Institute of Molecular Genetics, National Research Center "Kurchatov Institute", Kurchatov Square 2, 123182 Moscow, Russia.
Int J Mol Sci. 2021 Mar 25;22(7):3381. doi: 10.3390/ijms22073381.
Human induced pluripotent stem (iPS) cells have the potential to give rise to a new era in Parkinson's disease (PD) research. As a unique source of midbrain dopaminergic (DA) neurons, iPS cells provide unparalleled capabilities for investigating the pathogenesis of PD, the development of novel anti-parkinsonian drugs, and personalized therapy design. Significant progress in developmental biology of midbrain DA neurons laid the foundation for their efficient derivation from iPS cells. The introduction of 3D culture methods to mimic the brain microenvironment further expanded the vast opportunities of iPS cell-based research of the neurodegenerative diseases. However, while the benefits for basic and applied studies provided by iPS cells receive widespread coverage in the current literature, the drawbacks of this model in its current state, and in particular, the aspects of differentiation protocols requiring further refinement are commonly overlooked. This review summarizes the recent data on general and subtype-specific features of midbrain DA neurons and their development. Here, we review the current protocols for derivation of DA neurons from human iPS cells and outline their general weak spots. The associated gaps in the contemporary knowledge are considered and the possible directions for future research that may assist in improving the differentiation conditions and increase the efficiency of using iPS cell-derived neurons for PD drug development are discussed.
人诱导多能干细胞(iPS)有可能开创帕金森病(PD)研究的新纪元。作为中脑多巴胺能(DA)神经元的独特来源,iPS 细胞为研究 PD 的发病机制、开发新型抗帕金森药物和个性化治疗方案提供了无与伦比的能力。中脑 DA 神经元发育生物学的重大进展为其从 iPS 细胞中有效分化奠定了基础。引入 3D 培养方法来模拟大脑微环境,进一步扩大了基于 iPS 细胞的神经退行性疾病研究的广阔机会。然而,尽管 iPS 细胞在基础和应用研究方面的优势在当前文献中得到了广泛报道,但该模型在当前状态下的缺点,特别是需要进一步改进的分化方案方面,通常被忽视。本文综述了中脑 DA 神经元及其发育的一般和亚型特异性特征的最新数据。在这里,我们回顾了从人 iPS 细胞中诱导 DA 神经元的当前方案,并概述了它们的一般弱点。考虑到当代知识中的空白,并讨论了未来可能有助于改善分化条件和提高使用 iPS 细胞衍生的神经元进行 PD 药物开发效率的研究方向。