Literature DB >> 29925664

Prolonged Evolution of Virus-Specific Memory T Cell Immunity after Severe Avian Influenza A (H7N9) Virus Infection.

Min Zhao1,2, Junbo Chen3, Shuguang Tan1, Tao Dong4, Hui Jiang5, Jiandong Zheng5, Chuansong Quan6, Qiaohong Liao5, Hangjie Zhang6, Xiling Wang3, Qianli Wang3, Yuhai Bi1, Fengfeng Liu5, Luzhao Feng5, Peter W Horby7, Paul Klenerman8, George F Gao1,2,6, William J Liu9, Hongjie Yu10,5.   

Abstract

Since 2013, influenza A H7N9 virus has emerged as the most common avian influenza virus subtype causing human infection, and it is associated with a high fatality risk. However, the characteristics of immune memory in patients who have recovered from H7N9 infection are not well understood. We assembled a cohort of 45 H7N9 survivors followed for up to 15 months after infection. Humoral and cellular immune responses were analyzed in sequential samples obtained at 1.5 to 4 months, 6 to 8 months, and 12 to 15 months postinfection. H7N9-specific antibody concentrations declined over time, and protective antibodies persisted longer in severely ill patients admitted to the intensive care unit (ICU) and patients presenting with acute respiratory distress syndrome (ARDS) than in patients with mild disease. Frequencies of virus-specific gamma interferon (IFN-γ)-secreting T cells were lower in critically ill patients requiring ventilation than in patients without ventilation within 4 months after infection. The percentages of H7N9-specific IFN-γ-secreting T cells tended to increase over time in patients ≥60 years or in critically ill patients requiring ventilation. Elevated levels of antigen-specific CD8+ T cells expressing the lung-homing marker CD49a were observed at 6 to 8 months after H7N9 infection compared to those in samples obtained at 1.5 to 4 months. Our findings indicate the prolonged reconstruction and evolution of virus-specific T cell immunity in older or critically ill patients and have implications for T cell-directed immunization strategies.IMPORTANCE Avian influenza A H7N9 virus remains a major threat to public health. However, no previous studies have determined the characteristics and dynamics of virus-specific T cell immune memory in patients who have recovered from H7N9 infection. Our findings showed that establishment of H7N9-specific T cell memory after H7N9 infection was prolonged in older and severely affected patients. Severely ill patients mounted lower T cell responses in the first 4 months after infection, while T cell responses tended to increase over time in older and severely ill patients. Higher levels of antigen-specific CD8+ T cells expressing the lung-homing marker CD49a were detected at 6 to 8 months after infection. Our results indicated a long-term impact of H7N9 infection on virus-specific memory T cells. These findings advance our understanding of the dynamics of virus-specific memory T cell immunity after H7N9 infection, which is relevant to the development of T cell-based universal influenza vaccines.
Copyright © 2018 American Society for Microbiology.

Entities:  

Keywords:  T cells; antibodies; avian influenza A H7N9 virus; immune memory

Mesh:

Substances:

Year:  2018        PMID: 29925664      PMCID: PMC6096810          DOI: 10.1128/JVI.01024-18

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  43 in total

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Authors:  Tom M Wilkinson; Chris K F Li; Cecilia S C Chui; Arthur K Y Huang; Molly Perkins; Julia C Liebner; Rob Lambkin-Williams; Anthony Gilbert; John Oxford; Ben Nicholas; Karl J Staples; Tao Dong; Daniel C Douek; Andrew J McMichael; Xiao-Ning Xu
Journal:  Nat Med       Date:  2012-01-29       Impact factor: 53.440

2.  Comparative epidemiology of human infections with avian influenza A H7N9 and H5N1 viruses in China: a population-based study of laboratory-confirmed cases.

Authors:  Benjamin J Cowling; Lianmei Jin; Eric H Y Lau; Qiaohong Liao; Peng Wu; Hui Jiang; Tim K Tsang; Jiandong Zheng; Vicky J Fang; Zhaorui Chang; Michael Y Ni; Qian Zhang; Dennis K M Ip; Jianxing Yu; Yu Li; Liping Wang; Wenxiao Tu; Ling Meng; Joseph T Wu; Huiming Luo; Qun Li; Yuelong Shu; Zhongjie Li; Zijian Feng; Weizhong Yang; Yu Wang; Gabriel M Leung; Hongjie Yu
Journal:  Lancet       Date:  2013-06-24       Impact factor: 79.321

3.  Conserved epitopes dominate cross-CD8+ T-cell responses against influenza A H1N1 virus among Asian populations.

Authors:  Jun Liu; Bin Wu; Shihong Zhang; Shuguang Tan; Yeping Sun; Zhujun Chen; Yuanfang Qin; Mingwei Sun; Guoli Shi; Ying Wu; Meiyi Sun; Na Liu; Kaida Ning; Ying Ma; Bin Gao; Jinghua Yan; Fengcai Zhu; Hua Wang; George F Gao
Journal:  Eur J Immunol       Date:  2013-06-14       Impact factor: 5.532

