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禽流感H5N1亚型病毒对五个不同品系小鼠致病性的比较(英文)
引用本文:黄韧,王颖彦,邓少嫦,黄培根,张钰,刘忠华,吴玉娥,李文德,闵凡贵,刘香梅. 禽流感H5N1亚型病毒对五个不同品系小鼠致病性的比较(英文)[J]. 中国实验动物学报, 2010, 18(4): 271-277,I0001
作者姓名:黄韧  王颖彦  邓少嫦  黄培根  张钰  刘忠华  吴玉娥  李文德  闵凡贵  刘香梅
作者单位:1. 广东省实验动物监测所,广东省重点实验室
2. 哈佛医学院麻省总医院放射肿瘤系
3. 广东医学院,湛江,524023
基金项目:Acknowledgments This study was supported by grants 2005B20201019 and 2004B20201028 from the Agricultural Science & Technology Project of Guangdong Province, and grants 06023011 from the Natural Science Project of Guangdong Province. The authors thank Dr. Ming Liao for generously providing the A/Goose/Guangdong/NH/2003 ( H5N1 ) virus. Dr. Peigen Huang is a visiting professor at Guangdong Laboratory Animals Monitoring Institute.
摘    要:目的比较了不同遗传背景小鼠对禽流感H5N1亚型病毒的致病敏感性,为H5N1禽流感模型制作和机理研究提供依据。方法近交系BALB/c、C57BL/6和封闭群ICR、NIHSwiss和KMSwiss共五个不同品系小鼠。每个品系实验动物30只,分接毒组20只,空白对照组10只,每组雌雄各半。病毒株为A/Goose/Guangdong/NH/2003(H5N1),经测定TCID50为10-4.875/mL。接毒组通过鼻腔接种0.1mL病毒液,对照组接种正常鸡胚尿囊液。小鼠接毒后连续观察14d,观察记录临床症状、体温、体重变化,对在实验期间死亡和实验14d结束后仍然存活的小鼠均进行组织器官病理取材,进行RT-PCR病毒分离检测、HE染色及H5N1抗原特异性免疫组化染色。结果①临床症状:H5N1禽流感病毒能感染五个品系的小鼠,引起呼吸急促等症状和一过性体重、体温下降。②死亡情况:小鼠在接毒后第1天即出现死亡,死亡的高峰期集中在接毒后第3~6天。五个品系小鼠死亡率存在差异,BALB/c为70%,ICR为50%,NIHSwiss为40%,C57BL/6为25%,KMSwiss为10%;③病毒分离:各组接毒小鼠在死亡后均进行了病毒分离,死亡小鼠的肺脏均分离到病毒,其他脏器未分离到病毒。④病理变化:实验期间五个品系死亡小鼠肺脏病理改变相近。大体观:死亡小鼠肺部淤血,呈暗红色,体积增大,局部肺组织实变。镜下观:死亡小鼠的共同病理改变为间质性肺炎,具体表现为肺泡腔及间质出血、炎性细胞浸润;间质增生,肺泡隔增宽;肺泡腔中见纤维素性渗出,透明膜形成。⑤免疫组化结果 :在死亡小鼠的气管上皮细胞和肺巨噬细胞可观察到H5N1禽流感病毒阳性表达。结论小鼠作为H5N1禽流感病毒模型具有普适性,不同品系小鼠感染鹅源H5N1禽流感病毒的临床症状、病程和病理变化与人禽流感病例相似。不同品系小鼠的死亡比例有明显差别,可以根据不同的实验目的 ,选择不同品系的小鼠制作H5N1禽流感动物模型。不同品系的遗传特性对禽流感易感性产生明显的影响,遗传背景可能与H5N1禽流感病毒感染应答机理存在联系:BALB/c和C57BL/6均为近交系,其中BALB/c小鼠的品系特征之一表现为干扰素产量低,接种H5N1病毒后表现为高死亡率(70%),而C57BL/6小鼠的干扰素产量高,接种H5N1病毒后表现为低死亡率(25%),提示不同遗传背景小鼠的干扰素水平与H5N1感染致死具相关性。为进一步研究H5N1禽流感病毒易感性相关基因以及其与宿主免疫反应的关系提供了一个研究基础。

关 键 词:H5N1禽流感病毒  动物模型  小鼠

Comparison of the Pathogenicity of Avian Influenza A(H5N1) Virus in Five Strains of Mice
HUANG Ren,WANG Ying-yan,DENG Shao-chang,HUANG Pei-gen,ZHANG Yu,LIU Zhong-hua,WU Yu-e,LI Wen-de,MIN Fan-gui,LIU Xiang-mei. Comparison of the Pathogenicity of Avian Influenza A(H5N1) Virus in Five Strains of Mice[J]. Acta Laboratorium Animalis Scientia Sinica, 2010, 18(4): 271-277,I0001
Authors:HUANG Ren  WANG Ying-yan  DENG Shao-chang  HUANG Pei-gen  ZHANG Yu  LIU Zhong-hua  WU Yu-e  LI Wen-de  MIN Fan-gui  LIU Xiang-mei
Affiliation:1. Key Animal Experiment Laboratory for Guangdong Province,Guangdong Laboratory Animal Monitoring Institute, Guangzhou,510260,China; 2. Guangdong Medical College,Zhanjiang,524023; 3. Department of Radiation Oncology, Massachusetts General Hospital,Harvard Medical School,Boston,MA 02114,USA)
Abstract:Objective To test our hypothesis that sensitivity to avian influenza A(H5N1)virus varies among mouse strain backgrounds, we compared the pathogenicity of H5N1 viral infection in 5 mouse strains. Methods Onehundred-fifty mice from 2 inbred strains(BALB/c and C57BL/6), and 3 outbred stocks(ICR, NIH Swiss, and KM Swiss)were used. Thirty mice of each strain were subjected to an infected group(20 mice), in which mice were inoculated with 0. 1 mL(104.875 TCID50)of A/Goose/Guangdong/NH/2003(H5N1)virus intra-nasally; ten control mice received noninfectious allantoic fluid. Clinical signs were assessed daily for 14 days post-infection. Necropsy was performed on mice that died during the experiment and those euthanized at end of study. Tissue samples were collected for viral isolation and pathological analysis. Results H5N1 virus infection can cause respiratory illness in all 5 strains with severe or minor acute respiratory distress symptoms, but with different mortality rates: 70% in BALB/c; 50% in ICR; 40% in NIH Swiss; 25% in C57BL/6; and 10% in KM Swiss mice. Necrotizing interstitial pneumonia was found in all cases of death. The virus was isolated from the lungs of all infected dead mice. Conclusion A/Goose/Guangdong/NH/2003 (H5N1)virus can infect all mouse strains used in this study, and can cause clinical symptoms and pathological changes similar to those found in humans infected with HSN1 viruses. However, the pathogenicity of H5N1 viral infection varies significantly between the different mouse strains. Thus, in future study of H5N1 virus infections the mouse strain most relevant to their particular research purpose should be selected as animal model.
Keywords:H5N1 avian influenza virus  Animal models  Mice
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