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纤连蛋白辅助逆转录病毒基因导入人CD34 +造血细胞的优化

Optimization of fibronectin-assisted retroviral gene transfer into human CD34+ hematopoietic cells.

作者信息

Hanenberg H, Hashino K, Konishi H, Hock R A, Kato I, Williams D A

机构信息

Herman B Wells Center for Pediatric Research, Riley Hospital for Children, Indiana University School of Medicine, Indianapolis 46202-5225, USA.

出版信息

Hum Gene Ther. 1997 Dec 10;8(18):2193-206. doi: 10.1089/hum.1997.8.18-2193.

Abstract

Efficient retroviral gene transfer into hematopoietic stem and progenitor cells can be achieved by co-localizing retrovirus and target cells on specific adhesion domains of recombinant fibronectin (FN) fragments. In this paper, we further optimize this technology for human CD34+ cells. Investigating the role of cytokine prestimulation in retrovirus-mediated gene transfer on plates coated with the recombinant FN CH-296 revealed that prestimulation of granulocyte colony-stimulating factor (G-CSF)-mobilized peripheral blood (PB) CD34+ cells was essential to achieve efficient gene transfer into clonogenic cells. The highest gene transfer occurred by prestimulating PB CD34+ cells for 40 hr with a combination of stem cell factor (SCF), G-CSF, and megakaryocyte growth and development factor (MGDF) prior to retroviral infection on CH-296. Surprisingly, a prolonged simultaneous exposure of primary CD34+ PB cells to retrovirus and cytokines in the presence of CH-296 lowered the gene transfer efficiency. Gene transfer into cytokine prestimulated CD34+ bone marrow (BM) cells was not influenced by increasing the coating concentrations of a recombinant FN fragment, CH-296, nor was it adversely influenced by increasing the number of CD34+ target cells, suggesting that the amount of retroviral particles present in the supernatant was not a limiting factor for transduction of CD34+ BM cells on CH-296-coated plates. The polycation Polybrene was not required for efficient transduction of hematopoietic cells in the presence of CH-296. Furthermore, we demonstrated that repeated exposure of CH-296 to retrovirus containing supernatant, called preloading, can be employed to concentrate the amount of retroviral particles bound to CH-296. These findings establish a simple and short clinically applicable transduction protocol that targets up to 68% of BM or G-CSF-mobilized PB CD34+ cells and is capable of genetically modifying up to 17% of CD34+CD38-/dim PB cells.

摘要

通过将逆转录病毒和靶细胞共定位于重组纤连蛋白(FN)片段的特定粘附结构域,可实现高效的逆转录病毒基因转移至造血干细胞和祖细胞。在本文中,我们针对人CD34+细胞进一步优化了该技术。研究细胞因子预刺激在重组FN CH-296包被平板上逆转录病毒介导的基因转移中的作用,结果表明,粒细胞集落刺激因子(G-CSF)动员的外周血(PB)CD34+细胞的预刺激对于实现向克隆形成细胞的高效基因转移至关重要。在CH-296上进行逆转录病毒感染之前,用干细胞因子(SCF)、G-CSF和巨核细胞生长发育因子(MGDF)组合对PB CD34+细胞预刺激40小时,基因转移效率最高。令人惊讶的是,在CH-296存在的情况下,原代CD34+ PB细胞长时间同时暴露于逆转录病毒和细胞因子会降低基因转移效率。向细胞因子预刺激的CD34+骨髓(BM)细胞中的基因转移不受重组FN片段CH-296包被浓度增加的影响,也不受CD34+靶细胞数量增加的不利影响,这表明上清液中存在的逆转录病毒颗粒数量不是CH-296包被平板上CD34+ BM细胞转导的限制因素。在CH-296存在的情况下,高效转导造血细胞不需要聚阳离子Polybrene。此外,我们证明,将CH-296反复暴露于含逆转录病毒的上清液(称为预加载)可用于浓缩与CH-296结合的逆转录病毒颗粒数量。这些发现建立了一种简单且简短的临床适用转导方案,该方案可靶向高达68%的BM或G-CSF动员的PB CD34+细胞,并能够对高达17%的CD34+CD38-/dim PB细胞进行基因改造。

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