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神经干细胞在肌萎缩侧索硬化症小鼠模型中的多模态作用:一项荟萃分析。

Multimodal actions of neural stem cells in a mouse model of ALS: a meta-analysis.

机构信息

Departments of Neurosurgery and PM&R, Brigham & Women's Hospital, Spaulding Rehabilitation Hospital and Harvard Medical School, Boston, MA 02115, USA.

出版信息

Sci Transl Med. 2012 Dec 19;4(165):165ra164. doi: 10.1126/scitranslmed.3004579.

Abstract

Amyotrophic lateral sclerosis (ALS) is a lethal disease characterized by the unremitting degeneration of motor neurons. Multiple processes involving motor neurons and other cell types have been implicated in its pathogenesis. Neural stem cells (NSCs) perform multiple actions within the nervous system to fulfill their functions of organogenesis and homeostasis. We test the hypothesis that transplanted, undifferentiated multipotent migratory NSCs may help to ameliorate an array of pathological mechanisms in the SOD1(G93A) transgenic mouse model of ALS. On the basis of a meta-analysis of 11 independent studies performed by a consortium of ALS investigators, we propose that transplanted NSCs (both mouse and human) can slow both the onset and the progression of clinical signs and prolong survival in ALS mice, particularly if regions sustaining vital functions such as respiration are rendered chimeric. The beneficial effects of transplanted NSCs seem to be mediated by a number of actions including their ability to produce trophic factors, preserve neuromuscular function, and reduce astrogliosis and inflammation. We conclude that the widespread, pleiotropic, modulatory actions exerted by transplanted NSCs may represent an accessible therapeutic application of stem cells for treating ALS and other untreatable degenerative diseases.

摘要

肌萎缩侧索硬化症(ALS)是一种致命疾病,其特征是运动神经元的持续退化。多种涉及运动神经元和其他细胞类型的过程已被牵连到其发病机制中。神经干细胞(NSCs)在神经系统中发挥多种作用,以完成其器官发生和稳态的功能。我们检验了一个假设,即移植的未分化多能迁移性 NSCs 可能有助于改善 SOD1(G93A)转基因 ALS 小鼠模型中的一系列病理机制。基于 ALS 研究人员联盟进行的 11 项独立研究的荟萃分析,我们提出移植的 NSCs(无论是小鼠还是人类)都可以减缓临床症状的发作和进展,并延长 ALS 小鼠的存活时间,特别是如果维持呼吸等重要功能的区域被嵌合化。移植的 NSCs 的有益效果似乎是通过多种作用介导的,包括它们产生营养因子、保护神经肌肉功能以及减少星形胶质细胞增生和炎症的能力。我们得出结论,移植的 NSCs 发挥的广泛、多效、调节作用可能代表了一种可用于治疗 ALS 和其他无法治疗的退行性疾病的干细胞治疗的可行方法。

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