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重组人白细胞介素7动员小鼠长期重建造血干细胞

Mobilization of long-term reconstituting hematopoietic stem cells in mice by recombinant human interleukin 7.

作者信息

Grzegorzewski K J, Komschlies K L, Jacobsen S E, Ruscetti F W, Keller J R, Wiltrout R H

机构信息

Biological Carcinogenesis and Development Program, Program Resources, Inc./DynCorp, Frederick, Maryland 21702-1201.

出版信息

J Exp Med. 1995 Jan 1;181(1):369-74. doi: 10.1084/jem.181.1.369.

Abstract

Administration of recombinant human interleukin 7 (rh)IL-7 to mice has been reported by our group to increase the exportation of myeloid progenitors (colony-forming unit [CFU]-c and CFU-granulocyte erythroid megakarocyte macrophage) from the bone marrow to peripheral organs (blood, spleen[s], and liver). We now report that IL-7 also stimulates a sixfold increase in the number of more primitive CFU-S day 8 (CFU-S8) and day 12 (CFU-S12) in the peripheral blood leukocytes (PBL) of mice treated with rhIL-7 for 7 d. Moreover, > 90% of lethally irradiated recipient mice that received PBL from rhIL-7-treated donor mice have survived for > 6 mo whereas none of the recipient mice that received an equal number of PBL from diluent-treated donors survived. Flow cytometry analysis at 3 and 6 mo after transplantation revealed complete trilineage (T, B, and myelomonocytic cell) repopulation of bone marrow, thymus, and spleen by blood-borne stem/progenitor cells obtained from rhIL-7-treated donor mice. Thus, IL-7 may prove valuable for mobilizing pluripotent stem cells with long-term repopulating activity from the bone marrow to the peripheral blood for the purpose of gene modification and/or autologous or allogeneic stem cell transplantation.

摘要

据我们小组报告,给小鼠注射重组人白细胞介素7(rh)IL-7可增加骨髓中髓系祖细胞(集落形成单位[CFU]-c和CFU-粒细胞红细胞巨核细胞巨噬细胞)向外周器官(血液、脾脏和肝脏)的输出。我们现在报告,在用rhIL-7处理7天的小鼠外周血白细胞(PBL)中,IL-7还能刺激更原始的第8天CFU-S(CFU-S8)和第12天CFU-S(CFU-S12)数量增加6倍。此外,接受来自rhIL-7处理供体小鼠的PBL的致死性照射受体小鼠中,>90%存活超过6个月,而接受来自稀释剂处理供体等量PBL的受体小鼠无一存活。移植后3个月和6个月的流式细胞术分析显示,来自rhIL-7处理供体小鼠的血源干细胞可使骨髓、胸腺和脾脏完全实现三系(T、B和髓单核细胞)重建。因此,IL-7可能被证明对于将具有长期重建活性的多能干细胞从骨髓动员到外周血以进行基因修饰和/或自体或异基因干细胞移植具有重要价值。

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