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The Role of Epigenetic Regulation and Pluripotency‐Related MicroRNAs in Differentiation of Pancreatic Stem Cells to Beta Cells

机译:表观遗传调控和多能性相关的microRNA在胰干细胞对β细胞的分化中的作用

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ABSTRACT In this study, we aimed to research the effects of class‐I HDACs and glucose on differentiation of pancreatic islet derived mesenchymal stem cells (PI‐MSCs) to beta cells. Beta cell differentiation determined by flow cytometric analysis and gene expression levels of PDX1 , PAX4 , PAX6 , NKX6.1 , NGN3 , INS2 , and GLUT2 . As a result the valproic acid, is an inhibitor of class‐I HDACs, caused the highest beta cell differentiation in PI‐MSCs. However, the cells in this group were at early stages of differentiation. Glucose co‐administration to this group carried the differentiation to higher levels, but these newly formed beta cells were not functional. Moreover, reduction in the levels of pluripotency factors that Oct3/4, c‐Myc, and Nanog were parallel to beta cell differentiation. Also, the levels of HDAC1 and acetylated H3/H4 were increased and methylated H3 was decreased by VPA treatment. In addition, we have detected over expression in genes of miR‐18a‐5p , miR‐19b‐5p , miR‐30d‐3p , miR‐124 , miR‐146a‐5p , miR‐184 , miR‐335 , and miR‐433‐5p in parallel to beta cell differentiation. As the conclusion, this study is important for understanding the epigenetic mechanism that controls the beta cell differentation and it suggests new molecules that can be used for diagnosis, and treatment of diabetes. J. Cell. Biochem. 119: 455–467, 2018. ? 2017 Wiley Periodicals, Inc.
机译:摘要在这项研究中,我们旨在研究类I HDACS和葡萄糖对胰岛衍生间充质干细胞(PI-MSCs)的分化对β细胞的影响。 β细胞分化通过流式细胞术分析和PDX1,PAX4,PAX6,NKX6.1,NGN3,INS2和GLUT2的基因表达水平确定。结果,丙络酸是I类HDACs的抑制剂,导致PI-MSCs中的最高β细胞分化。然而,该组中的细胞在分化的早期阶段。葡萄糖共同给予该组携带较高水平的分化,但这些新形成的β细胞不起作用。此外,减少了OCT3 / 4,C-MYC和NANOG与β细胞分化平行的多能性因素的水平。而且,通过VPA处理增加了HDAC1和乙酰化H3 / H4的水平,并且通过VPA处理降低了甲基化H3。此外,我们检测到miR-18a-5p,miR-19b-5p,miR-30d-3p,miR-124,miR-146a-5p,miR-184,miR-335和mir- 433-5P平行于β细胞分化。结论是,本研究对于了解控制β细胞分化的表观遗传机制非常重要,并且它表明可以用于诊断和治疗糖尿病的新分子。 J.Cell。生物学习。 119:455-467,2018 2017年Wiley期刊,Inc。

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