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逆转录病毒介导的重组Fancc表达增强了Fancc基因敲除造血干细胞的重新增殖能力,并降低了克隆进化的风险。

Retroviral-mediated expression of recombinant Fancc enhances the repopulating ability of Fancc-/- hematopoietic stem cells and decreases the risk of clonal evolution.

作者信息

Haneline Laura S, Li Xiaxin, Ciccone Samantha L M, Hong Ping, Yang Yanzhu, Broxmeyer Hal E, Lee Suk-Hee, Orazi Attilio, Srour Edward F, Clapp D Wade

机构信息

Department of Pediatrics, Herman B Wells Center for Pediatric Research, Indianapolis, IN, USA.

出版信息

Blood. 2003 Feb 15;101(4):1299-307. doi: 10.1182/blood-2002-08-2404. Epub 2002 Oct 10.

Abstract

Fanconi anemia (FA) is a chromosomal instability disorder characterized by a progressive bone marrow (BM) failure and an increased incidence of myeloid leukemias. Children with FA are currently being enrolled in clinical trials to evaluate the safety of retroviral-mediated gene transfer. Previously, we used Fancc(-/-) mice to show that Fancc(-/-) hematopoietic stem cells (HSCs) have a profound defect in repopulating ability. Here, we examined whether retroviral-mediated gene transfer of recombinant Fancc (rFancc) would restore the repopulating ability of Fancc(-/-) HSC to wild-type levels. Fancc(-/-) HSCs transduced with a retrovirus encoding rFancc exhibited a repopulating ability that approached wild-type levels. Interestingly, approximately 30% of primary recipients (7 of 22) transplanted with uncorrected Fancc(-/-) cells developed a range of hematopoietic abnormalities including pancytopenia and BM hypoplasia similar to individuals with FA. Hematopoietic abnormalities were detected in only 1 of 22 mice transplanted with Fancc(-/-) cells transduced with a retrovirus encoding rFancc. Moreover, several mice with hematopoietic defects had progenitors that displayed a marked resistance to IFN-gamma, TNF-alpha, and MIP-1alpha compared to both Fancc(-/-) progenitors, which are uniquely hypersensitive to these cytokines, and wild-type progenitors. These data are analogous to studies using progenitors from patients with myelodysplasia and provide functional support for clonal evolution in these mice. Collectively, these data show that gene transfer can enhance HSC repopulating ability and suppresses the tendency for clonal evolution. These studies also reveal potential detrimental effects of ex vivo manipulation for untransduced Fancc(-/-) HSCs.

摘要

范可尼贫血(FA)是一种染色体不稳定疾病,其特征为进行性骨髓(BM)衰竭以及髓系白血病发病率增加。目前,患有FA的儿童正在参与临床试验,以评估逆转录病毒介导的基因转移的安全性。此前,我们使用Fancc(-/-)小鼠证明Fancc(-/-)造血干细胞(HSC)在重新填充能力方面存在严重缺陷。在此,我们研究了重组Fancc(rFancc)的逆转录病毒介导的基因转移是否会将Fancc(-/-) HSC的重新填充能力恢复到野生型水平。用编码rFancc的逆转录病毒转导的Fancc(-/-) HSC表现出接近野生型水平的重新填充能力。有趣的是,移植未校正的Fancc(-/-)细胞的原发性受体中约30%(22只中的7只)出现了一系列造血异常,包括全血细胞减少和BM发育不全,类似于FA患者。在用编码rFancc的逆转录病毒转导的Fancc(-/-)细胞移植的22只小鼠中,仅在1只小鼠中检测到造血异常。此外,与对这些细胞因子具有独特超敏感性的Fancc(-/-)祖细胞和野生型祖细胞相比,几只具有造血缺陷的小鼠的祖细胞对IFN-γ、TNF-α和MIP-1α表现出明显的抗性。这些数据类似于使用骨髓增生异常患者祖细胞的研究,并为这些小鼠的克隆进化提供了功能支持。总体而言,这些数据表明基因转移可以增强HSC的重新填充能力并抑制克隆进化的趋势。这些研究还揭示了对未转导的Fancc(-/-) HSC进行体外操作的潜在有害影响。

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