Weinthal J, Nolta J A, Yu X J, Lilley J, Uribe L, Kohn D B
Division of Research Immunology/BMT, University of Southern California School of Medicine, Children's Hospital, Los Angeles 90027.
Bone Marrow Transplant. 1991 Nov;8(5):403-12.
The human glucocerebrosidase (GC) gene has been expressed in the progeny of murine hematopoietic stem cells following transduction of marrow with a retroviral vector (G2) containing the human GC cDNA. Murine marrow was transduced via co-cultivation following prestimulation in the presence or absence of recombinant IL-3 and IL-6. A high rate of gene transfer and expression (95%) was demonstrated in primary day 12 CFU-S foci following bone marrow transplantation (BMT) of G2-transduced marrow into lethally irradiated syngeneic recipient mice. Immunoreactive human GC protein was also documented in the CFU-S foci. Primary recipient mice were examined 4-6 months following BMT. A higher rate of gene transfer (87%) was seen in hematopoietic organs of recipients of prestimulated donor marrow compared with organs from initially unstimulated marrow (25%). A high rate of expression of human GC was also documented in the prestimulated organs (50%) when compared with the unstimulated group (25%). Secondary BMT was performed using marrow from the long-lived primary recipients. The human GC gene was present in 88% of secondary day 12 CFU-S foci examined in the prestimulated group versus 23% in the unstimulated group. Expression of the human GC gene was documented in secondary day 12 CFU-S foci, providing strong evidence of initial hematopoietic stem cell transduction.
将携带人葡萄糖脑苷脂酶(GC)cDNA的逆转录病毒载体(G2)转导至小鼠骨髓后,人GC基因已在小鼠造血干细胞的后代中表达。在有或无重组白细胞介素-3(IL-3)和白细胞介素-6(IL-6)存在的情况下进行预刺激后,通过共培养转导小鼠骨髓。将G2转导的骨髓移植到经致死性照射的同基因受体小鼠体内后,在第12天的初级集落形成单位-脾(CFU-S)集落中显示出高基因转移率和表达率(95%)。在CFU-S集落中也记录到了免疫反应性人GC蛋白。在骨髓移植后4至6个月对初级受体小鼠进行检查。与最初未刺激的骨髓受体的器官(25%)相比,预刺激供体骨髓受体的造血器官中观察到更高的基因转移率(87%)。与未刺激组(25%)相比,预刺激器官中也记录到高的人GC表达率(50%)。使用来自长期存活的初级受体的骨髓进行二次骨髓移植。在预刺激组检查的第12天二次CFU-S集落中,88%存在人GC基因,而未刺激组为23%。在第12天二次CFU-S集落中记录到了人GC基因的表达,这为最初的造血干细胞转导提供了有力证据。