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https://doi.org/10.1371/journal.pone.0074905
Title: | Nanoparticle Vaccines Encompassing the Respiratory Syncytial Virus (RSV) G Protein CX3C Chemokine Motif Induce Robust Immunity Protecting from Challenge and Disease | Authors: | Jorquera P.A. Choi Y. Oakley K.E. Powell T.J. Boyd J.G. Palath N. Haynes L.M. Anderson L.J. Tripp R.A. |
Keywords: | CX3C chemokine gamma interferon interleukin 4 Respiratory syncytial pneumovirus G protein nanoparticle vaccine respiratory syncytial virus vaccine unclassified drug animal cell animal experiment animal model animal tissue antibody response article CD4+ T lymphocyte CD8+ T lymphocyte controlled study cross protection drug efficacy drug safety enzyme linked immunospot assay eosinophilia female infection prevention lung mouse nonhuman protein blood level protein motif Respiratory syncytial pneumovirus respiratory syncytial virus infection Th1 cell Th2 cell vaccination virus neutralization virus replication Animals Antibodies, Neutralizing Bronchoalveolar Lavage CD8-Positive T-Lymphocytes Chemokines, CX3C Epitopes Female Interferon-gamma Interleukin-4 Lung Mice Mice, Inbred BALB C Nanoparticles Respiratory Syncytial Virus Infections Respiratory Syncytial Virus Vaccines Respiratory Syncytial Viruses Th1 Cells Th2 Cells Viral Fusion Proteins |
Issue Date: | 2013 | Citation: | Jorquera P.A., Choi Y., Oakley K.E., Powell T.J., Boyd J.G., Palath N., Haynes L.M., Anderson L.J., Tripp R.A. (2013). Nanoparticle Vaccines Encompassing the Respiratory Syncytial Virus (RSV) G Protein CX3C Chemokine Motif Induce Robust Immunity Protecting from Challenge and Disease. PLoS ONE 8 (9) : e74905. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0074905 | Abstract: | Nanoparticle vaccines were produced using layer-by-layer fabrication and incorporating respiratory syncytial virus (RSV) G protein polypeptides comprising the CX3C chemokine motif. BALB/c mice immunized with G protein nanoparticle vaccines produced a neutralizing antibody response that inhibited RSV replication in the lungs following RSV challenge. ELISPOT analysis showed that G nanoparticle vaccinated mice had increased levels of RSV G protein-specific IL-4 and IFN-? secreting cells compared to controls following RSV challenge. Remarkably, RSV challenge of G protein nanoparticle vaccinated mice resulted in increased RSV M2-specific IL-4 and IFN-? secreting T cells, and increased M2-specific H-2Kd-tetramer positive CD8+ T cells in the lungs compared to controls. Cell type analysis showed vaccination was not associated with increased pulmonary eosinophilia following RSV challenge. These results demonstrate that vaccination of mice with the RSV G protein nanoparticle vaccines induces a potent neutralizing antibody response, increased G protein- and M2- specific T cell responses, and a reduction in RSV disease pathogenesis. | Source Title: | PLoS ONE | URI: | https://scholarbank.nus.edu.sg/handle/10635/161268 | ISSN: | 19326203 | DOI: | 10.1371/journal.pone.0074905 |
Appears in Collections: | Staff Publications Elements |
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