Srinivasan Akshaya, Toh Yi-Chin
Department of Biomedical Engineering, National University of Singapore, Singapore, Singapore.
Singapore Institute for Neurotechnology (SINAPSE), National University of Singapore, Singapore, Singapore.
Front Mol Neurosci. 2019 Feb 22;12:39. doi: 10.3389/fnmol.2019.00039. eCollection 2019.
Neural crest cells (NCCs) are a multipotent and migratory cell population in the developing embryo that contribute to the formation of a wide range of tissues. Defects in the development, differentiation and migration of NCCs give rise to a class of syndromes and diseases that are known as neurocristopathies. NCC development has historically been studied in a variety of animal models, including xenopus, chick and mouse. In the recent years, there have been efforts to study NCC development and disease in human specific models, with protocols being established to derive NCCs from human pluripotent stem cells (hPSCs), and to further differentiate these NCCs to neural, mesenchymal and other lineages. These differentiation platforms are a valuable tool to gain a better understanding of the molecular mechanisms involved in human neural crest development. The use of induced pluripotent stem cells (iPSCs) derived from patients afflicted with neurocristopathies has also enabled the study of defective human NCC development using these platforms. Here, we review the various strategies that have been used to derive NCCs from hPSCs and to specify NCCs into cranial, trunk, and vagal subpopulations and their derivatives. We will also discuss the potential applications of these human specific NCC platforms, including the use of iPSCs for disease modeling and the potential of NCCs for future regenerative applications.
神经嵴细胞(NCCs)是发育中胚胎里的一种多能性迁移细胞群体,对多种组织的形成有贡献。NCCs在发育、分化和迁移方面的缺陷会引发一类被称为神经嵴病的综合征和疾病。历史上,人们在多种动物模型中研究NCC的发育,包括非洲爪蟾、鸡和小鼠。近年来,人们致力于在人类特定模型中研究NCC的发育和疾病,已建立了从人类多能干细胞(hPSCs)中获取NCCs,并将这些NCCs进一步分化为神经、间充质和其他谱系的方案。这些分化平台是深入了解人类神经嵴发育所涉及分子机制的宝贵工具。利用源自患有神经嵴病患者的诱导多能干细胞(iPSCs),也能够借助这些平台研究有缺陷的人类NCC发育。在此,我们综述了用于从hPSCs中获取NCCs以及将NCCs指定为颅、躯干和迷走亚群及其衍生物的各种策略。我们还将讨论这些人类特定NCC平台的潜在应用,包括利用iPSCs进行疾病建模以及NCCs在未来再生应用中的潜力。