Literature DB >> 27212584

Intranasal Inactivated Influenza Vaccines: a Reasonable Approach to Improve the Efficacy of Influenza Vaccine?

Shin-Ichi Tamura1, Akira Ainai, Tadaki Suzuki, Takeshi Kurata, Hideki Hasegawa.   

Abstract

Influenza is a contagious, acute respiratory disease caused by the influenza virus. The mucosal lining in the host respiratory tract is not only the site of virus infection, but also the site of defense; it is at this site that the host immune response targets the virus and protects against reinfection. One of the most effective methods to prevent influenza is to induce specific antibody (Ab) responses in the respiratory tract by vaccination. Two types of influenza vaccines, intranasal live attenuated influenza virus (LAIV) vaccines and parenteral (injectable) inactivated vaccines, are currently used worldwide. These vaccines are approved by the European Medicines Agency (EMA) and the US Food and Drug Administration. Live attenuated vaccines induce both secretory IgA (S-IgA) and serum IgG antibodies (Abs), whereas parenteral vaccines induce only serum IgG Abs. However, intranasal administration of inactivated vaccines together with an appropriate adjuvant induces both S-IgA and IgG Abs. Several preclinical studies on adjuvant-combined, nasal-inactivated vaccines revealed that nasal S-IgA Abs, a major immune component in the upper respiratory tract, reacted with homologous virus hemagglutinin (HA) and were highly cross-reactive with viral HA variants, resulting in protection and cross-protection against infection by both homologous and variant viruses, respectively. Serum-derived IgG Abs, which are present mainly in the lower respiratory tract, are less cross-reactive and cross-protective. In addition, our own clinical trials have shown that nasal-inactivated whole virus vaccines, including a built-in adjuvant (single-stranded RNA), induced serum hemagglutination inhibition (HI) Ab titers that fulfilled the EMA criteria for vaccine efficacy. The nasal-inactivated whole virus vaccines also induced high levels of nasal HI and neutralizing Ab titers, although we have not yet evaluated the nasal HI titers due to the lack of official criteria to establish efficacy based on this parameter. Data suggest that adjuvant-combined nasal-inactivated vaccines have advantages over the current injectable vaccine because the former induce both S-IgA and serum IgG Abs. In addition, nasal-inactivated vaccines seem to be superior to the LAIV vaccines, because non-infectious preparations could be used in high-risk groups. Thus, the development of intranasal inactivated vaccines is recommended, because such vaccines are expected to improve the efficacy of influenza vaccines.

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Year:  2016        PMID: 27212584     DOI: 10.7883/yoken.JJID.2015.560

Source DB:  PubMed          Journal:  Jpn J Infect Dis        ISSN: 1344-6304            Impact factor:   1.362


  12 in total

Review 1.  Mucosal Immune Response in Nasal-Associated Lymphoid Tissue upon Intranasal Administration by Adjuvants.

Authors:  Hiromi Takaki; Shingo Ichimiya; Misako Matsumoto; Tsukasa Seya
Journal:  J Innate Immun       Date:  2018-06-01       Impact factor: 7.349

2.  Immunogenicity and Cross Protection in Mice Afforded by Pandemic H1N1 Live Attenuated Influenza Vaccine Containing Wild-Type Nucleoprotein.

Authors:  Andrey Rekstin; Irina Isakova-Sivak; Galina Petukhova; Daniil Korenkov; Igor Losev; Tatiana Smolonogina; Tatiana Tretiak; Svetlana Donina; Svetlana Shcherbik; Tatiana Bousse; Larisa Rudenko
Journal:  Biomed Res Int       Date:  2017-01-22       Impact factor: 3.411

3.  Intranasal vaccination with M2e5x virus-like particles induces humoral and cellular immune responses conferring cross-protection against heterosubtypic influenza viruses.

Authors:  Young-Tae Lee; Eun-Ju Ko; Youri Lee; Ki-Hye Kim; Min-Chul Kim; Yu-Na Lee; Sang-Moo Kang
Journal:  PLoS One       Date:  2018-01-11       Impact factor: 3.240

4.  cGAMP Promotes Germinal Center Formation and Production of IgA in Nasal-Associated Lymphoid Tissue.

Authors:  Hiromi Takaki; Ken Takashima; Hiroyuki Oshiumi; Akira Ainai; Tadaki Suzuki; Hideki Hasegawa; Misako Matsumoto; Tsukasa Seya
Journal:  Med Sci (Basel)       Date:  2017-12-18

Review 5.  Neutralizing Anti-Hemagglutinin Monoclonal Antibodies Induced by Gene-Based Transfer Have Prophylactic and Therapeutic Effects on Influenza Virus Infection.

Authors:  Tatsuya Yamazaki; Joe Chiba; Sachiko Akashi-Takamura
Journal:  Vaccines (Basel)       Date:  2018-06-26

6.  Protein Microarray Analysis of the Specificity and Cross-Reactivity of Influenza Virus Hemagglutinin-Specific Antibodies.

Authors:  Rie Nakajima; Medalyn Supnet; Algis Jasinskas; Aarti Jain; Omid Taghavian; Joshua Obiero; Donald K Milton; Wilbur H Chen; Michael Grantham; Richard Webby; Florian Krammer; Darrick Carter; Philip L Felgner; D Huw Davies
Journal:  mSphere       Date:  2018-12-12       Impact factor: 4.389

Review 7.  Influenza Vaccination and Guillain-Barré Syndrome: Reality or Fear.

Authors:  Arefeh Babazadeh; Zeinab Mohseni Afshar; Mostafa Javanian; Mousa Mohammadnia-Afrouzi; Ahmad Karkhah; Jila Masrour-Roudsari; Parisa Sabbagh; Veerendra Koppolu; Veneela KrishnaRekha Vasigala; Soheil Ebrahimpour
Journal:  J Transl Int Med       Date:  2019-12-31

8.  From nasal to basal: single-cell sequencing of the bursa of Fabricius highlights the IBDV infection mechanism in chickens.

Authors:  Abid Ullah Shah; Yuchen Li; Wei Ouyang; Zhisheng Wang; Jinjiao Zuo; Song Shi; Qinghua Yu; Jian Lin; Qian Yang
Journal:  Cell Biosci       Date:  2021-12-16       Impact factor: 7.133

9.  Antiviral Activities of Hibiscus sabdariffa L. Tea Extract Against Human Influenza A Virus Rely Largely on Acidic pH but Partially on a Low-pH-Independent Mechanism.

Authors:  Yohei Takeda; Yuko Okuyama; Hiroto Nakano; Yasunori Yaoita; Koich Machida; Haruko Ogawa; Kunitoshi Imai
Journal:  Food Environ Virol       Date:  2019-10-16       Impact factor: 2.778

Review 10.  Innovative Mucosal Vaccine Formulations Against Influenza A Virus Infections.

Authors:  Cynthia Calzas; Christophe Chevalier
Journal:  Front Immunol       Date:  2019-07-17       Impact factor: 7.561

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