Defense mechanisms against influenza virus infection in the respiratory tract mucosa

被引:1
|
作者
Tamura, SI
Kurata, T
机构
[1] Osaka Univ, Lab Prevent Viral Dis, Res Fdn Microbial Dis, Microbial Dis Res Inst, Suita, Osaka 5650871, Japan
[2] Natl Inst Infect Dis, Dept Pathol, Tokyo 1628640, Japan
关键词
D O I
暂无
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
The respiratory tract mucosa is not only the site of infection for. influenza viruses but also the site of defense against Virus infection. Viruses are initially detected and destroyed non-specifically by innate immune mechanisms, but if the viruses escape the early defense mechanisms, they are detected and eliminated specifically by adaptive immune mechanisms. The major adaptive immune mechanisms are as follows. (i) Specific secretory IgA (S-IgA) antibodies, (Abs) and CTLs (CD8(+) cytotoxic T lymphocytes) are involved in the recovery from influenza following viral infection of naive mice. (ii) Preexisting specific S-IgA and IgG Abs in the immunized animals are involved in viral elimination by forming virus-Ig complexes shortly after re-infection. By their polymeric nature, the S-IgA Abs, which are carried to the mucus by transepithelial transport used for dimeric IgA (dIgA)Abs, provide not only protection against homologous virus infection but also cross-protection against drift virus infection. The IgG Abs, which transude from the serum to the mucus by diffusion, provide protection against homologous virus infection. They are largely distributed on the alveolar epithelia to prevent influenza pneumonia. (iii) In the absence of Abs in the pre-immunized animals, the production of specific IgA and IgG Abs by B memory cells is accelerated after re-infection, and these antibodies play a role in viral elimination from day 3 onwards after re-infection. (iv) In epithelial cells of infected animals, specific dIgA Abs being trafficked through the epithelial cells may be involved in the prevention of viral assembly by binding to newly synthesized viral proteins. (v) In the pre-immunized animals, CTL production by memory T cells is also accelerated and these cells appear to participate in the killing of the host cells infected with different subtype viruses (within the same type) from day 3 onwards after re-infection. (vi) Similarly, memory Th1 cells that mediate an accelerated delayed-type hypersensitivity response are involved in blockade of virus replication by secreting IFN-gamma in mice challenged with different subtype viruses. These defense mechanisms suggest that the development of a mucosal vaccine; capable of inducing S-IgA Abs, which provide cross-protection against variant viruses within the same subtype, serum IgG Abs to prevent lethal influenza pneumonia and CTLs, which provide broad cross-protection against different subtype viruses, is strategically important to control influenza.
引用
收藏
页码:236 / 247
页数:12
相关论文
共 50 条
  • [31] The risk of lower respiratory tract infection following influenza virus infection: A systematic and narrative review
    Malosh, Ryan E.
    Martin, Emily T.
    Ortiz, Justin R.
    Monto, Arnold S.
    VACCINE, 2018, 36 (01) : 141 - 147
  • [32] Role of hematological parameters in the diagnosis of influenza virus infection in patients with respiratory tract infection symptoms
    Han, Qingzhen
    Wen, Xiaomin
    Wang, Lin
    Han, Xiu
    Shen, Yimin
    Cao, Jun
    Peng, Qunxin
    Xu, Jie
    Zhao, Lina
    He, Jun
    Yuan, Hong
    JOURNAL OF CLINICAL LABORATORY ANALYSIS, 2020, 34 (05)
  • [33] HOST DEFENSE-MECHANISMS AGAINST INFLUENZA-VIRUS - INTERACTION OF INFLUENZA-VIRUS WITH MURINE MACROPHAGES INVITRO
    WELLS, MA
    ALBRECHT, P
    DANIEL, S
    ENNIS, FA
    INFECTION AND IMMUNITY, 1978, 22 (03) : 758 - 762
  • [34] Enteric helminth infection confers protection against lethal respiratory influenza virus infection
    Tai, Chi
    Xie, Jia-Xun
    Lin, Jr-Shiuan
    JOURNAL OF IMMUNOLOGY, 2023, 210 (01):
  • [35] Exploring TRIM proteins' role in antiviral defense against influenza A virus and respiratory coronaviruses
    Wei, Ying
    Song, Junzhu
    Zhang, Jingyu
    Chen, Songbiao
    Yu, Zuhua
    He, Lei
    Chen, Jian
    FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2024, 14
  • [36] Exploration of the mechanisms of Ge Gen Decoction against influenza A virus infection
    GENG Zi-Kai
    LI Ya-Qun
    CUI Qing-Hua
    DU Rui-Kun
    TIAN Jing-Zhen
    Chinese Journal of Natural Medicines, 2019, 17 (09) : 650 - 662
  • [37] Exploration of the mechanisms of Ge Gen Decoction against influenza A virus infection
    Geng Zi-Kai
    Li Ya-Qun
    Cui Qing-Hua
    Du Rui-Kun
    Tian Jing-Zhen
    CHINESE JOURNAL OF NATURAL MEDICINES, 2019, 17 (09) : 650 - 662
  • [38] Cytokine profiles in the respiratory tract during primary infection with human metapneumovirus, respiratory syncytial virus, or influenza virus in infants
    Melendi, Guillermina A.
    Laham, Federico R.
    Monsalvo, A. Clara
    Casellas, Javier M.
    Israele, Victor
    Polack, Norberto R.
    Kleeberger, Steven R.
    Polack, Fernando P.
    PEDIATRICS, 2007, 120 (02) : E410 - E415
  • [40] ADSORPTION OF INFLUENZA VIRUS ON CELLS OF THE RESPIRATORY TRACT
    Hirst, George K.
    JOURNAL OF EXPERIMENTAL MEDICINE, 1943, 78 (02): : 99 - 109