spontaneous rhythmic contraction after fusion with neonatal rat cardiomyocytes.
机译:已显示各种类型的干细胞对心脏功能有益的影响。仍然争论是否与局部常驻心肌细胞的注射干细胞融合是其中一种机制。为了更好地了解融合在基于干细胞的心肌再生中的作用,本研究旨在调查人脂肪组织衍生的干细胞(HASC)与新生大鼠心肌细胞体外融合的命运。用绿色荧光探针DIO标记的HASC与新生大鼠心肌细胞与红荧光探针型DII标记,然后用日本(HVJ)的融合血凝病毒处理。掺入红色和绿色荧光信号的细胞被认为是与大鼠心肌细胞融合的HASC。用HVJ处理后,融合效率为19.86±4.84%。大多数融合细胞显示出心肌细胞样形态并表现出自发节律收缩。两种免疫荧光染色和慢病毒载体标记显示融合细胞含有单独的大鼠心肌细胞和HASC核。免疫荧光染色测定证明熔融细胞中的人核仍表达增殖标志物Ki67。此外,与大鼠心肌细胞融合的HASC对于肌钙蛋白I呈阳性。全电池电压 - 钳位分析证明了熔化熔化细胞的作用电位。使用大鼠或人特异性肌蛋白重链引物的RT-PCR分析显示,熔融细胞中的肌素重链表达衍生自大鼠心肌细胞。实时PCR鉴定了熔融细胞中人肌钙蛋白T的表达,大鼠心肌细胞的存在诱导人ASC肌钙蛋白T的心肌蛋白表达。该研究表明,随着大鼠心肌细胞的融合后,HASC表现出干细胞(增殖)和心肌细胞性质(动作电位和自发性节律搏动),支持融合的理论,即使我们的研究人工人工,也可以是心肌细胞的机制续签在心脏。 - Metzele,R.,Alt,C.,Bai,X.,Yan,Y.,Zhang,Z.,Pan,Z.,Coleman,M.,Vykoukal,J.,Song,Y。 -H。,Alt,E.人脂肪组织衍生的干细胞表现出与新生大鼠心肌细胞融合后的增殖电位和自发节律收缩。

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