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高效的方法从人源和鼠源胚胎干细胞和诱导多能干细胞中获得同质的背侧神经祖细胞。

Highly efficient methods to obtain homogeneous dorsal neural progenitor cells from human and mouse embryonic stem cells and induced pluripotent stem cells.

机构信息

Center for Reproductive Medicine, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, China.

Henan Key Laboratory of Reproduction and Genetics, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, China.

出版信息

Stem Cell Res Ther. 2018 Mar 15;9(1):67. doi: 10.1186/s13287-018-0812-6.

Abstract

BACKGROUND

Embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs) have been widely used to generate cellular models harboring specific disease-related genotypes. Of particular importance are ESC and iPSC applications capable of producing dorsal telencephalic neural progenitor cells (NPCs) that are representative of the cerebral cortex and overcome the challenges of maintaining a homogeneous population of cortical progenitors over several passages in vitro. While previous studies were able to derive NPCs from pluripotent cell types, the fraction of dorsal NPCs in this population is small and decreases over several passages. Here, we present three protocols that are highly efficient in differentiating mouse and human ESCs, as well as human iPSCs, into a homogeneous and stable population of dorsal NPCs. These protocols will be useful for modeling cerebral cortical neurological and neurodegenerative disorders in both mouse and human as well as for high-throughput drug screening for therapeutic development.

METHODS

We optimized three different strategies for generating dorsal telencephalic NPCs from mouse and human pluripotent cell types through single or double inhibition of bone morphogenetic protein (BMP) and/or SMAD pathways. Mouse and human pluripotent cells were aggregated to form embryoid bodies in suspension and were treated with dorsomorphin alone (BMP inhibition) or combined with SB431542 (double BMP/SMAD inhibition) during neural induction. Neural rosettes were then selected from plated embryoid bodies to purify the population of dorsal NPCs. We tested the expression of key dorsal NPC markers as well as nonectodermal markers to confirm the efficiency of our three methods in comparison to published and commercial protocols.

RESULTS

Single and double inhibition of BMP and/or SMAD during neural induction led to the efficient differentiation of dorsal NPCs, based on the high percentage of PAX6-positive cells and the NPC gene expression profile. There were no statistically significant differences in the variation of PAX6 and SOX1-positive NPCs between the two human pluripotent cell-derived methods; therefore, both methods are suitable for producing stable dorsal NPCs. When further differentiated into mature neurons, NPCs gave rise to a population of almost exclusively forebrain cortical neurons, confirming the dorsal fate commitment of the progenitors.

CONCLUSIONS

The methods described in this study show improvements over previously published studies and are highly efficient at differentiating human and mouse pluripotent cell types into dorsal PAX6-positive NPCs and eventually into forebrain cortical neurons.

摘要

背景

胚胎干细胞(ESCs)和诱导多能干细胞(iPSCs)已被广泛用于生成具有特定疾病相关基因型的细胞模型。特别重要的是,能够产生代表大脑皮层的背侧端脑神经祖细胞(NPCs)并克服在体外传代过程中维持皮质祖细胞同质群体的挑战的 ESC 和 iPSC 应用。虽然以前的研究能够从多能细胞类型中衍生 NPCs,但该群体中背侧 NPCs 的比例很小,并且在传代过程中会减少。在这里,我们提出了三种非常有效的方案,可将小鼠和人 ESC 以及人 iPSC 高效分化为同质且稳定的背侧 NPC 群体。这些方案将有助于在小鼠和人中对大脑皮层神经和神经退行性疾病进行建模,以及对治疗性药物开发进行高通量药物筛选。

方法

我们通过单或双抑制骨形态发生蛋白(BMP)和/或 SMAD 途径,从小鼠和人多能细胞类型中生成背侧端脑 NPCs 的三种不同策略进行了优化。将小鼠和人多能细胞聚集在悬浮液中形成类胚体,并在神经诱导过程中单独用 Dorsomorphin(BMP 抑制)或与 SB431542 联合处理(双 BMP/SMAD 抑制)。然后从贴壁类胚体中选择神经玫瑰花结以纯化背侧 NPC 群体。我们测试了关键背侧 NPC 标志物以及非外胚层标志物的表达,以确认与已发表和商业方案相比,我们三种方法的效率。

结果

基于高比例的 PAX6 阳性细胞和 NPC 基因表达谱,在神经诱导过程中单或双 BMP 和/或 SMAD 抑制可有效诱导背侧 NPC 分化。在两种源自人多能细胞的方法中,PAX6 和 SOX1 阳性 NPC 的变化之间没有统计学上的显著差异;因此,两种方法均适合产生稳定的背侧 NPC。当进一步分化为成熟神经元时,NPC 产生的神经元群体几乎完全是前脑皮质神经元,证实了祖细胞的背侧命运决定。

结论

本研究中描述的方法与已发表的研究相比有所改进,可高效地将人源和鼠源多能细胞类型分化为背侧 PAX6 阳性 NPCs,最终分化为前脑皮质神经元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace9/5856210/feb4069c19a1/13287_2018_812_Fig1_HTML.jpg

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