4.6 Article

Interleukin-27 Inhibits Vaccine-Enhanced Pulmonary Disease following Respiratory Syncytial Virus Infection by Regulating Cellular Memory Responses

Journal

JOURNAL OF VIROLOGY
Volume 86, Issue 8, Pages 4505-4517

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/JVI.07091-11

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Funding

  1. Chinese National Natural Science Foundation [30972801]
  2. Hebei Higher Education [CPRC030]
  3. Specialized Research Fund for the Doctoral Program of Higher Education, State Education Ministry [20091323120005]

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Respiratory syncytial virus (RSV) is the most important cause of lower respiratory tract disease in young children. In the 1960s, infants vaccinated with formalin-inactivated RSV developed a more severe disease characterized by excessive inflammatory immunopathology in lungs upon natural RSV infection. The fear of causing the vaccine-enhanced disease (VED) is an important obstacle for development of safe and effective RSV vaccines. The recombinant vaccine candidate G1F/M2 immunization also led to VED. It has been proved that cellular memory induced by RSV vaccines contributed to VED. Interleukin-27 (IL-27) and IL-23 regulate Th1, Th17, and/or Th2 cellular immune responses. In this study, mice coimmunized with pcDNA3-IL-27 and G1F/M2 were fully protected and, importantly, did not develop vaccine-enhanced inflammatory responses and immunopathology in lungs after RSV challenge, which was correlated with moderate Th1-, suppressed Th2-, and Th17-like memory responses activated by RSV. In contrast, G1F/M2-or pcDNA3-IL-23+G1F/M2-immunized mice, in which robust Th2-and Th17-like memory responses were induced, developed enhanced pulmonary inflammation and severe immunopathology. Mice coimmunized with G1F/M2 and the two cytokine plasmids exhibited mild inflammatory responses as well as remarkable Th1-, suppressed Th2-, and Th17-like memory responses. These results suggested that Th1-, Th2-, and Th17-like memory responses and, in particular, excessive Th2-and Th17-like memory responses were closely associated with VED; IL-27 may inhibit VED following respiratory syncytial virus infection by regulating cellular memory responses.

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