首页> 美国卫生研究院文献>Stem Cells International >Transfection of Peripheral Blood Monocytes with SOX2 Enhances Multipotency Proliferation and Redifferentiation into Neohepatocytes and Insulin-Producing Cells
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Transfection of Peripheral Blood Monocytes with SOX2 Enhances Multipotency Proliferation and Redifferentiation into Neohepatocytes and Insulin-Producing Cells

机译:用SOX2转染外周血单核细胞可增强多能性增殖和再分化为新肝细胞和胰岛素产生细胞。

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摘要

Following a several-day incubation in medium containing IL-3 and M-CSF to generate a more plastic intermediate “reprogrammed multipotent cells of monocytic origin (RMCMO),” peripheral blood mononuclear cells (PBMCs) can be efficiently converted to hepatocyte-like cells (neohepatocytes) and insulin-producing cells. However, continuous efforts are devoted to enhancing the proliferative capacity of these multipotent cells while maintaining or further increasing their redifferentiation potential. In the present work, PBMCs were transfected with one pluripotency gene (SOX2) and the resulting RMCMO compared to standard RMCMO with respect to cell viability, proliferative activity, and redifferentiation potential. Ectopic SOX2 expression increased the number of viable RMCMO, activated cell cycle genes, and enhanced proliferation as shown by quantitative RT-PCR and Ki67 immunofluorescent staining, respectively. Redifferentiation of RMCMO derived from SOX2-transfected PBMCs to neohepatocytes was more complete in comparison to control cells as revealed by higher urea and glucose secretion, increased activity of cytochrome P450 isoforms, and a phase II enzyme, while the same was true for insulin-producing cells as assessed by the expression of INS, PDX1, and GLUT2 and glucose-stimulated insulin secretion. Our results indicate that SOX2 transfection increases both multipotency and proliferation of RMCMO, eventually allowing production of neohepatocytes and insulin-producing cells of higher quality and quantity for transplantation purposes.
机译:在含有IL-3和M-CSF的培养基中温育几天以产生更具塑性的中间体“单核细胞源重新编程的多能细胞(RMCMO)”后,外周血单核细胞(PBMC)可以有效转化为类肝细胞(新肝细胞)和产生胰岛素的细胞。但是,在保持或进一步增加其再分化潜能的同时,致力于增加这些多能细胞的增殖能力。在目前的工作中,PBMC被一个多能性基因(SOX2)转染,并且在细胞活力,增殖活性和再分化潜能方面,所得的RMCMO与标准RMCMO相比。分别通过定量RT-PCR和Ki67免疫荧光染色显示,异位SOX2表达增加了存活的RMCMO数量,活化的细胞周期基因并增强了增殖。与对照组相比,从SOX2转染的PBMC衍生的RMCMO向新肝细胞的再分化更完全,这表现为较高的尿素和葡萄糖分泌,细胞色素P450亚型和II期酶的活性增加,而胰岛素生产同样如此通过INS,PDX1和GLUT2的表达以及葡萄糖刺激的胰岛素分泌评估细胞。我们的结果表明,SOX2转染可提高RMCMO的多能性和增殖能力,最终可为移植目的生产更高质量和数量的新肝细胞和胰岛素产生细胞。

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