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Combination of Sleeping Beauty transposition and chemically induced dimerization selection for robust production of engineered cells

机译:沉睡美女换位和化学诱导的二聚化选择相结合可稳定生产工程细胞

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摘要

The main methods for producing genetically engineered cells use viral vectors for which safety issues and manufacturing costs remain a concern. In addition, selection of desired cells typically relies on the use of cytotoxic drugs with long culture times. Here, we introduce an efficient non-viral approach combining the Sleeping Beauty (SB) Transposon System with selective proliferation of engineered cells by chemically induced dimerization (CID) of growth factor receptors. Minicircles carrying a SB transposon cassette containing a reporter transgene and a gene for the F36VFGFR1 fusion protein were delivered to the hematopoietic cell line Ba/F3. Stably-transduced Ba/F3 cell populations with >98% purity were obtained within 1 week using this positive selection strategy. Copy number analysis by quantitative PCR (qPCR) revealed that CID-selected cells contain on average higher copy numbers of transgenes than flow cytometry-selected cells, demonstrating selective advantage for cells with multiple transposon insertions. A diverse population of cells is present both before and after culture in CID media, although site-specific qPCR of transposon junctions show that population diversity is significantly reduced after selection due to preferential expansion of clones with multiple integration events. This non-viral, positive selection approach is an attractive alternative for producing engineered cells.
机译:产生基因工程细胞的主要方法是使用病毒载体,对于这些病毒载体,安全性问题和制造成本仍然值得关注。另外,所需细胞的选择通常依赖于培养时间长的细胞毒性药物的使用。在这里,我们介绍一种有效的非病毒方法,将“睡美人”(SB)转座子系统与通过生长因子受体的化学诱导二聚化(CID)对工程细胞进行选择性增殖相结合。将携带含有报告子转基因和F36VFGFR1融合蛋白基因的SB转座子盒的微圆递送至造血细胞系Ba / F3。使用这种阳性选择策略,可以在1周内获得纯度> 98%的稳定转导的Ba / F3细胞群体。通过定量PCR(qPCR)进行的拷贝数分析显示,与流式细胞术选择的细胞相比,CID筛选的细胞平均含有更高的转基因拷贝数,这表明具有多个转座子插入的细胞具有选择性优势。尽管在CID培养基中培养之前和之后,细胞的种群数量均存在差异,尽管转座子连接的位点特异性qPCR显示,由于具有多个整合事件的克隆的优先扩增,选择后种群的多样性显着降低。这种非病毒的阳性选择方法是生产工程化细胞的有吸引力的替代方法。

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