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核重编程:再生医学中干细胞功能的关键

Nuclear reprogramming: a key to stem cell function in regenerative medicine.

作者信息

Pomerantz Jason, Blau Helen M

机构信息

Baxter Laboratory in Genetic Pharmacology and Department of Microbiology and Immunology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

Nat Cell Biol. 2004 Sep;6(9):810-6. doi: 10.1038/ncb0904-810.

Abstract

The goal of regenerative medicine is to restore form and function to damaged tissues. One potential therapeutic approach involves the use of autologous cells derived from the bone marrow (bone marrow-derived cells, BMDCs). Advances in nuclear transplantation, experimental heterokaryon formation and the observed plasticity of gene expression and phenotype reported in multiple phyla provide evidence for nuclear plasticity. Recent observations have extended these findings to show that endogenous cells within the bone marrow have the capacity to incorporate into defective tissues and be reprogrammed. Irrespective of the mechanism, the potential for new gene expression patterns by BMDCs in recipient tissues holds promise for developing cellular therapies for both proliferative and post-mitotic tissues.

摘要

再生医学的目标是恢复受损组织的形态和功能。一种潜在的治疗方法涉及使用源自骨髓的自体细胞(骨髓衍生细胞,BMDCs)。核移植、实验性异核体形成的进展以及多个门中报道的基因表达和表型的可塑性为核可塑性提供了证据。最近的观察结果扩展了这些发现,表明骨髓内的内源性细胞有能力整合到有缺陷的组织中并被重新编程。无论机制如何,BMDCs在受体组织中产生新基因表达模式的潜力为开发针对增殖性和有丝分裂后组织的细胞疗法带来了希望。

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