造血细胞的基因治疗。

S Karlsson
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引用次数: 0

摘要

造血干细胞(hsc)的基因治疗研究已经进行了15年。造血干细胞可以很容易地用逆转录病毒载体(Moloney小鼠白血病病毒= MMLV)在小鼠体内转导,并且可以在长期重组的小鼠中实现转移基因的表达。虽然两性性MMLV逆转录病毒载体可以高效地转导人造血祖细胞,并且在其后代细胞中很容易获得转移基因的表达,但在临床试验中,将基因有效地转移到人造血干细胞中已被证明是一个问题。目前,许多实验室正在努力提高逆转录病毒载体的基因转移效率,或者开发新的载体,以比目前更高的效率转导静止的人类造血干细胞。这篇简短的综述将讨论正在探索的两个主要研究领域。首先,研究人类造血,以了解控制造血干细胞在体外和体内行为的分子和细胞机制。其次,开发能够将基因转移到静止人类造血干细胞的新载体。
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Gene therapy of haematopoietic cells.

Gene therapy of haematopoietic stem cells (HSCs) has been under investigation for 15 years. HSCs can be easily transduced with retroviral vectors (Moloney murine leukaemia virus = MMLV) in the mouse and expression of transferred genes can be achieved in long-term reconstituted mice. While human haematopoietic progenitor cells can be transduced with high efficiency using amphotropic MMLV retroviral vectors, and expression of the transferred gene is easily obtained in their progeny cells, it has proven problematic to transfer genes efficiently into the HSCs of humans in clinical trials. Efforts are now under way, in many laboratories, to increase the gene transfer efficiency of retroviral vectors, or alternatively, to develop new vectors that can transduce quiescent human HSCs with higher efficiency than is currently possible. This brief review will address the two main research areas that are being explored. Firstly, investigations in human haematopoiesis to gain understanding into the molecular and cellular mechanisms that control HSC behaviour in vitro and in vivo. Secondly, development of new vectors that can transfer genes to quiescent human HSCs.

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