Generation of Genetically Engineered Precursor T-Cells From Human Umbilical Cord Blood Using an Optimized Alpharetroviral Vector Platform

生物 转导(生物物理学) 造血 干细胞 川地34 病毒载体 癌症研究 遗传增强 插入突变 基因传递 转基因 分子生物学 细胞生物学 逆转录病毒 病毒学 病毒 基因 遗传学 重组DNA 基因组 生物化学
作者
Juwita Hübner,Shahabuddin S Hoseini,Julia D. Suerth,Dirk Hoffmann,Marcel Maluski,Jessica Herbst,Holger Maul,Arnab Ghosh,Britta Eiz‐Vesper,Qinggong Yuan,Michael Ott,Michael Heuser,Axel Schambach,Martin G. Sauer
出处
期刊:Molecular Therapy [Elsevier]
卷期号:24 (7): 1216-1226 被引量:20
标识
DOI:10.1038/mt.2016.89
摘要

Retroviral engineering of hematopoietic stem cell-derived precursor T-cells (preTs) opens the possibility of targeted T-cell transfer across human leukocyte antigen (HLA)-barriers. Alpharetroviral vectors exhibit a more neutral integration pattern thereby reducing the risk of insertional mutagenesis. Cord blood-derived CD34+ cells were transduced and differentiated into preTs in vitro. Two promoters, elongation-factor-1-short-form, and a myeloproliferative sarcoma virus variant in combination with two commonly used envelopes were comparatively assessed choosing enhanced green fluorescent protein or a third-generation chimeric antigen receptor (CAR) against CD123 as gene of interest. Furthermore, the inducible suicide gene iCaspase 9 has been validated. Combining the sarcoma virus-derived promoter with a modified feline endogenous retrovirus envelope glycoprotein yielded in superior transgene expression and transduction rates. Fresh and previously frozen CD34+ cells showed similar transduction and expansion rates. Transgene-positive cells did neither show proliferative impairment nor alteration in their lymphoid differentiation profile. The sarcoma virus-derived promoter only could express sufficient levels of iCaspase 9 to mediate dimerizer-induced apoptosis. Finally, the CD123 CAR was efficiently expressed in CD34+ cells and proved to be functional when expressed on differentiated T-cells. Therefore, the transduction of CD34+ cells with alpharetroviral vectors represents a feasible and potentially safer approach for stem cell-based immunotherapies for cancer.
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