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首页> 外文期刊>Biochemical and Biophysical Research Communications >Direct conversion of human fibroblasts into dopaminergic neural progenitor-like cells using TAT-mediated protein transduction of recombinant factors
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Direct conversion of human fibroblasts into dopaminergic neural progenitor-like cells using TAT-mediated protein transduction of recombinant factors

机译:TAT介导重组因子的蛋白转导将人成纤维细胞直接转化为多巴胺能神经祖细胞样细胞

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摘要

Recent progress in the generation of induced neural progenitor cells (iNPCs) holds tremendous potential for regenerative medicine. However, a major limitation is the lack of a reliable source for cell replacement therapy in neurological diseases such as Parkinson's disease (PD). Here, we show that the combination of small molecules (SM) and TAT-mediated protein transduction of SOX2 and LMX1a in a 3D sphere culture directly convert human fibroblasts to induced dopaminergic neural progenitor-like cells (iDPCs). The generated iDPCs expressed various NPC markers (SOX2, PAX6, NES77N, OLIG2) and midbrain progenitor markers (EN1, L1WX1a, FOXA2, WNT1) as detected by immunostaining and real-time PCR. Following differentiation, the majority of cells expressed neuronal dopaminergic markers as indicated by co-expression of TH with NURR1, and/or PITX3. We found that SOX2 and LMX1a TAT-mediated protein transduction in the combination of SM could directly convert human fibroblasts to self-renewal iDPCs. In conclusion, to our best knowledge, this is the first report of generation of safe DPCs and may suggest an alternative strategy for cell therapy for the treatment of neurodegenerative disorders. (C) 2015 Elsevier Inc. All rights reserved.
机译:诱导神经祖细胞(iNPC)的产生方面的最新进展为再生医学具有巨大的潜力。但是,主要的局限性是缺乏神经疾病如帕金森氏病(PD)的细胞替代疗法的可靠来源。在这里,我们表明小分子(SM)和TAT介导的SOX2和LMX1a在3D球形培养中的蛋白质转导的组合将人类成纤维细胞直接转化为诱导的多巴胺能神经祖细胞样细胞(iDPCs)。通过免疫染色和实时PCR检测,生成的iDPC表达了各种NPC标记(SOX2,PAX6,NES77N,OLIG2)和中脑祖细胞标记(EN1,L1WX1a,FOXA2,WNT1)。分化后,大多数细胞表达神经元多巴胺能标志物,如TH与NURR1和/或PITX3的共表达所表明的。我们发现,SOX2和LMX1a TAT介导的SM结合可以直接将人成纤维细胞转化为自我更新的iDPC。总而言之,就我们所知,这是安全DPC生成的首次报道,可能为细胞治疗神经退行性疾病提出了另一种策略。 (C)2015 Elsevier Inc.保留所有权利。

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