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SARS动物模型的研究
引用本文:刘伯华,吴东来,战大伟,秦鄂德,祝庆余.SARS动物模型的研究[J].微生物学报,2004,44(6):711-717.
作者姓名:刘伯华  吴东来  战大伟  秦鄂德  祝庆余
作者单位:1. 军事医学科学院微生物流行病研究所,北京,100071
2. 中国农业科学院哈尔滨兽医研究所,哈尔滨,100051
3. 军事医学科学院实验动物中心,北京,100071
4. 北京生物制品研究所,北京,100024
基金项目:全军医药卫生科研基金(03F003-2)
摘    要:利用分离的SARS CoV毒株BJ 0 1,经滴鼻等途径感染大鼠、豚鼠、黑线仓鼠、白化仓鼠和雏鸡等 5个种属的动物 ,筛选对SARS易感的小动物。在此基础上 ,选择食蟹猴和恒河猴进行SARS的人工感染实验 ,评价其作为SARS动物模型的可能性。结果表明 ,大鼠、豚鼠、黑线仓鼠、白化仓鼠和雏鸡等动物对SARS均不易感 ,感染后未观察到任何的临床及病理学改变 ,不过从感染 2周后的大鼠和豚鼠的肺和咽等组织样本中检测到了的特异的核酸 ,提示SARS CoV能够在这两种动物的体内复制。从感染猴子的分泌物和脏器中分离出了病毒 ,证明SARS CoV也能够在猴子体内复制。临床和病理组织学检查结果显示 ,SARS病毒接种食蟹猴和恒河猴后 ,可以引起所有实验猴发生间质性肺炎 ,其病理学改变与人类感染SARS病毒后肺部病变近似 ,但病变的严重程度比较人类的轻得多 ,除此之外无任何其它的明显的临床表现及组织病理学改变 ,按照动物模型的指标判断食蟹猴和恒河猴并不是SARS的理想动物模型 ,不过在目前尚没有更理想的动物模型情况下 ,以间质性肺炎为病理学检查指标 ,恒河猴和食蟹猴可以作为评价抗SARS药物和疫苗的模型动物

关 键 词:SARS  动物模型
文章编号:0001-6209(2004)06-0711-06
修稿时间:2004年6月23日

Study on The Animal Model for Severe Acute Respiratory Syndrome
Bo-Hua Liu,Dong-Lai Wu,Da-Wei Zhan,E-De Qin,Qing-Yu Zhu,Cui-E Wang,Qing-Wen Meng,Wen-Ming Peng,Xun-Nan Yin,Yin-Hui Yang,Yun-Tao Guan,Wei-Guo Han,Chang-Wen Li,Yong-Gang Liu,Mou-Ping Wang,Quan-Gui Liu,Hui-Ying Shi,Zhi-Fen Ding.Study on The Animal Model for Severe Acute Respiratory Syndrome[J].Acta Microbiologica Sinica,2004,44(6):711-717.
Authors:Bo-Hua Liu  Dong-Lai Wu  Da-Wei Zhan  E-De Qin  Qing-Yu Zhu  Cui-E Wang  Qing-Wen Meng  Wen-Ming Peng  Xun-Nan Yin  Yin-Hui Yang  Yun-Tao Guan  Wei-Guo Han  Chang-Wen Li  Yong-Gang Liu  Mou-Ping Wang  Quan-Gui Liu  Hui-Ying Shi  Zhi-Fen Ding
Institution:Institute of Microbiology and Epidemiology, AMMS, Beijing 100071, China. bhl726915@sohu.com
Abstract:To screen small animals susceptible to SARS-CoV,five species of animals, including guinea pig, hamster, albino hamster, chicken and rat, were experimentally infected with SARS-CoV strain BJ-01 by different routes. On the basis of this, further cynomolgus and rhesus macaques were selected and experimentally inoculated SARS-CoV, the quality they serve as animal model for SARS was evaluated. The results showed that, all five species of small animals chosed were not susceptible to SARS-CoV, no characterized changes in clinical sign and histopathology were observed after infection, but from the lung samples of large rat and pig guinea, the genomic RNA of SARS-CoV could be detected by RT-PCR at day 14 post infection, this suggested that SARS-CoV could replicate in these animals. After inoculated with SARS-CoV, all inoculated cynomolgus and rhesus macaques had developed interstitial pneumonia of differing severity. These changes on histopathology were similar to that seen in SARS patients, but the pathological lesions were less severe than that of human. Except interstitial pneumonia, no other characterized pathological changes were observed. This suggested cynomolgus and rhesus macaques were not the ideal animal model for SARS in fact, but they could serve as animal model for SARS when a more ideal animal model is absent.
Keywords:SARS  Animal model
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