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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >In vivo proliferation advantage of genetically corrected hematopoietic stem cells in a mouse model of Fanconi anemia FA-D1
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In vivo proliferation advantage of genetically corrected hematopoietic stem cells in a mouse model of Fanconi anemia FA-D1

机译:基因校正的造血干细胞在范可尼贫血FA-D1小鼠模型中的体内增殖优势

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Fanconi anemia (FA) is an inherited recessive DNA repair disorder mainly characterized by bone marrow failure and cancer predisposition. Studies in mosaic FA patients have shown that reversion of one inherited germ-line mutation resulting in a functional allele in one or a few hematopoietic stem cells (HSCs) can lead to the proliferation advantage of corrected cells, thus over time normalizing the hemato-logic status of the patient. In contrast to these observations, it is still unclearwhether ex vivo genetic correction of FA HSCs also provides a similar proliferation advantage to FA HSCs. Using an FA mouse model with a marked hematopoietic phenotype, the FA-D1 (Brca^271*27) mice, we demonstrate that the lentivirus-mediated gene therapy of FA HSCs results in the progressive expansion of genetically corrected clones in mild-conditioned FA-D1 recipients. Consistent with these data, hematopoietic progenitors from FA recipients progressively be-came mitomycin C resistant and their chromosomal instability was reverted. No evidence of myelodysplasia, leukemias, or abnormal clonal repopulation was observed at multiple time points in primary or secondary recipients. Our results demonstrate that ectopic expression of BRCA2 confers a beneficial in vivo proliferation advantage to FA-D1 HSCs that enables the full hematopoietic repopulation of FA recipients with genetically corrected cells.
机译:范可尼贫血(FA)是一种遗传性隐性DNA修复疾病,其主要特征是骨髓衰竭和癌症易感性。对镶嵌FA患者的研究表明,一种遗传种系突变的逆转可在一个或几个造血干细胞(HSC)中产生功能性等位基因,可导致校正细胞的增殖优势,从而随着时间的流逝使血细胞学正常化患者的状态。与这些观察结果相反,仍不清楚FA HSC的离体遗传校正是否也提供与FA HSC类似的增殖优势。使用具有显着造血表型的FA小鼠模型FA-D1(Brca ^ 271 * 27)小鼠,我们证明了慢病毒介导的FA HSCs基因治疗导致基因修饰的克隆在轻度条件性FA中的逐步扩增-D1收件人。与这些数据一致,来自FA接受者的造血祖细胞逐渐成为丝裂霉素C抗性,并且其染色体不稳定被恢复。在主要或次要接受者的多个时间点均未观察到骨髓增生异常,白血病或克隆种群异常的证据。我们的结果表明,异位表达的BRCA2可为FA-D1 HSC带来有益的体内增殖优势,从而使FA受体的造血细胞重新充满基因校正的细胞。

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