两种表达人促甲状腺激素受体的质粒电穿孔诱导Graves病小鼠模型的比较研究
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西安交通大学第一附属医院内分泌代谢科

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国家自然科学基金项目(面上项目,重点项目,重大项目)


Comparison study of two plasmid vectors expressing human thyroid stimulating hormone receptor inducing mice model of Graves' disease via electroporation
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1.Department of Endocrinology, The First Affiliated Hospital of Xi'2.'3.an Jiaotong University

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The National Natural Science Foundation of China (General Program, Key Program, Major Research Plan)

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    摘要:

    目的 本研究旨在通过比较在两种表达人促甲状腺激素受体(TSHR)A亚单位基因的质粒载体在电穿孔介导下诱导Graves病动物模型的效果,为探索Graves病防治方法提供更为有效的研究工具。方法 构建表达TSHR A亚单位的两种质粒pcDNA3.1-TSHR A和pTriEx1.1-TSHR A,通过对BALB/c小鼠肌肉注射并立即电穿孔的方式诱导Graves病,每3周1次,共4次。对照组小鼠使用PBS。在第2次电穿孔后1周采血测定血清促甲状腺激素受体抗体(TRAb)。在末次电穿孔后3周对小鼠进行心脏超声检查。在末次电穿孔后4周处死小鼠,收集血液,甲状腺及眼眶组织,测定血清总甲状腺素(TT4)并进行组织病理学检查。结果 pcDNA3.1-TSHR A组(n=15)和pTriEx1.1-TSHR A组(n=13)小鼠血清TRAb平均值分别为(6.9±2.0)U/L和(7.5±2.2)U/L。后者显著高于对照组高于对照组(4.9±0.5)U/L(P<0.05)。pcDNA3.1-TSHR A组和pTriEx1.1-TSHR A组小鼠血清TT4平均值分别为(41.4±23.8) ng/ml和(63.2±53.7) ng/ml,均高于对照组(20.2±4.0) ng/ml(P<0.01),但两组实验组间没有显著差异(P=0.152)。甲状腺病理显示模型组小鼠甲状腺滤泡上皮增生并且有T细胞浸润。心脏超声显示pTriEx1.1-TSHR A组的左心室质量高于对照组(P<0.01)和pcDNA3.1-TSHR A组(P<0.05)。眼眶病理显示模型组小鼠的眼外肌中存在纤维化改变。结论 表达TSHR A亚单位的pcDNA3.1和pTriEx1.1均能通过电穿孔法成功诱导Graves病小鼠模型,两种表达TSHR A亚单位的质粒诱导甲状腺功能亢进和甲亢眼病的效能相近。pTriEx1.1-TSHR A诱导甲状腺毒症性心脏病的效能优于pcDNA3.1-TSHR A。

    Abstract:

    Objective The purpose of this study was to provide a more effective method for the research of prevention and treatment of Graves’ disease by comparing the effects of two plasmid vectors expressing the human thyroid stimulating hormone receptor (TSHR) A subunit gene in inducing animal model of Graves" disease via electroporation. Methods pcDNA3.1-THSR A and pTriEx1.1-THSR A expressing TSHR A subunit were constructed and used to induce Graves" disease by intramuscularly injecting with immediate electroporation once every 3 weeks for a total of 4 times. Mice in thecontrol group were injected with PBS. One week post-second electroporation, blood was gained to measure serum thyrotropin receptor antibody (TRAb). Three weeks post-last electroporation, echocardiography was performed on mice. Mice were sacrificed 4 weeks after the last electroporation, blood, thyroid, orbital tissues were collected, serum total thyroxine (TT4) was measured, and histological examination was performed. Results The average value of serum TRAb in the pcDNA3.1-TSHR A group (n=15) and the pTriEx1.1-TSHR A group (n=13) was (6.9±2.0) U/L and (7.5±2.2) U/L, respectively. The latter was significantly higher than that in the control group (4.9±0.5) U/L (P<0.05). The average value of serum TT4 in the pcDNA3.1-TSHR A group and the pTriEx1.1-TSHR A group was (41.4±23.8) ng/ml and (63.2±53.7) ng/ml, respectively, both higher than the control group (20.2±4.0) ng/ml (P<0.01). Still, there was no significant difference between thetwo experimental groups (P=0.152). Thyroid pathology showed thyroid follicular epithelial hyperplasia with T-cell infiltration in themodel group. Echocardiography showed that levels of left ventricle mass in the pTriEx1.1-TSHR A group were higher than that in the control group (P<0.01) and the pcDNA3.1-TSHR A group (P<0.05). Orbital pathology showed fibrotic changes in the extraocular muscles of mice in the model groups. Conclusions Both pcDNA3.1 and pTriEx1.1 expressing TSHR A subunit were able to induce Graves" disease in mice by electroporation, and the efficiency of two plasmids expressing TSHR A subunit in inducing hyperthyroidism and Graves’ ophthalmopathy was similar. The efficiency of pTriEx1.1-TSHR A inducing thyrotoxic heart disease is better than pcDNA3.1-TSHR A.

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  • 收稿日期:2024-10-11
  • 最后修改日期:2024-12-11
  • 录用日期:2024-12-23
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