4.  Recovery from severe H7N9 disease is associated with diverse response mechanisms dominated by CD8⁺ T cells.

Authors:  Zhongfang Wang; Yanmin Wan; Chenli Qiu; Sergio Quiñones-Parra; Zhaoqin Zhu; Liyen Loh; Di Tian; Yanqin Ren; Yunwen Hu; Xiaoyan Zhang; Paul G Thomas; Michael Inouye; Peter C Doherty; Katherine Kedzierska; Jianqing Xu
Journal:  Nat Commun       Date:  2015-05-13       Impact factor: 14.919

5.  Human infection with a novel avian-origin influenza A (H7N9) virus.

Authors:  Rongbao Gao; Bin Cao; Yunwen Hu; Zijian Feng; Dayan Wang; Wanfu Hu; Jian Chen; Zhijun Jie; Haibo Qiu; Ke Xu; Xuewei Xu; Hongzhou Lu; Wenfei Zhu; Zhancheng Gao; Nijuan Xiang; Yinzhong Shen; Zebao He; Yong Gu; Zhiyong Zhang; Yi Yang; Xiang Zhao; Lei Zhou; Xiaodan Li; Shumei Zou; Ye Zhang; Xiyan Li; Lei Yang; Junfeng Guo; Jie Dong; Qun Li; Libo Dong; Yun Zhu; Tian Bai; Shiwen Wang; Pei Hao; Weizhong Yang; Yanping Zhang; Jun Han; Hongjie Yu; Dexin Li; George F Gao; Guizhen Wu; Yu Wang; Zhenghong Yuan; Yuelong Shu
Journal:  N Engl J Med       Date:  2013-04-11       Impact factor: 91.245

6.  Detection of mild to moderate influenza A/H7N9 infection by China's national sentinel surveillance system for influenza-like illness: case series.

Authors:  Dennis K M Ip; Qiaohong Liao; Peng Wu; Zhancheng Gao; Bin Cao; Luzhao Feng; Xiaoling Xu; Hui Jiang; Ming Li; Jing Bao; Jiandong Zheng; Qian Zhang; Zhaorui Chang; Yu Li; Jianxing Yu; Fengfeng Liu; Michael Y Ni; Joseph T Wu; Benjamin J Cowling; Weizhong Yang; Gabriel M Leung; Hongjie Yu
Journal:  BMJ       Date:  2013-06-24

7.  Resident memory T cells (T(RM)) are abundant in human lung: diversity, function, and antigen specificity.

Authors:  Rahul Purwar; James Campbell; George Murphy; William G Richards; Rachael A Clark; Thomas S Kupper
Journal:  PLoS One       Date:  2011-01-26       Impact factor: 3.240

8.  The Serum Profile of Hypercytokinemia Factors Identified in H7N9-Infected Patients can Predict Fatal Outcomes.

Authors:  Jing Guo; Fengming Huang; Jun Liu; Yu Chen; Wei Wang; Bin Cao; Zhen Zou; Song Liu; Jingcao Pan; Changjun Bao; Mei Zeng; Haixia Xiao; Hainv Gao; Shigui Yang; Yan Zhao; Qiang Liu; Huandi Zhou; Jingdong Zhu; Xiaoli Liu; Weifeng Liang; Yida Yang; Shufa Zheng; Jiezuan Yang; Hongyan Diao; Kunkai Su; Li Shao; Hongcui Cao; Ying Wu; Min Zhao; Shuguang Tan; Hui Li; Xiaoqing Xu; Chunmei Wang; Jianmin Zhang; Li Wang; Jianwei Wang; Jun Xu; Dangsheng Li; Nanshan Zhong; Xuetao Cao; George F Gao; Lanjuan Li; Chengyu Jiang
Journal:  Sci Rep       Date:  2015-06-01       Impact factor: 4.379

9.  Rate of decline of antibody titers to pandemic influenza A (H1N1-2009) by hemagglutination inhibition and virus microneutralization assays in a cohort of seroconverting adults in Singapore.

Authors:  Jung Pu Hsu; Xiahong Zhao; Mark I-Cheng Chen; Alex R Cook; Vernon Lee; Wei Yen Lim; Linda Tan; Ian G Barr; Lili Jiang; Chyi Lin Tan; Meng Chee Phoon; Lin Cui; Raymond Lin; Yee Sin Leo; Vincent T Chow
Journal:  BMC Infect Dis       Date:  2014-07-28       Impact factor: 3.090

10.  High levels of virus-specific CD4+ T cells predict severe pandemic influenza A virus infection.

Authors:  Yan Zhao; Yong-Hong Zhang; Laura Denney; Duncan Young; Tim J Powell; Yan-Chun Peng; Ning Li; Hui-Ping Yan; Da-Yan Wang; Yue-Long Shu; Yvonne Kendrick; Andrew J McMichael; Ling-Pei Ho; Tao Dong
Journal:  Am J Respir Crit Care Med       Date:  2012-10-18       Impact factor: 21.405

