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Generation of insulin-producing cells from human induced pluripotent stem cells on PLLA/PVA nanofiber scaffold

机译:在PLLA / PVA纳米纤维支架上由人诱导的多能干细胞生成胰岛素产生细胞

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Pancreatic tissue engineering as a therapeutic option for restoring and maintenance of damaged pancreas function has a special focus to using synthetic Scaffolds. This study was designed to evaluate pancreatic differentiation of human induced pluripotent stem cells (hiPSCs) on poly-L-lactic acid and polyvinyl alcohol (PLLA/PVA) scaffolds as 3?D matrix. During differentiation process, morphology of cells gradually changed and iPSCs derived insulin producing cells (iPSCs-IPCs) formed spherical shaped cell aggregation that was the typical shape of islets of pancreas. The highly efficient differentiation of iPSCs into a relatively homogeneous population of IPCs was shown by immunostaining. Real-time reverse transcription polymerase chain reaction (RT-PCR) results demonstrated that iPSCs-IPCs expressed pancreas-specific transcription factors (Pdx1, insulin, glucagon and Ngn3). The expressions of these transcription factors in PLLA/PVA scaffold were significantly higher than 2?D groups. Furthermore, we showed that concentration of insulin and C-peptide in PLLA/PVA scaffold and/or 2?D culture in response to various concentrations of glucose increased but the difference between them were not significant. Altogether the current results demonstrated that PLLA/PVA scaffold could provide the microenvironment that promotes the pancreatic differentiation of iPSCs, up-regulate pancreatic-specific transcription factors and improved metabolic activity.
机译:胰腺组织工程作为恢复和维持受损胰腺功能的治疗选择,特别关注使用合成支架。本研究旨在评估人类诱导的多能干细胞(hiPSC)在聚L-乳酸和聚乙烯醇(PLLA / PVA)支架上作为3D基质的胰腺分化。在分化过程中,细胞的形态逐渐改变,iPSCs衍生的胰岛素产生细胞(iPSCs-IPCs)形成了球形的细胞聚集体,这是胰岛的典型形状。通过免疫染色显示了iPSC高效分化为相对均一的IPC群体。实时逆转录聚合酶链反应(RT-PCR)结果表明,iPSCs-IPCs表达了胰腺特异性转录因子(Pdx1,胰岛素,胰高血糖素和Ngn3)。这些转录因子在PLLA / PVA支架中的表达明显高于2αD组。此外,我们表明,响应于各种葡萄糖浓度,PLLA / PVA支架和/或2?D培养物中胰岛素和C肽的浓度增加,但两者之间的差异并不显着。总的来说,目前的结果表明,PLLA / PVA支架可以提供促进iPSC胰腺分化,上调胰腺特异性转录因子和改善代谢活性的微环境。

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