Yamada T, Kaneko H, Iizuka K, Matsubayashi Y, Kokai Y, Fujimoto J
Department of Pathology, National Children's Medical Research Center, Tokyo, Japan.
Lab Invest. 1996 Feb;74(2):384-94.
Transgenic mice expressing human granulocyte colony stimulating factor (hG-CSF) were bred to establish an experimental model for studying the biologic function of hG-CSF. The mice produced approximately 1000 pg/ml of hG-CSF in sera and expressed hG-CSF mRNA in all of the tissues examined. Granulocytosis and elevation of hematopoietic precursor number were observed in hematopoietic tissues as expected, but lymphocytosis with 5-fold increase in peripheral blood and 2-fold increase in spleen was also evident. Hematopoietic stem cells capable of reconstituting lethally irradiated recipient mice were abundant in the circulation of these transgenic mice. No disadvantageous tissue damage was observed when various organs were analyzed. As shown in this study, G-CSF has a stimulating effect on lymphopoiesis when it is expressed in a certain condition. The lymphocytosis, as well as the high level of hematopoietic stem cell mobilization into circulation, indicates a wider range of potential G-CSF activity than expected. The mice transgenic for hG-CSF described herein will contribute greatly to the understanding of the regulatory mechanism in hematopoiesis.
将表达人粒细胞集落刺激因子(hG-CSF)的转基因小鼠进行繁殖,以建立一个用于研究hG-CSF生物学功能的实验模型。这些小鼠血清中产生约1000 pg/ml的hG-CSF,并且在所检测的所有组织中均表达hG-CSF mRNA。正如预期的那样,在造血组织中观察到粒细胞增多和造血前体细胞数量增加,但外周血淋巴细胞增多且增加了5倍,脾脏中淋巴细胞增多且增加了2倍也很明显。能够重建经致死性照射的受体小鼠的造血干细胞在这些转基因小鼠的循环中很丰富。对各种器官进行分析时未观察到不利的组织损伤。如本研究所示,G-CSF在特定条件下表达时对淋巴细胞生成有刺激作用。淋巴细胞增多以及高水平的造血干细胞动员进入循环,表明G-CSF的潜在活性范围比预期更广。本文所述的hG-CSF转基因小鼠将极大地有助于理解造血调控机制。