Inactivated influenza virions are a flexible vaccine platform for eliciting protective antibody responses against neuraminidase

被引:5
作者
Martinez, Mira Rakic [1 ]
Gao, Jin [1 ]
Wan, Hongquan [1 ]
Kang, Hyeog [1 ]
Klenow, Laura [1 ]
Daniels, Robert [1 ]
机构
[1] US FDA, Ctr Biol Evaluat & Res, Div Viral Prod, Silver Spring, MD 20993 USA
基金
美国国家卫生研究院;
关键词
Biologics; Viral vaccines; Combination influenza vaccines; Single-dose immunizations; NA vaccines; Vaccine manufacturing; Influenza A viruses; Next generation influenza vaccines; VIRUS; HEMAGGLUTININ; EFFICACY; IMMUNITY; HUMANS; SAFETY; WHOLE;
D O I
10.1016/j.vaccine.2023.05.068
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Most seasonal influenza vaccines are produced using hemagglutinin (HA) surface antigens from inactivated virions. However, virions are thought to be a suboptimal source for the less abundant neuraminidase (NA) surface antigen, which is also protective against severe disease. Here, we demonstrate that inactivated influenza virions are compatible with two modern approaches for improving protective antibody responses against NA. Using a DBA/2J mouse model, we show that the strong infection-induced NA inhibitory (NAI) antibody responses are only achieved by high dose immunizations of inactivated virions, likely due to the low viral NA content. Based on this observation, we first produced virions with higher NA content by using reverse genetics to exchange the viral internal gene segments. Single immunizations with these inactivated virions showed enhanced NAI antibody responses and improved NAbased protection from a lethal viral challenge while also allowing for the development of natural immunity to the heterotypic challenge virus HA. Second, we combined inactivated virions with recombinant NA protein antigens. These combination vaccines increased NA-based protection following viral challenge and elicited stronger antibody responses against NA than either component alone, especially when the NAs possessed similar antigenicity. Together, these results indicate that inactivated virions are a flexible platform that can be easily combined with protein-based vaccines to improve protective antibody responses against influenza antigens.& COPY; 2023 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http:// creativecommons.org/licenses/by/4.0/).
引用
收藏
页码:4302 / 4312
页数:11
相关论文
共 48 条
[1]  
[Anonymous], 2021, MBIO, V12
[2]   Integrating influenza antigenic dynamics with molecular evolution [J].
Bedford, Trevor ;
Suchard, Marc A. ;
Lemey, Philippe ;
Dudas, Gytis ;
Gregory, Victoria ;
Hay, Alan J. ;
McCauley, John W. ;
Russell, Colin A. ;
Smith, Derek J. ;
Rambaut, Andrew .
ELIFE, 2014, 3
[3]   Safety and efficacy of live attenuated, cold-adapted, influenza vaccine-trivalent [J].
Belshe, RB ;
Mendelman, PM .
IMMUNOLOGY AND ALLERGY CLINICS OF NORTH AMERICA, 2003, 23 (04) :745-+
[4]   Pre-existing antibodies directed against a tetramerizing domain enhance the immune response against artificially stabilized soluble tetrameric influenza neuraminidase [J].
Catani, Joao Paulo Portela ;
Job, Emma R. ;
Ysenbaert, Tine ;
Smet, Anouk ;
Ray, Satyajit ;
LaRue, Lauren ;
Stegalkina, Svetlana ;
Barro, Mario ;
Vogel, Thorsten U. ;
Saelens, Xavier .
NPJ VACCINES, 2022, 7 (01)
[5]   A high dosage influenza vaccine induced significantly more neuraminidase antibody than standard vaccine among elderly subjects [J].
Cate, Thomas R. ;
Rayford, Yolanda ;
Nino, Diane ;
Winokur, Patricia ;
Brady, Rebecca ;
Belshe, Robert ;
Chen, Wilbur ;
Atmar, Robert L. ;
Couch, Robert B. .
VACCINE, 2010, 28 (09) :2076-2079
[6]   Influenza Infection in Humans Induces Broadly Cross-Reactive and Protective Neuraminidase-Reactive Antibodies [J].
Chen, Yao-Qing ;
Wohlbold, Teddy John ;
Zheng, Nai-Ying ;
Huang, Min ;
Huang, Yunping ;
Neu, Karlynn E. ;
Lee, Jiwon ;
Wan, Hongquan ;
Rojas, Karla Thatcher ;
Kirkpatrick, Ericka ;
Henry, Carole ;
Palm, Anna-Karin E. ;
Stamper, Christopher T. ;
Lan, Linda Yu-Ling ;
Topham, David J. ;
Treanor, John ;
Wrammert, Jens ;
Ahmed, Rafi ;
Eichelberger, Maryna C. ;
Georgiou, George ;
Krammer, Florian ;
Wilson, Patrick C. .
CELL, 2018, 173 (02) :417-+
[7]   INDUCTION OF PARTIAL IMMUNITY TO INFLUENZA BY A NEURAMINIDASE-SPECIFIC VACCINE [J].
COUCH, RB ;
KASEL, JA ;
GERIN, JL ;
SCHULMAN, JL ;
KILBOURNE, ED .
JOURNAL OF INFECTIOUS DISEASES, 1974, 129 (04) :411-420
[8]   Antibody Correlates and Predictors of Immunity to Naturally Occurring Influenza in Humans and the Importance of Antibody to the Neuraminidase [J].
Couch, Robert B. ;
Atmar, Robert L. ;
Franco, Luis M. ;
Quarles, John M. ;
Wells, Janet ;
Arden, Nancy ;
Nino, Diane ;
Belmont, John W. .
JOURNAL OF INFECTIOUS DISEASES, 2013, 207 (06) :974-981
[9]   Randomized comparative study of the serum antihemagglutinin and antineuraminidase antibody responses to six licensed trivalent influenza vaccines [J].
Couch, Robert B. ;
Atmar, Robert L. ;
Keitel, Wendy A. ;
Quarles, John M. ;
Wells, Janet ;
Arden, Nancy ;
Nino, Diane .
VACCINE, 2012, 31 (01) :190-195
[10]   Production of a novel influenza vaccine using insect cells: protection against drifted strains [J].
Cox, Manon M. J. ;
Anderson, D. Karl .
INFLUENZA AND OTHER RESPIRATORY VIRUSES, 2007, 1 (01) :35-40