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用人白细胞介素3基因转导的基质细胞移植,以刺激非肥胖型糖尿病严重联合免疫缺陷小鼠人胎骨移植中的造血作用。

Transplantation of stromal cells transduced with the human IL3 gene to stimulate hematopoiesis in human fetal bone grafts in non-obese, diabetic-severe combined immunodeficiency mice.

作者信息

Brouard N, Chapel A, Neildez-Nguyen T M, Granotier C, Khazaal I, Péault B, Thierry D

机构信息

Institut de Protection et de Sûreté Nucléaire, Département de Protection de la Santé de l'Homme et de Dosimétrie, IPSN, Fontenay-aux-Roses, France.

出版信息

Leukemia. 1998 Jul;12(7):1128-35. doi: 10.1038/sj.leu.2401081.

Abstract

The non-obese diabetic-severe combined immunodeficiency (NOD-SCID) mouse is a convenient host for human hematopoietic tissues and cells. Human fetal bone fragments engrafted subcutaneously in NOD-SCID mice sustain human hematopoiesis for several months. MS5 murine bone marrow stromal cells were transfected by electroporation with a plasmid containing the human interleukin-3 gene. As expected, stably transfected hu-IL3-MS5 cells supported human hematopoiesis in vitro more efficiently than MS5 cells. hu-IL3-MS5 cells were then injected intravenously into hu-NOD-SCID mice to test their ability to home to the mouse and/or human bone marrow, and to evaluate the role of hu-IL3 secretion on human hematopoiesis in vivo. hu-IL3 was detected in the mouse serum for up to an observation time of 8 weeks. hu-IL3-MS5 cells engrafted the bone marrow, spleen, liver and lungs of the mice but also the human bone graft. The presence of hu-IL3-MS5 cells in the human bone significantly stimulated local human hematopoiesis. This setting could be used to model the bone marrow homing of intravenously injected stromal cells or stromal cell precursors. The same experimental principle could also be applied in a therapeutic perspective to malignant human bone marrow hematopoiesis.

摘要

非肥胖型糖尿病-重症联合免疫缺陷(NOD-SCID)小鼠是人类造血组织和细胞的理想宿主。皮下植入NOD-SCID小鼠的人胎儿骨碎片可维持人类造血数月。用含人白细胞介素-3基因的质粒通过电穿孔转染MS5小鼠骨髓基质细胞。如预期的那样,稳定转染的hu-IL3-MS5细胞在体外比MS5细胞更有效地支持人类造血。然后将hu-IL3-MS5细胞静脉注射到hu-NOD-SCID小鼠体内,以测试它们归巢到小鼠和/或人类骨髓的能力,并评估hu-IL3分泌在体内对人类造血的作用。在长达8周的观察期内,小鼠血清中均可检测到hu-IL3。hu-IL3-MS5细胞植入了小鼠的骨髓、脾脏、肝脏和肺,也植入了人类骨移植物。hu-IL3-MS5细胞在人类骨中的存在显著刺激了局部人类造血。这种模型可用于模拟静脉注射基质细胞或基质细胞前体的骨髓归巢。同样的实验原理也可从治疗角度应用于人类恶性骨髓造血。

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