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Stem cell transplantation for Huntington's disease.

机译:干细胞移植治疗亨廷顿舞蹈病。

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摘要

By way of commentary on a recent report that transplanted adult neural progenitor cells can alleviate functional deficits in a rat lesion model of Huntington's disease [Vazey, E.M., Chen, K., Hughes, S.M., Connor, B., 2006. Transplanted adult neural progenitor cells survive, differentiate and reduce motor function impairment in a rodent model of Huntington's disease. Exp. Neurol. 199, 384-396], we review the current status of the field exploring the use of stem cells, progenitor cells and immortalised cell lines to repair the lesioned striatum in animal models of the human disease. A remarkably rich range of alternative cell types have been used in various animal models, several of which exhibit cell survival and incorporation in the host brain, leading to subsequent functional recovery. In comparing the alternatives with the 'gold standard' currently offered by primary tissue grafts, key issues turn out to be: cell survival, differentiation prior to and following implantation into striatal-like phenotypes, integration and connectivity with the host brain, the nature of the electrophysiological, motor and cognitive tests used to assess functional repair, and the mechanisms by which the grafts exert their function. Although none of the alternatives yet has the capacity to match primary fetal tissues for functional repair, that standard is itself limited, and the long term goal must be not just to match but to surpass present capabilities in order to achieve fully functional reconstruction reliably, flexibly, and on demand.
机译:通过对最近报告的评论,移植的成年神经祖细胞可以缓解亨廷顿病大鼠病变模型中的功能缺陷[Vazey,EM,Chen,K.,Hughes,SM,Connor,B.,2006。在亨廷顿舞蹈病的啮齿动物模型中,祖细胞能够存活,分化并减少运动功能损害。经验神经元。 199,384-396],我们回顾了该领域的现状,探讨了在人类疾病动物模型中使用干细胞,祖细胞和永生细胞系修复受损纹状体的方法。在各种动物模型中已经使用了非常丰富的替代细胞类型,其中一些具有细胞存活能力,并且可以整合到宿主脑中,从而导致随后的功能恢复。在将替代品与目前由主要组织移植物提供的“黄金标准”进行比较时,关键问题变成了:细胞存活率,植入纹状体表型前后的分化,与宿主脑的整合和连通性,用于评估功能修复的电生理,运动和认知测试,以及移植物发挥功能的机制。尽管没有其他选择能够匹配原始胎儿组织以进行功能修复,但是该标准本身受到限制,长期目标不仅是要匹配而且要超越现有功能,以便可靠,灵活地实现完整的功能重建。 ,并按需提供。

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