IgA polymerization contributes to efficient virus neutralization on human upper respiratory mucosa after intranasal inactivated influenza vaccine administration

被引:46
作者
Terauchi, Yoshihiko [1 ,2 ]
Sano, Kaori [1 ]
Ainai, Akira [1 ]
Saito, Shinji [3 ]
Taga, Yuki [4 ]
Ogawa-Goto, Kiyoko [4 ]
Tamura, Shin-ichi [1 ]
Odagiri, Takato [3 ]
Tashiro, Masato [3 ]
Fujieda, Mikiya [2 ]
Suzuki, Tadaki [1 ]
Hasegawa, Hideki [1 ]
机构
[1] Natl Inst Infect Dis, Dept Pathol, Tokyo, Japan
[2] Kochi Univ, Kochi Med Sch, Dept Pediat, Nankoku, Kochi, Japan
[3] Natl Inst Infect Dis, Influenza Virus Res Ctr, Tokyo, Japan
[4] Nippi Inc, Nippi Res Inst Biomatrix, Ibaraki, Japan
关键词
Secretory IgA antibody; multimeric SIgA antibody; influenza virus; intranasal inactivated influenza vaccine; upper respiratory mucosa; HEMAGGLUTININ; ANTIBODIES; RESPONSES; CHILDREN; CELLS; SERUM;
D O I
10.1080/21645515.2018.1438791
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Unlike the current injectable influenza vaccines, intranasally administered influenza vaccines induce influenza virus-specific IgA antibodies in the local respiratory mucosa as well as IgG antibodies in the systemic circulation. Our previous study showed that after five volunteers underwent intranasal administration with inactivated H3N2 or H5N1 vaccines, their IgA antibodies on the upper respiratory tract were present as monomers, dimers, and multimers (trimers and tetramers). Moreover, the multimers associated with the highest virus neutralizing activity. However, it has remained elusive whether a more practical intranasal vaccination strategy could induce the high-performance IgA multimers in the nasal mucosa. In the present study, volunteers were administered with two doses of the intranasal trivalent whole-virus inactivated influenza vaccine and showed that in nasal wash samples the amount of multimeric IgA correlated positively with virus neutralizing titers, indicating that the multimeric IgA antibodies play an important role in the antiviral activity at the nasal mucosa. Surface plasmon resonance analysis of the binding dynamics of nasal wash derived IgA monomers, dimers, and multimers against recombinant trimeric influenza virus HA showed that sample fractions containing IgA multimers dissociated from HA less well than sample fractions without IgA multimers. Thus, IgA multimers may stick to the antigen more tightly than the other structures. In summary, intranasal administration of two doses of multivalent inactivated influenza vaccines induced multimeric IgA. Multimerization of mucosal IgA antibodies conferred higher neutralizing activity against viruses in the nasal mucosa, possibly by increasing their cohesion to virus antigens.
引用
收藏
页码:1351 / 1361
页数:11
相关论文
共 20 条
[1]   Intranasal vaccination with an inactivated whole influenza virus vaccine induces strong antibody responses in serum and nasal mucus of healthy adults [J].
Ainai, Akira ;
Tamura, Shin-ichi ;
Suzuki, Tadaki ;
van Riet, Elly ;
Ito, Ryo ;
Odagiri, Takato ;
Tashiro, Masato ;
Kurata, Takeshi ;
Hasegawa, Hideki .
HUMAN VACCINES & IMMUNOTHERAPEUTICS, 2013, 9 (09) :1962-1970
[2]  
[Anonymous], 2012, Wkly Epidemiol Rec, V87, P461
[3]   Effectiveness of live attenuated influenza vaccine and inactivated influenza vaccine in children 2-17 years of age in 2013-2014 in the United States [J].
Caspard, Herve ;
Gaglani, Manjusha ;
Clipper, Lydia ;
Belongia, Edward A. ;
McLean, Huong Q. ;
Griffin, Marie R. ;
Talbot, H. Keipp ;
Poehling, Katherine A. ;
Peters, Timothy R. ;
Veney, Naomi ;
Ambrose, Christopher S. .
VACCINE, 2016, 34 (01) :77-82
[4]  
CRAGO SS, 1984, J IMMUNOL, V132, P16
[5]  
DAVENPORT FM, 1964, J LAB CLIN MED, V63, P5
[6]   Influenza Vaccine Effectiveness Against 2009 Pandemic Influenza A(H1N1) Virus Differed by Vaccine Type During 2013-2014 in the United States [J].
Gaglani, Manjusha ;
Pruszynski, Jessica ;
Murthy, Kempapura ;
Clipper, Lydia ;
Robertson, Anne ;
Reis, Michael ;
Chung, Jessie R. ;
Piedra, Pedro A. ;
Avadhanula, Vasanthi ;
Nowalk, Mary Patricia ;
Zimmerman, Richard K. ;
Jackson, Michael L. ;
Jackson, Lisa A. ;
Petrie, Joshua G. ;
Ohmit, Suzanne E. ;
Monto, Arnold S. ;
McLean, Huong Q. ;
Belongia, Edward A. ;
Fry, Alicia M. ;
Flannery, Brendan .
JOURNAL OF INFECTIOUS DISEASES, 2016, 213 (10) :1546-1556
[7]   Development of a mucosal vaccine for influenza viruses: preparation for a potential influenza pandemic [J].
Hasegawa, Hideki ;
Ichinohe, Takeshi ;
Tamura, Shin-ichi ;
Kurata, Takeshi .
EXPERT REVIEW OF VACCINES, 2007, 6 (02) :193-201
[8]   Evaluation of Influenza Virus A/H3N2 and B Vaccines on the Basis of Cross-Reactivity of Postvaccination Human Serum Antibodies against Influenza Viruses A/H3N2 and B Isolated in MDCK Cells and Embryonated Hen Eggs [J].
Kishida, Noriko ;
Fujisaki, Seiichiro ;
Yokoyama, Masaru ;
Sato, Hironori ;
Saito, Reiko ;
Ikematsu, Hideyuki ;
Xu, Hong ;
Takashita, Emi ;
Tashiro, Masato ;
Takao, Shinichi ;
Yano, Takuya ;
Suga, Tomoko ;
Kawakami, Chiharu ;
Yamamoto, Miwako ;
Kajiyama, Keiko ;
Saito, Hiroyuki ;
Shimada, Shin'ichi ;
Watanabe, Sumi ;
Aoki, Satomi ;
Taira, Katsuya ;
Kon, Miyako ;
Lin, Jih-Hui ;
Odagiri, Takato .
CLINICAL AND VACCINE IMMUNOLOGY, 2012, 19 (06) :897-908
[9]   ADAPTATION AND GROWTH CHARACTERISTICS OF INFLUENZA VIRUS AT 25 DEGREES C [J].
MAASSAB, HF .
NATURE, 1967, 213 (5076) :612-&
[10]  
MURPHY BR, 1989, CURR TOP MICROBIOL, V146, P107