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Gene Therapy: Unaltered repopulation properties of mouse hematopoietic stem cells transduced with lentiviral vectors

机译:基因治疗:慢病毒载体转导的小鼠造血干细胞的不变种群特性

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摘要

Recent studies of retroviral-mediated gene transfer have shown that retroviral integrations themselves may trigger nonmalignant clonal expansion of hematopoietic stem cells (HSCs) in transplant recipients. These observations suggested that previous conclusions of HSC dynamics based on gamma-retroviral gene marking should be confirmed with improved vectors having a more limited capacity to transactivate endogenous genes. Because of the low trans-activation activity of self-inactivating lentiviral vectors (LVs), we have investigated whether the LV marking of mouse HSCs induces a competitive repopulation advantage in recipients of serially transplants. As deduced from analyses conducted in primary and secondary recipients, we concluded that lentivirally transduced HSCs have no competitive repopulation advantages over untransduced HSCs. By linear amplification-mediated polymerase chain reaction (LAM-PCR) analysis, we characterized LV-targeted genes in HSC clones that engrafted up to quaternary recipients. Although 9 clones harbored integrations close to defined retroviral insertion sites, none was characterized as a common integration site, and none was present in HSC clones repopulating quaternary recipients. Taken together, our results show unaltered repopulation properties of HSCs transduced with LVs, and confirm early studies suggesting the natural capacity of a few HSC clones to generate a monoclonal or oligoclonal hematopoiesis in transplant recipients.
机译:逆转录病毒介导的基因转移的最新研究表明,逆转录病毒整合本身可能会触发移植受体中造血干细胞(HSC)的非恶性克隆扩增。这些观察结果表明,应该用改良的载体来证实基于γ-逆转录病毒基因标记的HSC动力学的先前结论,所述载体具有更有限的能力来激活内源基因。由于自我灭活的慢病毒载体(LVs)的反式激活活性较低,因此我们研究了小鼠HSC的LV标记是否在连续移植的受体中诱导竞争性的种群再填充优势。根据在主要和次要受体中进行的分析,我们得出结论,慢病毒转导的HSC与未转导的HSC相比,没有竞争性的种群优势。通过线性扩增介导的聚合酶链反应(LAM-PCR)分析,我们表征了HSC克隆中LV靶向的基因,该基因嫁接到了第四纪受体。尽管有9个克隆在接近定义的逆转录病毒插入位点附近具有整合,但没有一个被表征为常见的整合位点,并且在重新填充四级受体的HSC克隆中也没有一个。综上所述,我们的结果显示了用LV转导的HSC的未改变的种群特征,并证实了早期研究表明一些HSC克隆在移植受体中产生单克隆或寡克隆造血功能的天然能力。

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