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Chimeric animal models in human stem cell biology.

机译:人类干细胞生物学中的嵌合动物模型。

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The clinical use of stem cells for regenerative medicine is critically dependent on preclinical studies in animal models. In this review we examine some of the key issues and challenges in the use of animal models to study human stem cell biology-experimental standardization, body size, immunological barriers, cell survival factors, fusion of host and donor cells, and in vivo imaging and tracking. We focus particular attention on the various imaging modalities that can be used to track cells in living animals, comparing their strengths and weaknesses and describing technical developments that are likely to lead to new opportunities for the dynamic assessment of stem cell behavior in vivo. We then provide an overview of some of the most commonly used animal models, their advantages and disadvantages, and examples of their use for xenotypic transplantation of human stem cells, with separate reviews of models involving rodents, ungulates, nonhuman primates, and the chicken embryo. As the use of human somatic, embryonic, and induced pluripotent stem cells increases, so too will the range of applications for these animal models. It is likely that increasingly sophisticated uses of human/animal chimeric models will be developed through advances in genetic manipulation, cell delivery, and in vivo imaging.
机译:干细胞在再生医学中的临床应用在很大程度上取决于动物模型的临床前研究。在这篇综述中,我们研究了使用动物模型研究人类干细胞生物学中的一些关键问题和挑战-实验标准化,体重,免疫屏障,细胞存活因子,宿主细胞和供体细胞融合以及体内成像和跟踪。我们特别关注可用于追踪活体动物细胞,比较它们的优缺点和描述可能会为体内干细胞行为动态评估带来新机遇的技术发展的各种成像方式。然后,我们概述了一些最常用的动物模型,它们的优缺点以及将其用于人类干细胞异型移植的示例,并分别涉及了啮齿动物,有蹄类动物,非人类灵长类动物和鸡胚的模型。随着人类体细胞,胚胎干细胞和诱导多能干细胞的使用增加,这些动物模型的应用范围也将增加。人类/动物嵌合模型的日益复杂的应用可能会通过基因操作,细胞递送和体内成像方面的发展而发展。

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