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人生长激素基因在小鼠体内的表达及其对血清中细胞因子浓度的影响
引用本文:宋向凤,张文,石太新,王辉.人生长激素基因在小鼠体内的表达及其对血清中细胞因子浓度的影响[J].细胞与分子免疫学杂志,2004,20(3):290-292.
作者姓名:宋向凤  张文  石太新  王辉
作者单位:1. 新乡医学院,免疫学教研室,河南,新乡,453003
2. 新乡医学院,生物化学教研室,河南,新乡,453003
3. 新乡医学院,第一附属医院儿科,河南,新乡,453003
基金项目:河南省自然科学基金资助项目 (No .0 0 4 0 2 1 4 0 0 )
摘    要:目的 :探讨体内高水平的人生长激素 (GH)对机体免疫功能的影响。方法 :构建人GH基因的真核表达质粒pcDNA3 hGH ,直接注射于小鼠的股四头肌中。注射后分别在第 5、15、2 5天分离血清 ,通过ELISA方法检测血清中GH的水平 ,同时检测血清中IL 2、IFN γ和TNF α水平的变化。结果 :所构建的质粒目的基因插入正确 ,转染细胞能分泌高水平的GH。接受质粒的小鼠血清中人GH的浓度与对照组相比较明显提高 ,但IL 2、IFN γ和TNF α的浓度没有显著变化。结论 :体内较高水平的GH对IL 2、IFN γ和TNF α的分泌没有显著影响

关 键 词:人生长激素  基因克隆  细胞因子  小鼠
文章编号:1007-8738(2004)03-0290-03
修稿时间:2003年7月9日

Expression of human growth hormone gene in mice and its effect on concentration of murine serum cytokines
SONG Xiang feng ,ZHANG Wen ,SHI Tai xin ,WANG Hui.Expression of human growth hormone gene in mice and its effect on concentration of murine serum cytokines[J].Journal of Cellular and Molecular Immunology,2004,20(3):290-292.
Authors:SONG Xiang feng  ZHANG Wen  SHI Tai xin  WANG Hui
Institution:Department of Immunology, First Affiliated Hospital, Xinxiang Medical College, Xinxiang 453003, China. xfsong@xxmc.edu.cn
Abstract:AIM: To explore the effects of high level human growth hormone(GH) on immune function. METHODS: The eukarytic expression plasmid containing hGH gene was constructed and then was injected into musculi quadriceps femoris of mice. 5th, 15th and 25th day after injection, the murine sera were collected and the levels of hGH, IL-2, IFN-gamma and TNF-alpha were detected by ELISA. RESULTS: hGH cDNA was correctly cloned into pcDNA3. COS-1 cells transfected with the recombinant plasmid secreted high level of active hGH. The concentration of hGH in the sera of mice receiving the plasmid was obviously higher than that of control group. However, the concentrations of IL-2, IFN-gamma and TNF-alpha had no significant variation in comparison with those of control group. CONCLUSION: High level GH has no marked effect on secretion of IL-2, IFN-gamma and TNF-alpha.
Keywords:human growth hormone  gene cloning  cytokine  mouse
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