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首页> 外文期刊>Stem Cells >Human Bone Marrow Mesenchymal Stem Cells Can Express Insulin and Key Transcription Factors of the Endocrine Pancreas Developmental Pathway upon Genetic and/or Microenvironmental Manipulation In Vitro.
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Human Bone Marrow Mesenchymal Stem Cells Can Express Insulin and Key Transcription Factors of the Endocrine Pancreas Developmental Pathway upon Genetic and/or Microenvironmental Manipulation In Vitro.

机译:人骨髓间充质干细胞可以在遗传和/或微环境操作体外表达胰岛素和内分泌胰腺发育途径的关键转录因子。

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Multipotential stem cells can be selected from the bone marrow by plastic adhesion, expanded, and cultured. They are able to differentiate not only into multiple cell types, including cartilage, bone, adipose and fibrous tissues, and myelosupportive stroma, but also into mesodermal (endothelium), neuroectodermal, or endodermal (hepatocytes) lineages. Our goal was to characterize the multipotential capacities of human mesenchymal stem cells (hMSCs) and to evaluate their ability to differentiate into insulin-secreting cells in vitro. hMSCs were obtained from healthy donors, selected by plastic adhesion, and phenotyped by fluorescence-activated cell sorter and reverse transcription-polymerase chain reaction analysis before and after infection with adenoviruses coding for mouse IPF1, HLXB9, and FOXA2 transcription factors involved early in the endocrine developmental pathway. We found that native hMSCs have a pluripotent phenotype (OCT4 expression and high telomere length) and constitutively express NKX6-1at a low level but lack all other transcription factors implicated in beta-cell differentiation. In all hMSCs, we detected mRNA of cytokeratin 18 and 19, epithelial markers present in pancreatic ductal cells, whereas proconvertase 1/3 mRNA expression was detected only in some hMSCs. Ectopic expression of IPF1, HLXB9, and FOXA2 with or without islet coculture or islet-conditioned medium results in insulin gene expression. In conclusion, our results demonstrated that in vitro human bone marrow stem cells are able to differentiate into insulin-expressing cells by a mechanism involving several transcription factors of the beta-cell developmental pathway when cultured in an appropriate microenvironment.
机译:多能干细胞可以通过塑性粘附从骨髓中选择,扩增和培养。它们不仅能够分化为多种细胞类型,包括软骨,骨骼,脂肪和纤维组织以及骨髓支持基质,而且还能分化为中胚层(内皮),神经外胚层或内胚层(肝细胞)谱系。我们的目标是表征人间充质干细胞(hMSCs)的多能能力,并评估其在体外分化为胰岛素分泌细胞的能力。 hMSCs是从健康供体中获得的,通过塑料粘附选择,并通过荧光激活细胞分选仪和逆转录-聚合酶链反应分析进行表型分析,在感染内分泌早期涉及小鼠IPF1,HLXB9和FOXA2转录因子的腺病毒感染之前和之后发展途径。我们发现天然hMSCs具有多能表型(OCT4表达和端粒长度高),并以低水平组成性表达NKX6-1,但缺乏与β细胞分化有关的所有其他转录因子。在所有hMSC中,我们检测到胰腺导管细胞中存在的上皮标记物细胞角蛋白18和19的mRNA,而仅在某些hMSC中检测到前转化酶1/3 mRNA的表达。在有或没有胰岛共培养物或胰岛条件培养基的情况下,IPF1,HLXB9和FOXA2的异位表达会导致胰岛素基因表达。总之,我们的结果表明,在适当的微环境中培养时,体外人骨髓干细胞能够通过涉及β细胞发育途径的几种转录因子的机制分化为表达胰岛素的细胞。

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