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Sonic hedgehog pathway suppression and reactivation accelerates differentiation of rat adipose-derived mesenchymal stromal cells toward insulin-producing cells

机译:声波刺猬途径抑制和再活化加速大鼠脂肪衍生间充质基质细胞对胰岛素的细胞的分化

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Background aims. Sonic hedgehog (Shh) is an intercellular signaling molecule that regulates pancreas development in mammals. Manipulation of Shh signaling pathway can be used as reliable approach to improve the generation of functional insulin-producing cells (IPCs) from mesenchymal stromal cells (MSCs). Methods. In the present study, a novel differentiation protocol was used to produce IPCs from adipose tissue-derived MSCs (ATDMSCs) based on sequential inhibition and reactivation of Shh pathway. ATDMSCs were differentiated into IPCs via a 14-day basic protocol using 1% insulin transferrin selenium (ITS) and 1% nicotinamide in Dulbecco's Modified Eagle's Medium medium. A mixture of 0.25 mu mol/L cyclopamine + 64 ng/mL basic fibroblast growth factor at day 3 of differentiation and 150 ng/mL recombinant Shh at day 11 of differentiation were used, respectively, to promote sequential inhibition and reactivation of Shh pathway. Insulin granule formation, glucose-stimulated insulin secretion and gene expression pattern related to the pancreatic endocrine development and function were analyzed in manipulated and unmanipulated IPCs. Results. IPCs obtained after Shh manipulation secreted higher amounts of insulin in vitro. This phenotype was accompanied by increased expression of both genes critical for beta-cell function and transcription factors associated with their mature phenotype including Pdx1, MafA, Nkx2.2, Nkx6.1, Ngn3, Isl1 and insulin at day 14 of differentiation. Conclusions. Our findings indicated that the early inhibition and late reactivation of Shh signaling pathway during the differentiation of ATDMSCs improved the functional properties of IPCs, a novel method that could be considered as an alternative approach for cell-based therapy for type 1 diabetes.
机译:背景目标。 Sonic Hedgehog(SHH)是一种调节哺乳动物胰腺发育的细胞间信号分子。 SHH信号通路的操纵可作为可靠的方法来改善来自间充质基质细胞(MSCs)的功能性胰岛素产生细胞(IPC)的产生。方法。在本研究中,基于SHH途径的连续抑制和再活化,使用一种新的分化方案来产生来自脂肪组织衍生的MSCs(ATDMSC)的IPC。 ATDMSCs通过14天的基本协议将ATDMSCs分化为IPC,其使用1%胰岛素转铁蛋白硒(ITS)和1%烟酰胺在Dulbecco的改良鹰的中等培养基中。分别使用0.25μmmol/ l环丙氨酸+ 64ng / ml碱性成纤维细胞生长因子的混合物,分别在分化的第11天的第3天,以促进SHH途径的顺序抑制和再活化。在操纵和非法IPC中分析了胰岛素颗粒形成,葡萄糖刺激的胰岛素分泌和与胰腺内分泌发育和功能相关的基因表达模式。结果。在SHH操纵后获得的IPC在体外分泌较高量的胰岛素。该表型伴随着与其成熟表型相关的β细胞功能和转录因子的表达增加,包括PDX1,MAFA,NKX2.2,NKX6.1,NGN3,ISL1和胰岛素在分化的第14天。结论。我们的研究结果表明,在ATDMSCS的分化期间SHH信号通路的早期抑制和后期再活化改善了IPC的功能性质,这是一种新的方法,可以被认为是1型糖尿病的细胞疗法的替代方法。

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