Tao Jiang
Anhui Medical University
24 Papers
124 Citations
Tao Jiang is an academic researcher from Anhui Medical University. The author has contributed to research in topics: Virus & Dengue virus. The author has an hindex of 9, co-authored 22 publications. Previous affiliations of Tao Jiang include Academy of Military Medical Sciences.
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Papers
Immunogenicity and protective efficacy in monkeys of purified inactivated Vero-cell SARS vaccine
E-De Qin,Huiying Shi,Lin Tang,Cui’e Wang,Guohui Chang,Zhifen Ding,Kai Zhao,Jian Wang,Ze Chen,Man Yu,Bingyin Si,Jianyuan Liu,Donglai Wu,Xiaojie Cheng,Baoan Yang,Wenming Peng,Qingwen Meng,Bohua Liu,Weiguo Han,Xunnan Yin,Hongyuan Duan,Da-Wei Zhan,Long Tian,Shuangli Li,Jinsong Wu,Gang Tan,Li Yi,Yu-chuan Li,Yonggang Liu,Hong Liu,Fushuang Lv,Yu Zhang,Xiangang Kong,Baochang Fan,Tao Jiang,Shuli Xu,Xiaomei Wang,Changwen Li,Xiao-hong Wu,Yong-Qiang Deng,Min Zhao,Qingyu Zhu +41 more
TL;DR: The safety of the SARS vaccine was assessed, and whether the antibody dependent enhancement (ADE) occurred under low levels of neutralizing antibody in rhesus was observed, and no side effects were detected.
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Machine Learning Methods for Predicting Human-Adaptive Influenza A Viruses Based on Viral Nucleotide Compositions.
Jing Li,Sen Zhang,Bo Li,Yi Hu,Xiaoping Kang,Wu Xiaoyan,Meng-Ting Huang,Li Yuchang,Zhongpeng Zhao,Cheng-Feng Qin,Tao Jiang +10 more
TL;DR: The model performed well in predicting the human adaptation of the swine/avian IAVs before and after the 2009 H1N1 pandemic and the identification of key viral factors that affect virus transmission/pathogenicity.
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A genome sequence of novel SARS-CoV isolates: the genotype, GD-Ins29, leads to a hypothesis of viral transmission in South China.
E-De Qin,Xionglei He,Wei Tian,Wei Tian,Yong Liu,Yong Liu,Wei Li,Wei Li,Jie Wen,Jie Wen,Jingqiang Wang,Jingqiang Wang,Baochang Fan,Qingfa Wu,Qingfa Wu,Guohui Chang,Wuchun Cao,Zuyuan Xu,Zuyuan Xu,Ruifu Yang,Jing Wang,Jing Wang,Man Yu,Yan Li,Yan Li,Jing Xu,Jing Xu,Bingyin Si,Yongwu Hu,Yongwu Hu,Wenming Peng,Lin Tang,Lin Tang,Tao Jiang,Jianping Shi,Jianping Shi,Jia Ji,Jia Ji,Yu Zhang,Yu Zhang,Jia Ye,Jia Ye,Cui’e Wang,Yujun Han,Yujun Han,Jun Zhou,Jun Zhou,Yajun Deng,Yajun Deng,Xiaoyu Li,Jianfei Hu,Jianfei Hu,Caiping Wang,Caiping Wang,Chunxia Yan,Chunxia Yan,Qingrun Zhang,Qingrun Zhang,Jingyue Bao,Jingyue Bao,Guoqing Li,Guoqing Li,Weijun Chen,Weijun Chen,Lin Fang,Lin Fang,Changfeng Li,Changfeng Li,Meng Lei,Meng Lei,Dawei Li,Dawei Li,Wei Tong,Wei Tong,Xiangjun Tian,Xiangjun Tian,Jin Wang,Jin Wang,Bo Zhang,Bo Zhang,Haiqing Zhang,Haiqing Zhang,Yilin Zhang,Yilin Zhang,Hui Zhao,Hui Zhao,Xiaowei Zhang,Xiaowei Zhang,Shuangli Li,Shuangli Li,Xiaojie Cheng,Xiaojie Cheng,Xiuqing Zhang,Xiuqing Zhang,Bin Liu,Bin Liu,Changqing Zeng,Changqing Zeng,Songgang Li,Songgang Li,Xuehai Tan,Xuehai Tan,Siqi Liu,Siqi Liu,Wei Dong,Wei Dong,Jun Wang,Jun Wang,Gane Ka-Shu Wong,Gane Ka-Shu Wong,Jun Yu,Jun Yu,Jian Wang,Jian Wang,Qingyu Zhu,Huanming Yang,Huanming Yang +116 more
TL;DR: A complete genomic sequence of rare isolates (minor genotype) of the SARS-CoV from SARS patients in Guangdong, China, provides a new avenue for the exploration of the virus-host interaction in viral evolution, host pathogenesis, and vaccine development.
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Development of an automatic integrated gene detection system for novel severe acute respiratory syndrome-related coronavirus (SARS-CoV2).
Yu-Chang Li,Li Jing,Ying Zhang,Lizhong Dai,Lin Li,Juan Liu,Sen Zhang,Wu Xiaoyan,Hu Yi,Cheng-Feng Qin,Tao Jiang,Kang Xiaoping +11 more
TL;DR: Results indicated that this automatic integrated gene detection system (AIGS) could be used for rapid detection of SARS-CoV 2 and would do a great help to improve detection efficiency and control the spread of COVID-19.
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Phylogenetic and genetic characterization of a 2017 clinical isolate of H7N9 virus in Guangzhou, China during the fifth epidemic wave.
Yong-Qiang Deng,Chunlin Li,Jian-Feng Han,Yingfen Wen,Jian Wang,Wenxing Hong,Xiaofeng Li,Zhong-Yu Liu,Qing Ye,Jing Li,Changshuai Zhou,Lei Yu,Cheng-Feng Qin,Fuchun Zhang,Tao Jiang +14 more
TL;DR: The novel H7N9 isolate isolated from a female patient with severe respiratory illness during the fifth wave of the 2017 H7n9 epidemic has an insertion of three basic amino acids in the cleavage site of hemagglutinin (HA), which may enhance virulence in poultry.
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