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首页> 外文期刊>Drug news & perspectives >Insertional mutagenesis and development of malignancies induced by integrating gene delivery systems: implications for the design of safer gene-based interventions in patients.
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Insertional mutagenesis and development of malignancies induced by integrating gene delivery systems: implications for the design of safer gene-based interventions in patients.

机译:通过整合基因传递系统诱导的插入突变和恶性肿瘤的发展:对设计基于患者的更安全的基于基因的干预措施的意义。

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Effective gene-based interventions for the treatment of genetic disorders, neurodegenerative diseases and cardiovascular maladies require longterm transgene expression in target cells. Integrating viral vector systems based on the genera of the retroviridae and on adeno-associated virus are suitable tools, as the integration of viral vector genomes into the cellular chromosomal DNA allows for a more stable and long-lasting transgene expression than episomal gene-delivery models. Two nonviral gene-delivery systems with integrating properties have also been developed. These are based on the Sleeping Beauty DNA transposon system and on the Streptomyces bacteriophage integrase phiC31. However, the integration of recombinant vector systems may damage the natural genetic arrangement of the target cell. Such genetic alterations are termed insertional mutagenesis, which might result in malignant cell transformation. Insertional mutagenesis caused leukemia in five patients who participated in clinical trials for the treatment of severe combined immunodeficiency (SCID)-X1; sadly, one of the patients died. Gene therapists had to assess the real risk-versus-benefit ratio for the use of retroviral vectors in patients and devise novel strategies to minimize the occurrence of insertional mutagenesis-related malignancies. In this respect, a particular emphasis was placed on the engineering of enhancer-less self-inactivating retroviridae-based systems.
机译:用于治疗遗传性疾病,神经退行性疾病和心血管疾病的基于基因的有效干预措施需要在靶细胞中长期表达基因。基于逆转录病毒科和腺相关病毒的病毒载体系统的整合是合适的工具,因为将病毒载体基因组整合到细胞染色体DNA中可以使转基因表达比游离基因传递模型更加稳定和持久。还开发了两个具有整合特性的非病毒基因递送系统。这些是基于Sleeping Beauty DNA转座子系统和链霉菌噬菌体整合酶phiC31。但是,重组载体系统的整合可能会破坏靶细胞的自然遗传安排。这种遗传改变被称为插入诱变,可能导致恶性细胞转化。插入诱变导致五名患者白血病,他们参加了用于治疗重症合并免疫缺陷症(SCID)-X1的临床试验。可悲的是,其中一名患者死亡。基因治疗师必须评估在患者中使用逆转录病毒载体的实际风险与获益比,并设计出新的策略,以最大程度地减少与插入诱变相关的恶性肿瘤的发生。在这方面,特别强调了基于无增强剂的自灭活逆转录病毒科系统的工程设计。

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