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  10 in total

1.  Characterization of antibody and memory T-cell response in H7N9 survivors: a cross-sectional analysis.

Authors:  M-J Ma; X-X Wang; M-N Wu; X-J Wang; C-J Bao; H-J Zhang; Y Yang; K Xu; G-L Wang; M Zhao; W Cheng; W-J Chen; W-H Zhang; L-Q Fang; W J Liu; E-F Chen; W-C Cao
Journal:  Clin Microbiol Infect       Date:  2019-06-20       Impact factor: 8.067

2.  Longitudinal Analysis of COVID-19 Patients Shows Age-Associated T Cell Changes Independent of Ongoing Ill-Health.

Authors:  Liam Townsend; Adam H Dyer; Aifric Naughton; Rachel Kiersey; Dean Holden; Mary Gardiner; Joanne Dowds; Kate O'Brien; Ciaran Bannan; Parthiban Nadarajan; Jean Dunne; Ignacio Martin-Loeches; Padraic G Fallon; Colm Bergin; Cliona O'Farrelly; Cliona Ni Cheallaigh; Nollaig M Bourke; Niall Conlon
Journal:  Front Immunol       Date:  2021-05-07       Impact factor: 7.561

Review 3.  Avian influenza A (H7N9) virus: from low pathogenic to highly pathogenic.

Authors:  William J Liu; Haixia Xiao; Lianpan Dai; Di Liu; Jianjun Chen; Xiaopeng Qi; Yuhai Bi; Yi Shi; George F Gao; Yingxia Liu
Journal:  Front Med       Date:  2021-04-16       Impact factor: 4.592

Review 4.  Improving the Breadth of the Host's Immune Response to Lassa Virus.

Authors:  Juan Carlos Zapata; Sandra Medina-Moreno; Camila Guzmán-Cardozo; Maria S Salvato
Journal:  Pathogens       Date:  2018-10-28

5.  Decreased Frequencies of Th17 and Tc17 Cells in Patients Infected with Avian Influenza A (H7N9) Virus.

Authors:  Jiaqi Bao; Dawei Cui; Xiaochen Wang; Qianda Zou; Dejian Zhao; Shufa Zheng; Fei Yu; Li Huang; Yuejiao Dong; Xianzhi Yang; Guoliang Xie; Weizhen Chen; Yu Chen
Journal:  J Immunol Res       Date:  2019-04-02       Impact factor: 4.818

6.  Divergent Peptide Presentations of HLA-A*30 Alleles Revealed by Structures With Pathogen Peptides.

Authors:  Shiyan Zhu; Kefang Liu; Yan Chai; Yanan Wu; Dan Lu; Wenling Xiao; Hao Cheng; Yingze Zhao; Chunming Ding; Jianxin Lyu; Yongliang Lou; George F Gao; William J Liu
Journal:  Front Immunol       Date:  2019-07-23       Impact factor: 7.561

7.  Long-term clinical prognosis of human infections with avian influenza A(H7N9) viruses in China after hospitalization.

Authors:  Qianli Wang; Hui Jiang; Yun Xie; Tianchen Zhang; Shelan Liu; Shenggen Wu; Qianlai Sun; Shaoxia Song; Wei Wang; Xiaowei Deng; Lingshuang Ren; Tiantian Qin; Peter Horby; Timothy Uyeki; Hongjie Yu
Journal:  EClinicalMedicine       Date:  2020-02-19

8.  Persistence of H7N9 virus antibody response 2 years after infection.

Authors:  Lin Yao; Guo-Lin Wang; Li-Ling Chen; Cheng Liu; Li-Jun Duan; Gregory C Gray; Mai-Juan Ma
Journal:  Influenza Other Respir Viruses       Date:  2019-12-19       Impact factor: 4.380

9.  Specificity, kinetics and longevity of antibody responses to avian influenza A(H7N9) virus infection in humans.

Authors:  Junbo Chen; Huachen Zhu; Peter W Horby; Qianli Wang; Jiaxin Zhou; Hui Jiang; Liwei Liu; Tianchen Zhang; Yongli Zhang; Xinhua Chen; Xiaowei Deng; Birgit Nikolay; Wei Wang; Simon Cauchemez; Yi Guan; Timothy M Uyeki; Hongjie Yu
Journal:  J Infect       Date:  2020-01-16       Impact factor: 38.637

10.  High Expression of IL-36γ in Influenza Patients Regulates Interferon Signaling Pathway and Causes Programmed Cell Death During Influenza Virus Infection.

Authors:  Shuai Liu; Hui Li; Yeming Wang; Haibo Li; Sisi Du; Xiaohui Zou; Xulong Zhang; Bin Cao
Journal:  Front Immunol       Date:  2020-10-22       Impact factor: 7.561

  10 in total

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