Centre for Stem Cell Biology, Department of Biomedical Science, The University of Sheffield, Sheffield S10 2TN, UK.
Department of Biomedical Science and Bateson Centre, University of Sheffield, Sheffield S10 2TN, UK.
Development. 2021 Mar 23;148(6):dev194415. doi: 10.1242/dev.194415.
The anteroposterior axial identity of motor neurons (MNs) determines their functionality and vulnerability to neurodegeneration. Thus, it is a crucial parameter in the design of strategies aiming to produce MNs from human pluripotent stem cells (hPSCs) for regenerative medicine/disease modelling applications. However, the generation of posterior MNs corresponding to the thoracic/lumbosacral spinal cord has been challenging. Although the induction of cells resembling neuromesodermal progenitors (NMPs), the bona fide precursors of the spinal cord, offers a promising solution, the progressive specification of posterior MNs from these cells is not well defined. Here, we determine the signals guiding the transition of human NMP-like cells toward thoracic ventral spinal cord neurectoderm. We show that combined WNT-FGF activities drive a posterior dorsal pre-/early neural state, whereas suppression of TGFβ-BMP signalling pathways promotes a ventral identity and neural commitment. Based on these results, we define an optimised protocol for the generation of thoracic MNs that can efficiently integrate within the neural tube of chick embryos. We expect that our findings will facilitate the comparison of hPSC-derived spinal cord cells of distinct axial identities.
运动神经元(MNs)的前后轴向特征决定了它们的功能和对神经退行性变的易感性。因此,对于旨在从人类多能干细胞(hPSCs)中产生 MNs 以用于再生医学/疾病建模应用的策略设计来说,这是一个关键参数。然而,产生与胸/腰骶脊髓相对应的后 MNs 一直具有挑战性。尽管诱导类似于神经中胚层祖细胞(NMPs)的细胞,即脊髓的真正前体,提供了一种有前途的解决方案,但这些细胞中后 MNs 的逐渐特化还没有很好地定义。在这里,我们确定了指导人 NMP 样细胞向胸侧腹侧脊髓神经上皮过渡的信号。我们表明,WNT-FGF 联合活性驱动后背前/早期神经状态,而抑制 TGFβ-BMP 信号通路则促进腹侧特征和神经承诺。基于这些结果,我们定义了一种优化的方案来产生能够有效地整合到鸡胚神经管内的胸 MNs。我们期望我们的发现将促进对不同轴向特征的 hPSC 衍生脊髓细胞的比较。