-
[1]
Jennifer Tisoncik-Go, Katie S Cordero, Lijun Rong, 2013: Analysis of Oseltamivir Resistance Substitutions in Influenza Virus Glycoprotein Neuraminidase using a Lentivirus-Based Surrogate Assay System, Virologica Sinica, 28, 81-91. doi: 10.1007/s12250-013-3307-8
-
[2]
宋建领, 张富强*, 王金萍, 胡媛媛, 2006: Cloning and Expression of Neuraminidase Gene of H5N1Subtype Avian Influenza Virus, Virologica Sinica, 21, 43-46.
-
[3]
汤景元, 姜平*, 蒋文明, 马苏, 李玉峰, 2005: Construction and Immunogenicity of Recombinant Adenovirus Expressing the M protein of Porcine Re- productive and Respiratory Syndrome Virus in Mice, Virologica Sinica, 20, 618-622.
-
[4]
Huawei Mao, Hui-Ling Yen, Yinping Liu, Yu-Lung Lau, J.S. Malik Peiris, Wenwei Tu, 2014: Conservation of T cell epitopes between seasonal influenza viruses and the novel influenza A H7N9 virus, Virologica Sinica, 29, 170-175. doi: 10.1007/s12250-014-3473-3
-
[5]
李玉峰, 姜平*, 蒋文明, 汤景元, 2006: Construction and Immunogenecity of GP5 Recombinant Adenovirus of Porcine Reproductive and Respira- tory Syndrome virus, Virologica Sinica, 21, 364-367.
-
[6]
杜以军, 姜平, 李玉峰, 王先炜, 2006: Construction of Recombinant Adenovirus Containing Pocine IFN-α genes and Activity of Anti-Swine Foot- and-mouth Disease Virus, Virologica Sinica, 21, 390-393.
-
[7]
Wei-feng SHI, Zhong ZHANG, Lei PENG, Yan-zhou ZHANG, Bin LIU, Chao-dong ZHU, 2007: Proteotyping: A New Approach Studying Influenza Virus Evolution at the Protein Level*, Virologica Sinica, 22, 405-411.
-
[8]
吴娟, 李嘉琦, 孙茂盛, 戴长柏, 2002: The Immune Response Induced by Recombinant Adenovirus with Administration of Interaperitonea Injection, Virologica Sinica, 17, 51-55.
-
[9]
卢曾军, 曹轶梅, 包惠芳, 刘在新*, 赵启祖, 陈应理, 常惠芸, 谢庆阁, 2004: Construction of Recombinant Adenovirus Vector Containing the Capsid, 3C protease and 3D Polymerase Coding Regions of FMDV by Homologous Recombination, Virologica Sinica, 19, 125-128.
-
[10]
Xiao Ding, Luyao Qin, Jing Meng, Yousong Peng, Aiping Wu, Taijiao Jiang, 2021: Progress and Challenge in Computational Identification of Influenza Virus Reassortment, Virologica Sinica, 36, 1273-1283. doi: 10.1007/s12250-021-00392-w
-
[11]
左丽, 陈力, 唐晓敏, 郭辉玉, 1997: The Preventive and Curative Effects of Astragalus membranaceus Bungo A6 on the Mice Infected with Influenza Virus, Virologica Sinica, 12, 342-.
-
[12]
杨松涛, 高玉伟, 王承宇, 邹啸环, 苏建青, 孙贺廷, 常爽, 郑晓一, 王铁成, 王化磊, 冯娜, 夏咸柱, 2006: Mice as a Model for Studying the Avian H5N1 Influenza Virus in Mammals, Virologica Sinica, 21, 353-357.
-
[13]
Zhi-feng Qin, Jie Sun, Ti-kang Lu, Shao-ling Zeng, Qun-yi Hua, Qing-yan Ling, Shu-kun Chen, Jian-qiang Lv, Cai-hong Zhang, Bing Cheng, Zhou-xi Ruan, Ying-zuo Bi, Joseph J Giambrone, Hong-zhuan Wu, 2012: Subtyping Animal Influenza Virus with General Multiplex RT-PCR and Liquichip High Throughput (GMPLex), Virologica Sinica, 27, 120-131. doi: 10.1007/s12250-012-3232-2
-
[14]
Wang Xu, Yuhang Wang, Letian Li, Xiaoyun Qu, Quan Liu, Tiyuan Li, Shipin Wu, Ming Liao, Ningyi Jin, Shouwen Du, Chang Li, 2022: Transmembrane domain of IFITM3 is responsible for its interaction with influenza virus HA2 subunit, Virologica Sinica, 37, 664-675. doi: 10.1016/j.virs.2022.07.002
-
[15]
Zhao LIU, Zhan-qiu YANG, Hong XIAO, 2010: Antiviral Activity of the Effective Monomers from Folium Isatidis Against Influenza Virus in Vivo, Virologica Sinica, 25, 445-451. doi: 10.1007/s12250-010-3142-0
-
[16]
黄娟, 姜平*, 顾小雪, 许家荣, 李玉峰, 2005: Inhibition of Influenza A Virus Replication by Short Hairpin RNA Expression Plasmid, Virologica Sinica, 20, 326-328.
-
[17]
胡国斌, 郑从义, 屈三甫, 卫扬保, 1999: Studies on Inhibitory Effect of M elanin on the Apoptosis Induced by Influenza Virus in Host Cells, Virologica Sinica, 14, 140-146.
-
[18]
杨占秋, 文利, 王征, , , 2003: Antiviral Activity of Algefacient and Anti-inflammatory Against Influenza Virus in vitro and in vivo, Virologica Sinica, 18, 534-537.
-
[19]
Ruikun Du, Qinghua Cui, Lijun Rong, 2021: Flu Universal Vaccines: New Tricks on an Old Virus, Virologica Sinica, 36, 13-24. doi: 10.1007/s12250-020-00283-6
-
[20]
Weide Su, Jingjiang Qiu, Ying Mei, Xian-En Zhang, Yong He, Feng Li, 2022: A microfluidic cell chip for virus isolation via rapid screening for permissive cells, Virologica Sinica, 37, 547-557. doi: 10.1016/j.virs.2022.04.011