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Advances and Current Challenges Associated with the Use of Human Induced Pluripotent Stem Cells in Modeling Neurodegenerative Disease

机译:在模拟神经变性疾病中使用人诱导多能干细胞的进展和目前挑战

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One of the most profound advances in the last decade of biomedical research has been the development of human induced pluripotent stem cell (hiPSC) models for identification of disease mechanisms and drug discovery. Human iPSC technology has the capacity to revolutionize healthcare and the realization of personalized medicine, but differentiated tissues derived from stem cells come with major criticisms compared to native tissue, including variability in genetic backgrounds, a lack of functional maturity, and differences in epigenetic profiles. It is widely believed that increasing complexity will lead to improved clinical relevance, so methods are being developed that go from a single cell type to various levels of 2-D coculturing and 3-D organoids. As this inevitable trend continues, it will be essential to thoroughly understand the strengths and weaknesses of more complex models and to develop criteria for assessing biological relevance. We believe the payoff of robust, high-throughput, clinically meaningful human stem cell models could be the elimination of often inadequate animal models. To facilitate this transition, we will look at the challenges and strategies of complex model development through the lens of neurodegeneration to encapsulate where the disease-in-a-dish field currently is and where it needs to go to improve. (c) 2018 S. Karger AG, Basel
机译:生物医学研究的最后十年最深刻的进展之一是人类诱导多能干细胞(HIPSC)模型的发展,用于鉴定疾病机制和药物发现。人类社会局技术技术有能力彻底改变医疗保健和实现个性化医学的能力,但与天然组织相比,源自干细胞的分化组织具有重大批评,包括遗传背景下的可变性,缺乏功能成熟度和表观遗传型差异。人们普遍认为,增加复杂性将导致临床相关性改善,因此正在开发从单个细胞类型到各种水平的2-D宽容和3-D细胞体的方法。随着这种不可避免的趋势持续,必须彻底了解更复杂模型的优势和弱点,并制定评估生物相关性的标准。我们相信强劲,高吞吐量,临床有意义的人干模型的收益可能是消除往常不充分的动物模型。为了促进这种过渡,我们将通过神经变性镜片来看看复杂模型开发的挑战和策略,以封装目前疾病的疾病领域以及需要进行改善的地方。 (c)2018年S. Karger AG,巴塞尔

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