Fehse B, Uhde A, Fehse N, Eckert H G, Clausen J, Rüger R, Koch S, Ostertag W, Zander A R, Stockschläder M
Bone Marrow Transplantation, University Hospital Eppendorf, Hamburg, Germany.
Hum Gene Ther. 1997 Oct 10;8(15):1815-24. doi: 10.1089/hum.1997.8.15-1815.
Human hematopoietic stem cells remain one of the most promising target cells for gene therapeutic approaches to treat malignant and nonmalignant diseases. To rapidly characterize transduced cells and to isolate these from residual nontransduced, but biologically equivalent, cells, we have used a Moloney murine leukemia virus (Mo-MuLV)-based retroviral vector containing the intracytoplasmatically truncated human low-affinity nerve growth factor receptor (deltaLNGFR) cDNA as a marker gene. Supernatant transduction of CD34+ cells (mean purity 97%) in fibronectin-coated tissue culture flasks resulted in 5.5-45% (mean 26%) transduced cells expressing deltaLNGFR (LNGFR+ cells). After transduction, more than 65% of the transduced cells remained CD34+. Compared with control (mock- and nontransduced) CD34+ cells, transduction did not decrease the cloning efficiency of CD34+ cells. Immunomagnetic selection of the transduced cells with a monoclonal anti-LNGFR antibody resulted in >90% LNGFR+ cells. Further phenotypic characterization of these highly enriched LNGFR+ cells indicated that the majority co-expressed the CD34 and CD38 antigens. These results show that transduced cells expressing an ectopic cell-surface protein can be rapidly and conveniently quantitated and characterized by fluorescence-activated cell sorting (FACS) analysis and fast and efficiently enriched by immunoadhesion using magnetic beads. The use of cell-surface reporters should facilitate optimization of methods of gene transfer into more primitive hematopoietic progenitors.
人类造血干细胞仍然是用于治疗恶性和非恶性疾病的基因治疗方法中最有前景的靶细胞之一。为了快速鉴定转导细胞并将其与残留的未转导但生物学特性相同的细胞分离,我们使用了一种基于莫洛尼鼠白血病病毒(Mo-MuLV)的逆转录病毒载体,该载体含有胞质内截短的人低亲和力神经生长因子受体(deltaLNGFR)cDNA作为标记基因。在纤连蛋白包被的组织培养瓶中对CD34+细胞(平均纯度97%)进行上清液转导,结果显示5.5%-45%(平均26%)的转导细胞表达deltaLNGFR(LNGFR+细胞)。转导后,超过65%的转导细胞仍为CD34+。与对照(模拟转导和未转导)CD34+细胞相比,转导并未降低CD34+细胞的克隆效率。用单克隆抗LNGFR抗体对转导细胞进行免疫磁选,得到>90%的LNGFR+细胞。对这些高度富集的LNGFR+细胞进行进一步的表型鉴定表明,大多数细胞共表达CD34和CD38抗原。这些结果表明,表达异位细胞表面蛋白的转导细胞可以通过荧光激活细胞分选(FACS)分析快速、方便地进行定量和鉴定,并通过使用磁珠的免疫粘附快速、有效地富集。细胞表面报告基因的使用应有助于优化将基因转移到更原始造血祖细胞中的方法。