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造血干细胞的可塑性与细胞记忆

Plasticity of hematopoietic stem cells and cellular memory.

作者信息

Avots Andris, Harder Friedrich, Schmittwolf Carolin, Petrovic Suzana, Müller Albrecht M

机构信息

Institut für Medizinische Strahlenkunde und Zellforschung, Universität Würzburg, 97078 Würzburg, Germany.

出版信息

Immunol Rev. 2002 Sep;187:9-21. doi: 10.1034/j.1600-065x.2002.18702.x.

Abstract

Stem cell systems represent an effective and powerful approach for tissue development and regeneration of diverse tissue types. Common and defining features of these exceptional cells are the capacity for self-renewal and the potential for differentiation into multiple mature cell types. Recently, surprising new observations have indicated that stem cells isolated from one adult tissue can also give rise to mature cells of other cell lineages, irrespective of classical germ layer designations. This discovery has resulted in quantum leaps in both scientific knowledge and the potential applications of stem cells. The new findings contradict central dogmas of commitment and differentiation of stem and progenitor cells. However, the true potential of somatic stem cells is just emerging and the new findings have to be defined more fully and integrated into a unifying model of stem cell potential and behavior. Here we analyze the developmental potential of hematopoietic stem cells of mouse and man following their injection into the murine preimplantation blastocyst, an environment that allows the development of all cell lineages. In addition, we discuss the emerging lines of evidence of the developmental plasticity of hematopoietic and other somatic stem cells and consider how cellular memory of transcriptional states is established and may be potentially involved in this phenomenon.

摘要

干细胞系统是一种用于多种组织类型的组织发育和再生的有效且强大的方法。这些特殊细胞的共同且决定性特征是自我更新能力以及分化为多种成熟细胞类型的潜力。最近,令人惊讶的新观察结果表明,从一种成体组织分离出的干细胞也能够产生其他细胞谱系的成熟细胞,而与经典的胚层划分无关。这一发现导致了干细胞科学知识及其潜在应用的巨大飞跃。这些新发现与干细胞和祖细胞定向分化的核心教条相矛盾。然而,成体干细胞的真正潜力才刚刚显现,新发现必须得到更充分的界定,并整合到一个关于干细胞潜力和行为的统一模型中。在这里,我们分析了小鼠和人类造血干细胞注入小鼠植入前囊胚后的发育潜力,植入前囊胚这种环境允许所有细胞谱系的发育。此外,我们讨论了造血干细胞和其他成体干细胞发育可塑性的新证据,并思考转录状态的细胞记忆是如何建立的,以及它可能如何潜在地参与这一现象。

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