期刊论文详细信息
PLoS Pathogens
Cross-Serotype Immunity Induced by Immunization with a Conserved Rhinovirus Capsid Protein
Nathan W. Bartlett1  Ross P. Walton1  Sebastian L. Johnston1  Tatiana Kebadze1  Rebecca M. Pearson1  Nicholas Glanville1  Gary R. Mclean1  Jeffrey W. Almond2  Valerie Lecouturier2  Christophe Gregoire2  Catherine Berry2  Yves Girerd2  Bruno Guy2  Nicolas Burdin2 
[1] Airways Disease Infection Section, National Heart and Lung Institute, Medical Research Council and Asthma United Kingdom Centre in Allergic Mechanisms of Asthma, Centre for Respiratory Infections, Imperial College London, London, United Kingdom;Discovery Department, Sanofi Pasteur, Campus Merieux, Marcy l'Etoile, France
关键词: Immune response;    T cells;    Antibodies;    Immunologic adjuvants;    Enzyme-linked immunoassays;    Rhinovirus infection;    Antibody response;    Respiratory infections;   
DOI  :  10.1371/journal.ppat.1003669
学科分类:生物科学(综合)
来源: Public Library of Science
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【 摘 要 】

Human rhinovirus (RV) infections are the principle cause of common colds and precipitate asthma and COPD exacerbations. There is currently no RV vaccine, largely due to the existence of ∼150 strains. We aimed to define highly conserved areas of the RV proteome and test their usefulness as candidate antigens for a broadly cross-reactive vaccine, using a mouse infection model. Regions of the VP0 (VP4+VP2) capsid protein were identified as having high homology across RVs. Immunization with a recombinant VP0 combined with a Th1 promoting adjuvant induced systemic, antigen specific, cross-serotype, cellular and humoral immune responses. Similar cross-reactive responses were observed in the lungs of immunized mice after infection with heterologous RV strains. Immunization enhanced the generation of heterosubtypic neutralizing antibodies and lung memory T cells, and caused more rapid virus clearance. Conserved domains of the RV capsid therefore induce cross-reactive immune responses and represent candidates for a subunit RV vaccine.

【 授权许可】

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