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Molecular Diversity of Midbrain Development in Mouse, Human, and Stem Cells

机译:小鼠,人类和干细胞中脑发育的分子多样性

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Understanding human embryonic ventral midbrain is of major interest for Parkinson's disease. However, the cell types, their gene expression dynamics, and their relationship to commonly used rodent models remain to be defined. We performed single-cell RNA sequencing to examine ventral midbrain development in human and mouse. We found 25 molecularly defined human cell types, including five subtypes of radial glia-like cells and four progenitors. In the mouse, two mature fetal dopaminergic neuron subtypes diversified into five adult classes during postnatal development. Cell types and gene expression were generally conserved across species, but with clear differences in cell proliferation, developmental timing, and dopaminergic neuron development. Additionally, we developed a method to quantitatively assess the fidelity of dopaminergic neurons derived from human pluripotent stem cells, at a single-cell level. Thus, our study provides insight into the molecular programs controlling human midbrain development and provides a foundation for the development of cell replacement therapies.
机译:了解人类胚胎腹中脑是帕金森氏病的主要兴趣所在。然而,细胞类型,它们的基因表达动力学及其与常用啮齿动物模型的关系仍有待确定。我们进行了单细胞RNA测序,以检查人和小鼠腹中脑的发育。我们发现了25种分子定义的人类细胞类型,包括放射状胶质样细胞的5种亚型和4种祖细胞。在小鼠中,两种成熟的胎儿多巴胺能神经元亚型在产后发育过程中分为五个成年类别。细胞类型和基因表达在整个物种中通常是保守的,但是在细胞增殖,发育时间和多巴胺能神经元发育方面存在明显差异。此外,我们开发了一种方法,可以在单细胞水平上定量评估源自人多能干细胞的多巴胺能神经元的保真度。因此,我们的研究为控制人类中脑发育的分子程序提供了见识,并为细胞替代疗法的发展提供了基础。

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