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首页> 外文期刊>Stem Cells >Lineage differentiation-associated loss of adenoviral susceptibility and Coxsackie-adenovirus receptor expression in human mesenchymal stem cells.
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Lineage differentiation-associated loss of adenoviral susceptibility and Coxsackie-adenovirus receptor expression in human mesenchymal stem cells.

机译:人间充质干细胞中谱系分化相关的腺病毒敏感性和柯萨奇腺病毒受体表达的丧失。

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Previous reports debated the effects of differentiation on adenoviral vector (AdV) transduction efficiency and Coxsackie-adenovirus receptor (CAR) expression. This prompted us to investigate the efficiency of AdV transduction and CAR expression in human mesenchymal stem cells (hMSCs) and their differentiated progeny. Current results revealed high efficiency (>90%) of AdV transduction and a consistent level of CAR expression in hMSCs by the use of AdV carrying the enhanced green fluorescent protein reporter gene. Competition of CAR with blocking monoclonal antibody RmcB resulted in a reduction in transduction efficiency, indicating the CAR involvement in transduction of hMSCs. The cells were then induced to differentiate into bone, fat, or neural cells, and results demonstrated that the differentiation was accompanied with a consistent decline in AdV transduction and a decrement in CAR expression. Cells were infected with AdV and then induced into differentiation, and results demonstrated that transduced cells preserved differentiation potentials and still had transgene expression in a subpopulation of cells for 4 weeks and even in tested lineage-specific differentiation. According to the present investigation, undifferentiated hMSCs can serve as a gene-delivering system, and gene transfer into hMSCs before differentiation can resolve the difficulties in transduction of their differentiated progeny.
机译:以前的报道辩论了分化对腺病毒载体(AdV)转导效率和柯萨奇-腺病毒受体(CAR)表达的影响。这促使我们研究人间充质干细胞(hMSCs)及其分化后代中AdV转导和CAR表达的效率。目前的结果表明,通过使用携带增强型绿色荧光蛋白报道基因的AdV,hMSC中AdV转导的效率高(> 90%),CAR表达水平稳定。 CAR与封闭性单克隆抗体RmcB的竞争导致转导效率降低,表明CAR参与了hMSC的转导。然后诱导这些细胞分化为骨,脂肪或神经细胞,结果表明该分化伴随着AdV转导的持续下降和CAR表达的下降。用AdV感染细胞,然后诱导其分化,结果表明,转导的细胞保留了分化潜能,并且在亚组细胞中甚至在经过测试的谱系特异性分化中仍具有转基因表达。根据目前的研究,未分化的hMSC可以用作基因传递系统,并且在分化之前将基因转移到hMSC中可以解决转导其分化后代的困难。

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