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Role of endogenous neural stem cells in neurological disease and brain repair.

机译:内源性神经干细胞在神经系统疾病和脑修复中的作用。

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These examples show that stem-cell-based therapy of neuro-psychiatric disorders will not follow a single scheme, but rather include widely different approaches. This is in accordance with the notion that the impact of stem cell biology on neurology will be fundamental, providing a shift in perspective, rather than introducing just one novel therapeutic tool. Stem cell biology, much like genomics and proteomics, offers a "view from within" with an emphasis on a theoretical or real potential and thereby the inherent openness, which is central to the concept of stem cells. Thus, stem cell biology influences many other, more traditional therapeutic approaches, rather than introducing one distinct novel form of therapy. Substantial advances have been made i n neural stemcell research during the years. With the identification of stem and progenitor cells in the adult brain and the complex interaction of different stem cell compartments in the CNS--both, under physiological and pathological conditions--new questions arise: What is the lineage relationship between t he different progenitor cells in the CNS and how much lineage plasticity exists? What are the signals controlling proliferation and differentiation of neural stem cells and can these be utilized to allow repair of the CNS? Insights in these questions will help to better understand the role of stem cells during development and aging and the possible relation of impaired or disrupted stem cell function and their impact on both the development and treatment of neurological disease. A number o f studies have indicated a limited neuronal and glial regeneration certain pathological conditions. These fundamental observations have already changed our view on understanding neurological disease and the brain's capacity for endogenous repair. The following years will have to show how we can influence andmodulate endogenous repair nisms by increasing the cellular plasticity in the young and aged CNS.
机译:这些例子表明,基于干细胞的神经精神疾病疗法将不会遵循单一方案,而是会包括多种不同的方法。这符合这样的观念,即干细胞生物学对神经病学的影响将是根本的,从而提供观点的转变,而不仅仅是引入一种新颖的治疗工具。与基因组学和蛋白质组学很像,干细胞生物学提供了“从内而外”的视角,重点是理论或实际潜力以及内在的开放性,这对于干细胞的概念至关重要。因此,干细胞生物学影响许多其他更传统的治疗方法,而不是引入一种独特的新颖治疗形式。这些年来,神经干细胞研究取得了重大进展。随着成年大脑中干细胞和祖细胞的鉴定以及中枢神经系统中不同干细胞区室的复杂相互作用-在生理和病理条件下-都出现了新问题:不同祖细胞之间的谱系关系是什么在中枢神经系统中存在多少谱系可塑性?控制神经干细胞增殖和分化的信号是什么,这些信号可用于修复中枢神经系统吗?这些问题的见解将有助于更好地理解干细胞在发育和衰老过程中的作用,以及干细胞功能受损或破坏的可能关系,以及它们对神经系统疾病发展和治疗的影响。大量研究表明,某些病理状况限制了神经元和神经胶质的再生。这些基本的观察已经改变了我们对理解神经系统疾病和大脑内源性修复能力的看法。接下来的几年将不得不展示我们如何通过增加年轻和老年中枢神经系统的细胞可塑性来影响和调节内源性修复机制。

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