Kim Woo Sik, Zhi Yong, Guo Huichen, Byun Eui-Baek, Lim Jae Hyang, Seo Ho Seong
Research Division for Radiation Science, Korea Atomic Energy Research Institute, Jeongeup 56212, Korea.
Department of Radiation Science, University of Science and Technology, Daejeon 34057, Korea.
Vaccines (Basel). 2020 Oct 31;8(4):633. doi: 10.3390/vaccines8040633.
Virus-like particles (VLPs) have emerged as promising vaccine candidates against foot-and-mouth disease (FMD). However, such vaccines provide a relatively low level of protection against FMD virus (FMDV) because of their poor immunogenicity. Therefore, it is necessary to design effective vaccine strategies that induce more potent immunogenicity. In order to investigate the means to improve FMD VLP vaccine (VLP) immunogenicity, we encapsulated VLPs (MPL/DDA-VLP) with cationic liposomes based on dimethyldioctadecylammonium bromide (DDA) and/or monophosphoryl lipid A (MPL, TLR4 agonist) as adjuvants. Unlike inactivated whole-cell vaccines, VLP were successfully encapsulated in this MPL/DDA system. We found that MPL/DDA-VLP could induce strong cell-mediated immune responses by inducing not only VLP-specific IFN-γCD4 (Th1), IL-17ACD4 (Th17), and IFN-γCD8 (activated CD8 response) T cells, but also the development of VLP-specific multifunctional CD4 and CD8 memory T cells co-expressing IFN-γ, TNF-α, and IL-2. In addition, the MPL/DDA-VLP vaccine markedly induced VLP-specific antibody titers; in particular, the vaccine induced greater Th1-predominant IgG responses than VLP only and DDA-VLP. These results are expected to provide important clues for the development of an effective VLP that can induce cellular and humoral immune responses, and address the limitations seen in current VLP vaccines for various diseases.
病毒样颗粒(VLPs)已成为有望用于预防口蹄疫(FMD)的疫苗候选物。然而,由于其免疫原性较差,此类疫苗对口蹄疫病毒(FMDV)的保护水平相对较低。因此,有必要设计有效的疫苗策略以诱导更强的免疫原性。为了研究提高口蹄疫VLP疫苗(VLP)免疫原性的方法,我们用基于二甲基二辛基溴化铵(DDA)和/或单磷酰脂质A(MPL,TLR4激动剂)作为佐剂的阳离子脂质体包裹VLPs(MPL/DDA-VLP)。与灭活全细胞疫苗不同,VLP成功包裹在该MPL/DDA系统中。我们发现,MPL/DDA-VLP不仅可以通过诱导VLP特异性IFN-γ CD4(Th1)、IL-17A CD4(Th17)和IFN-γ CD8(活化CD8应答)T细胞,还可以通过诱导共表达IFN-γ、TNF-α和IL-2的VLP特异性多功能CD4和CD8记忆T细胞的发育,从而诱导强烈的细胞介导免疫应答。此外,MPL/DDA-VLP疫苗显著诱导VLP特异性抗体滴度;特别是,该疫苗比单独的VLP和DDA-VLP诱导出更强的以Th1为主的IgG应答。这些结果有望为开发一种能诱导细胞免疫和体液免疫应答的有效VLP提供重要线索,并解决当前针对各种疾病的VLP疫苗中存在的局限性。