Fan X, Brun A, Segrén S, Jacobsen S E, Karlsson S
Department of Molecular Medicine and Gene Therapy, Lund University, Sweden.
Hum Gene Ther. 2000 Jun 10;11(9):1313-27. doi: 10.1089/10430340050032410.
This article presents our studies on the adenoviral transduction efficiency, level of transgene expression, cell cycle status, and multilineage reconstitution ability of human CD34+ hematopoietic cells transduced under proliferating and survival growth conditions. Bone marrow and umbilical cord blood CD34+ cells were cultured in serum-free medium under survival conditions with thrombopoietin (Tpo) alone, or under proliferating conditions with Tpo, c-Kit ligand (KL), and Flt3 ligand (FL). Adenoviral vectors carrying the enhanced green fluorescent protein (EGFP) gene under the control of the PGK-1 promoter were used to transduce CD34+ cells. Approximately 10% of CD34+ cells were EGFP+ under both culture conditions. In contrast, up to 50% of CD34+CD38- cells were EGFP+, whereas a maximum of 8% of CD34+CD38(high) cells were EGFP+ (p < 0.001). Both colony-forming unit cells (CFU-C) and 5-week long-term culture-initiating cells (LTC-ICs) were efficiently transduced. Under survival conditions, a substantial fraction of transduced CD34+ cells remained quiescent. The nondividing CD34+EGFP+ cells contained LTC-ICs capable of reconstituting longterm culture for as long as 10 weeks. CD34+EGFP+ cells also retained the ability to engraft and multilineage-reconstitute NOD/SCID mice. These observations demonstrate that primitive human hematopoietic progenitor cells can be efficiently transduced by adenoviral vectors.
本文介绍了我们对在增殖和存活生长条件下转导的人CD34+造血细胞的腺病毒转导效率、转基因表达水平、细胞周期状态和多谱系重建能力的研究。骨髓和脐血CD34+细胞在无血清培养基中,单独使用血小板生成素(Tpo)在存活条件下培养,或在有Tpo、c-Kit配体(KL)和Flt3配体(FL)的增殖条件下培养。携带在PGK-1启动子控制下的增强型绿色荧光蛋白(EGFP)基因的腺病毒载体用于转导CD34+细胞。在两种培养条件下,约10%的CD34+细胞为EGFP+。相比之下,高达50%的CD34+CD38-细胞为EGFP+,而最多8%的CD34+CD38(高)细胞为EGFP+(p<0.001)。集落形成单位细胞(CFU-C)和5周长期培养起始细胞(LTC-ICs)均被有效转导。在存活条件下,相当一部分转导的CD34+细胞保持静止。不分裂的CD34+EGFP+细胞含有能够重建长达10周长期培养的LTC-ICs。CD34+EGFP+细胞还保留了植入和多谱系重建NOD/SCID小鼠的能力。这些观察结果表明,原始人造血祖细胞可以被腺病毒载体有效转导。