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细胞铺展对人多能干细胞衍生神经祖细胞玫瑰花结形成的影响。

Effect of Cell Spreading on Rosette Formation by Human Pluripotent Stem Cell-Derived Neural Progenitor Cells.

作者信息

Townshend Ryan F, Shao Yue, Wang Sicong, Cortez Chari L, Esfahani Sajedeh Nasr, Spence Jason R, O'Shea K Sue, Fu Jianping, Gumucio Deborah L, Taniguchi Kenichiro

机构信息

Department of Cell & Developmental Biology, University of Michigan Medical School, Ann Arbor, MI, United States.

Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, United States.

出版信息

Front Cell Dev Biol. 2020 Oct 15;8:588941. doi: 10.3389/fcell.2020.588941. eCollection 2020.

Abstract

Neural rosettes (NPC rosettes) are radially arranged groups of cells surrounding a central lumen that arise stochastically in monolayer cultures of human pluripotent stem cell (hPSC)-derived neural progenitor cells (NPC). Since NPC rosette formation is thought to mimic cell behavior in the early neural tube, these rosettes represent important models for the study of neural tube morphogenesis. However, using current protocols, NPC rosette formation is not synchronized and results are inconsistent among different hPSC lines, hindering quantitative mechanistic analyses and challenging live cell imaging. Here, we report a rapid and robust protocol to induce rosette formation within 6 h after evenly-sized "colonies" of NPC are generated through physical cutting of uniformly polarized NESTIN/PAX6/PAX3/DACH1 NPC monolayers. These NPC rosettes show apically polarized lumens studded with primary cilia. Using this assay, we demonstrate reduced lumenal size in the absence of , an important apical determinant recently identified as a candidate gene for juvenile Parkinsonism. Interestingly, time lapse imaging reveals that, in addition to radial organization and apical lumen formation, cells within cut NPC colonies initiate rapid basally-driven spreading. Further, using chemical, genetic and biomechanical tools, we show that NPC rosette morphogenesis requires this basal spreading activity and that spreading is tightly regulated by Rho/ROCK signaling. This robust and quantitative NPC rosette platform provides a sensitive system for the further investigation of cellular and molecular mechanisms underlying NPC rosette morphogenesis.

摘要

神经玫瑰花结(NPC玫瑰花结)是围绕中央管腔呈放射状排列的细胞群,在人多能干细胞(hPSC)衍生的神经祖细胞(NPC)的单层培养中随机出现。由于NPC玫瑰花结的形成被认为模拟了早期神经管中的细胞行为,这些玫瑰花结代表了研究神经管形态发生的重要模型。然而,使用当前的方案,NPC玫瑰花结的形成不同步,并且在不同的hPSC系之间结果不一致,这阻碍了定量机制分析并对活细胞成像提出了挑战。在这里,我们报告了一种快速且可靠的方案,通过对均匀极化的NESTIN/PAX6/PAX3/DACH1 NPC单层进行物理切割,在生成大小均匀的NPC“集落”后6小时内诱导玫瑰花结形成。这些NPC玫瑰花结显示出顶端极化的管腔,上面布满了初级纤毛。使用该检测方法,我们证明了在缺乏 (最近被鉴定为青少年帕金森病候选基因的一种重要顶端决定因素)的情况下管腔尺寸减小。有趣的是,延时成像显示,除了放射状组织和顶端管腔形成外,切割后的NPC集落内的细胞还开始快速进行由基底驱动的扩散。此外,使用化学、遗传和生物力学工具,我们表明NPC玫瑰花结形态发生需要这种基底扩散活动,并且扩散受到Rho/ROCK信号的严格调控。这个强大且定量的NPC玫瑰花结平台为进一步研究NPC玫瑰花结形态发生的细胞和分子机制提供了一个灵敏的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f97b/7593581/47029ecb938c/fcell-08-588941-g001.jpg

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