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Hematopoiesis from pluripotent stem cell lines.

机译:来自多能干细胞系的造血作用。

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Embryonic stem cells (ESCs) can differentiate into various types of hematopoietic cells (HPCs) when placed in an appropriate environment. Various methods for the differentiation of ESCs into specific HPC lineages have been developed using mouse ESCs. These ESC-differentiation methods have been utilized also as an in vitro model to investigate hematopoiesis in embryos and they provided critical perceptions into it. These methods have been adapted for use with human ESCs, which have the possibility of being employed in regenerative medicine; further improvement of these methods may lead to the efficient production of HPCs for use in transfusions. The generation of transplantable hematopoietic stem cells is a medical goal that is still difficult to achieve. Recently, induced pluripotent stem (iPS) cells have been established from differentiated cells. Thereby, iPS cells have expanded further possibilities of the use of pluripotent stem cell lines in clinical application. Indeed, iPS cells have been established from cells with disease genes and those which have undergone reprogramming and targeting have generated phenotypically normal HPCs. Here, we mainly summarize the recent progress in research on hematopoiesis conducted with ESCs and iPS cells.
机译:当放置在适当的环境中时,胚胎干细胞(ESC)可以分化为各种类型的造血细胞(HPC)。使用小鼠ESC已经开发出多种用于将ESC分化为特定HPC谱系的方法。这些ESC分化方法也已被用作体外模型来研究胚胎中的造血作用,并为它们提供了关键的认识。这些方法已经适合与人类胚胎干细胞一起使用,而人类胚胎干细胞可能被用于再生医学。这些方法的进一步改进可能导致有效生产用于输血的HPC。可移植造血干细胞的产生是仍然难以实现的医学目标。最近,已经从分化细胞中建立了诱导性多能干(iPS)细胞。因此,iPS细胞为临床应用中多能干细胞系的使用提供了更多的可能性。实际上,已经从具有疾病基因的细胞中建立了iPS细胞,经过重编程和靶向的细胞已经产生了表型正常的HPC。在这里,我们主要总结使用ESC和iPS细胞进行的造血研究的最新进展。

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