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通过将外源性Nurr1和Foxa2表达调整至其生理模式在体外生成成熟的中脑型多巴胺神经元。

In vitro generation of mature midbrain-type dopamine neurons by adjusting exogenous Nurr1 and Foxa2 expressions to their physiologic patterns.

作者信息

Kim Taeho, Song Jae-Jin, Puspita Lesly, Valiulahi Parvin, Shim Jae-Won, Lee Sang-Hun

机构信息

Department of Biochemistry and Molecular Biology, College of Medicine, Hanyang University, Seoul, Korea.

Graduate School of Biomedical Science and Engineering, Hanyang University, Seoul, Korea.

出版信息

Exp Mol Med. 2017 Mar 10;49(3):e300. doi: 10.1038/emm.2016.163.

Abstract

Developmental information aids stem cell biologists in producing tissue-specific cells. Recapitulation of the developmental profile of a specific cell type in an in vitro stem cell system provides a strategy for manipulating cell-fate choice during the differentiation process. Nurr1 and Foxa2 are potential candidates for genetic engineering to generate midbrain-type dopamine (DA) neurons for experimental and therapeutic applications in Parkinson's disease (PD), as forced expression of these genes in neural stem/precursor cells (NPCs) yields cells with a complete battery of midbrain DA neuron-specific genes. However, simple overexpression without considering their expression pattern in the developing midbrain tends to generate DA cells without adequate neuronal maturation and long-term maintenance of their phenotype in vitro and in vivo after transplantation. We here show that the physiological levels and timing of Nurr1 and Foxa2 expression can be replicated in NPCs by choosing the right vectors and promoters. Controlled expression combined with a strategy for transgene expression maintenance induced generation of fully mature midbrain-type DA neurons. These findings demonstrate the feasibility of cellular engineering for artificial cell-fate specification.

摘要

发育信息有助于干细胞生物学家生成组织特异性细胞。在体外干细胞系统中重现特定细胞类型的发育概况,为在分化过程中操纵细胞命运选择提供了一种策略。Nurr1和Foxa2是基因工程的潜在候选基因,用于生成中脑型多巴胺(DA)神经元,以用于帕金森病(PD)的实验和治疗应用,因为在神经干/前体细胞(NPC)中强制表达这些基因会产生具有全套中脑DA神经元特异性基因的细胞。然而,简单的过表达而不考虑它们在发育中的中脑的表达模式,往往会产生DA细胞,这些细胞在体外和移植后的体内缺乏足够的神经元成熟和长期的表型维持。我们在此表明,通过选择合适的载体和启动子,可以在NPC中复制Nurr1和Foxa2表达的生理水平和时间。可控表达与转基因表达维持策略相结合,诱导产生了完全成熟的中脑型DA神经元。这些发现证明了细胞工程用于人工细胞命运指定的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f9e/5382556/431d833473b9/emm2016163f1.jpg

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