Mateos-Aparicio Pedro, Bello Sabina A, Rodríguez-Moreno Antonio
Laboratory of Cellular Neuroscience and Plasticity, Department of Physiology, Anatomy and Cell Biology, Universidad Pablo de Olavide, Seville, Spain.
Front Cell Dev Biol. 2020 Aug 26;8:797. doi: 10.3389/fcell.2020.00797. eCollection 2020.
Neurons derived from human induced pluripotent stem cells (hiPSC-derived neurons) offer novel opportunities for the development of preclinical models of human neurodegenerative diseases (NDDs). Recent advances in the past few years have increased substantially the potential of these techniques and have uncovered new challenges that the field is facing. Here, we outline and discuss challenges related to the functional characterization of hiPSC-derived neurons and propose ways to overcome current difficulties. In particular, the enormous variability among studies in the electrical properties of hiPSC-derived neurons and broad differences in cell maturation are factors that impair reproducibility. Furthermore, we discuss how the use of 3D brain organoids are of help in resolving some difficulties posed by 2D cultures. Finally, we elaborate on recent and future advances that may help to overcome the discussed challenges and speed-up progress in the field.
源自人类诱导多能干细胞的神经元(hiPSC 衍生神经元)为人类神经退行性疾病(NDDs)临床前模型的开发提供了新机遇。过去几年的最新进展极大地提升了这些技术的潜力,同时也揭示了该领域面临的新挑战。在此,我们概述并讨论与 hiPSC 衍生神经元功能特性相关的挑战,并提出克服当前困难的方法。特别是,hiPSC 衍生神经元电特性研究之间的巨大差异以及细胞成熟度的广泛差异是影响可重复性的因素。此外,我们讨论了使用 3D 脑类器官如何有助于解决二维培养带来的一些困难。最后,我们详细阐述了近期和未来的进展,这些进展可能有助于克服所讨论的挑战并加速该领域的发展。