Helson Rebecca, Olszewska Wieslawa, Singh Manmohan, Megede Jan Zur, Melero Jose A, O'Hagan Derek, Openshaw Peter J M
Department of Respiratory Medicine, National Heart and Lung Institute, Imperial College, St. Mary's Campus, Paddington, London W2 1PG, UK.
Vaccine. 2008 Feb 6;26(6):753-61. doi: 10.1016/j.vaccine.2007.12.006. Epub 2007 Dec 26.
Priming with the major surface glycoprotein G of respiratory syncytial virus (RSV) expressed by recombinant vaccinia leads to strong Th2 responses and lung eosinophilia during viral challenge. We now show that DNA vaccination in BALB/c mice with plasmids encoding G attenuated RSV replication but also enhanced disease with lung eosinophilia and increased IL-4/5 production. However, formulating the DNA with PLG microparticles reduced the severity of disease during RSV challenge without significantly lessening protection against viral replication. PLG formulation greatly reduced lung eosinophilia and prevented the induction of IL-4 and IL-5 during challenge, accompanied by a less marked CD4+ T cell response and a restoration of the CD8+ T cell recruitment seen during infection of non-vaccinated animals. After RSV challenge, lung eosinophilia was enhanced and prolonged in mice vaccinated with DNA encoding a secreted form of G; this effect was virtually prevented by PLG formulation. Therefore, PLG microparticulate formulation modifies the pattern of immune responses induced by DNA vaccination boosts CD8+ T cell priming and attenuates Th2 responses. We speculate that PLG microparticles affect antigen uptake and processing, thereby influencing the outcome of DNA vaccination.
用重组痘苗病毒表达的呼吸道合胞病毒(RSV)主要表面糖蛋白G进行预激发,会在病毒攻击期间引发强烈的Th2反应和肺部嗜酸性粒细胞增多。我们现在表明,用编码G的质粒对BALB/c小鼠进行DNA疫苗接种,可减弱RSV复制,但也会加重肺部嗜酸性粒细胞增多的疾病,并增加IL-4/5的产生。然而,将DNA与PLG微粒混合配制可降低RSV攻击期间疾病的严重程度,同时又不会显著降低对病毒复制的保护作用。PLG配制极大地减少了肺部嗜酸性粒细胞增多,并在攻击期间阻止了IL-4和IL-5的诱导,同时伴有不太明显的CD4+T细胞反应以及非接种动物感染期间所见的CD8+T细胞募集的恢复。RSV攻击后,用编码分泌形式G的DNA接种的小鼠肺部嗜酸性粒细胞增多得到增强和延长;PLG配制几乎可防止这种效应。因此,PLG微粒配制改变了DNA疫苗接种诱导的免疫反应模式,增强了CD8+T细胞预激发并减弱了Th2反应。我们推测,PLG微粒会影响抗原摄取和加工,从而影响DNA疫苗接种的结果。