Division of Life & Pharmaceutical Sciences, and the Center for Cell Signaling & Drug Discovery Research, Ewha Womans University, 11-1 Dae-Hyun Dong, Seo-Dae-Mun Gu, Seoul 120-750, Republic of Korea.
Vaccine. 2010 May 14;28(22):3801-8. doi: 10.1016/j.vaccine.2010.03.032. Epub 2010 Mar 31.
Respiratory syncytial virus (RSV) is a major cause of severe lower respiratory tract disease in infancy and early childhood. Despite its importance as a pathogen, there is no licensed vaccine against RSV. The fusion (F) protein of RSV is a potentially important target for protective antiviral immune responses. Here, we studied the immune responses elicited by recombinant replication-deficient adenovirus (rAd)-based vaccines expressing the soluble F1 fragment of F protein (amino acids 155-524) in murine model. The expression of secreted F1 fragment by rAd was significantly increased by codon optimization. Strong mucosal IgA response was induced by single intranasal immunization of codon-optimized vaccine, rAd/F1co, but not by rAd/F1wt. A single intranasal immunization with rAd/F1co provided potent protection against subsequent RSV challenge. Interestingly, neither serum Ig nor T-cell response directed to F protein was detected in the rAd/F1co-immune mice, suggesting that protective immunity by rAd/F1co is mainly mediated through mucosal IgA induction. Indeed, co-delivery of cholera toxin B subunit significantly enhanced mucosal IgA responses by the optimized vaccine, which correlates with protective efficacy. Taken together, our data demonstrate that a single intranasal administration of rAd/F1co is sufficient for the protection and represents a promising prophylactic vaccination regimen against RSV infection.
呼吸道合胞病毒(RSV)是婴儿和幼儿严重下呼吸道疾病的主要病因。尽管它是一种重要的病原体,但目前还没有针对 RSV 的许可疫苗。RSV 的融合(F)蛋白是保护性抗病毒免疫反应的潜在重要靶标。在这里,我们在小鼠模型中研究了表达 F 蛋白可溶性 F1 片段(氨基酸 155-524)的重组复制缺陷型腺病毒(rAd)疫苗引发的免疫反应。rAd 表达的分泌型 F1 片段通过密码子优化显著增加。单次鼻腔免疫接种优化后的疫苗 rAd/F1co 可诱导强烈的黏膜 IgA 反应,但 rAd/F1wt 则不能。单次鼻腔免疫接种 rAd/F1co 可提供针对随后 RSV 攻击的有效保护。有趣的是,rAd/F1co 免疫小鼠中未检测到针对 F 蛋白的血清 Ig 或 T 细胞反应,表明 rAd/F1co 的保护性免疫主要通过黏膜 IgA 诱导。事实上,霍乱毒素 B 亚单位的共递送显著增强了优化疫苗的黏膜 IgA 反应,这与保护效力相关。总之,我们的数据表明,单次鼻腔给药 rAd/F1co 即可提供保护,代表了针对 RSV 感染的有前途的预防性疫苗接种方案。