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胚胎干细胞及其在运动神经元疾病再生医学治疗方法中的应用前景。

Embryonic stem cells and prospects for their use in regenerative medicine approaches to motor neurone disease.

作者信息

Christou Y A, Moore H D, Shaw P J, Monk P N

机构信息

Academic Unit of Neurology, Section of Neuroscience, University of Sheffield, UK.

出版信息

Neuropathol Appl Neurobiol. 2007 Oct;33(5):485-98. doi: 10.1111/j.1365-2990.2007.00883.x.

Abstract

Human embryonic stem cells are pluripotent cells with the potential to differentiate into any cell type in the presence of appropriate stimulatory factors and environmental cues. Their broad developmental potential has led to valuable insights into the principles of developmental and cell biology and to the proposed use of human embryonic stem cells or their differentiated progeny in regenerative medicine. This review focuses on the prospects for the use of embryonic stem cells in cell-based therapy for motor neurone disease or amyotrophic lateral sclerosis, a progressive neurodegenerative disease that specifically affects upper and lower motor neurones and leads ultimately to death from respiratory failure. Stem cell-derived motor neurones could conceivably be used to replace the degenerated cells, to provide authentic substrates for drug development and screening and for furthering our understanding of disease mechanisms. However, to reliably and accurately culture motor neurones, the complex pathways by which differentiation occurs in vivo must be understood and reiterated in vitro by embryonic stem cells. Here we discuss the need for new therapeutic strategies in the treatment of motor neurone disease, the developmental processes that result in motor neurone formation in vivo, a number of experimental approaches to motor neurone production in vitro and recent progress in the application of stem cells to the treatment and understanding of motor neurone disease.

摘要

人类胚胎干细胞是多能细胞,在适当的刺激因子和环境信号存在的情况下,具有分化为任何细胞类型的潜力。它们广泛的发育潜力为发育生物学和细胞生物学原理带来了有价值的见解,并促使人们提出在再生医学中使用人类胚胎干细胞或其分化后代的设想。本综述聚焦于胚胎干细胞在运动神经元疾病或肌萎缩侧索硬化症(一种进行性神经退行性疾病,专门影响上下运动神经元,最终导致呼吸衰竭死亡)的细胞治疗中的应用前景。理论上,干细胞衍生的运动神经元可用于替代退化细胞,为药物开发和筛选提供真实的底物,并增进我们对疾病机制的理解。然而,为了可靠且准确地培养运动神经元,必须了解体内发生分化的复杂途径,并由胚胎干细胞在体外进行重现。在此,我们讨论了治疗运动神经元疾病所需的新治疗策略、体内导致运动神经元形成的发育过程、体外产生运动神经元的一些实验方法,以及干细胞在治疗和理解运动神经元疾病方面应用的最新进展。

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