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小鼠造血干细胞转导后重组腺相关病毒载体基因组的稳定整合。

Stable integration of recombinant adeno-associated virus vector genomes after transduction of murine hematopoietic stem cells.

作者信息

Han Zongchao, Zhong Li, Maina Njeri, Hu Zhongbo, Li Xiaomiao, Chouthai Nitin S, Bischof Daniela, Weigel-Van Aken Kirsten A, Slayton William B, Yoder Mervin C, Srivastava Arun

机构信息

Division of Cellular and Molecular Therapy, Department of Pediatrics, University of Florida College of Medicine, Gainesville, FL 32610, USA.

出版信息

Hum Gene Ther. 2008 Mar;19(3):267-78. doi: 10.1089/hum.2007.161.

Abstract

We previously reported that among single-stranded adeno-associated virus (ssAAV) vectors, serotypes 1 through 5, ssAAV1 is the most efficient in transducing murine hematopoietic stem cells (HSCs), but viral second-strand DNA synthesis remains a rate-limiting step. Subsequently, using double-stranded, self-complementary AAV (scAAV) vectors, serotypes 7 through 10, we observed that scAAV7 vectors also transduce murine HSCs efficiently. In the present study, we used scAAV1 and scAAV7 shuttle vectors to transduce HSCs in a murine bone marrow serial transplant model in vivo, which allowed examination of the AAV proviral integration pattern in the mouse genome, as well as recovery and nucleotide sequence analyses of AAV-HSC DNA junction fragments. The proviral genomes were stably integrated, and integration sites were localized to different mouse chromosomes. None of the integration sites was found to be in a transcribed gene, or near a cellular oncogene. None of the animals, monitored for up to 1 year, exhibited pathological abnormalities. Thus, AAV proviral integration-induced risk of oncogenesis was not found in our study, which provides functional confirmation of stable transduction of self-renewing multipotential HSCs by scAAV vectors as well as promise for the use of these vectors in the potential treatment of disorders of the hematopoietic system.

摘要

我们先前报道过,在1型至5型单链腺相关病毒(ssAAV)载体中,ssAAV1在转导小鼠造血干细胞(HSCs)方面效率最高,但病毒第二链DNA合成仍然是一个限速步骤。随后,我们使用7型至10型双链、自我互补AAV(scAAV)载体,观察到scAAV7载体也能有效地转导小鼠造血干细胞。在本研究中,我们使用scAAV1和scAAV7穿梭载体在体内小鼠骨髓连续移植模型中转导造血干细胞,这使得我们能够检测AAV原病毒在小鼠基因组中的整合模式,以及对AAV-造血干细胞DNA连接片段进行回收和核苷酸序列分析。原病毒基因组稳定整合,整合位点定位于不同的小鼠染色体。未发现任何整合位点位于转录基因中或细胞癌基因附近。在长达1年的监测期内,没有一只动物出现病理异常。因此,在我们的研究中未发现AAV原病毒整合诱导的肿瘤发生风险,这为scAAV载体稳定转导自我更新多能造血干细胞提供了功能确认,并为这些载体在造血系统疾病潜在治疗中的应用带来了希望。

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