Intravacc BV, 3721 MA Bilthoven, the Netherlands.
Intravacc BV, 3721 MA Bilthoven, the Netherlands.
Curr Opin Immunol. 2023 Oct;84:102376. doi: 10.1016/j.coi.2023.102376. Epub 2023 Aug 18.
Delivery of vaccines via the mucosal route is regarded as the most effective mode of immunization to counteract infectious diseases that enter via mucosal tissues, including oral, nasal, pulmonary, intestinal, and urogenital surfaces. Mucosal vaccines not only induce local immune effector elements, such as secretory Immunoglobulin A (IgA) reaching the luminal site of the mucosa, but also systemic immunity. Moreover, mucosal vaccines may trigger immunity in distant mucosal tissues because of the homing of primed antigen-specific immune cells toward local and distant mucosal tissue via the common mucosal immune system. While most licensed intramuscular vaccines induce only systemic immunity, next-generation mucosal vaccines may outperform parenteral vaccination strategies by also eliciting protective mucosal immune responses that block infection and/or transmission. Especially the nasal route of vaccination, targeting the nasal-associated lymphoid tissue, is attractive for local and distant mucosal immunization. In numerous studies, bacterial outer membrane vesicles (OMVs) have proved attractive as vaccine platform for homologous bacterial strains, but also as antigen delivery platform for heterologous antigens of nonbacterial diseases, including viruses, parasites, and cancer. Their application has also been extended to mucosal delivery. Here, we will summarize the characteristics and clinical potential of (engineered) OMVs as vaccine platform for mucosal, especially intranasal delivery.
通过黏膜途径递送疫苗被认为是对抗通过黏膜组织进入的传染病的最有效免疫方式,包括口腔、鼻腔、肺部、肠道和泌尿生殖道表面。黏膜疫苗不仅诱导局部免疫效应细胞,如到达黏膜腔的分泌型免疫球蛋白 A(IgA),还诱导全身免疫。此外,由于致敏的抗原特异性免疫细胞通过共同黏膜免疫系统向局部和远处黏膜组织归巢,黏膜疫苗可能会引发远处黏膜组织的免疫。虽然大多数许可的肌内疫苗仅诱导全身免疫,但下一代黏膜疫苗通过诱导保护性黏膜免疫应答来阻止感染和/或传播,可能优于传统的疫苗接种策略。特别是针对鼻相关淋巴组织的鼻腔接种途径,对于局部和远处黏膜免疫具有吸引力。在许多研究中,细菌外膜囊泡(OMV)已被证明是同源细菌菌株疫苗平台的有吸引力的选择,也是包括病毒、寄生虫和癌症在内的非细菌性疾病的抗原递送平台。它们的应用也已扩展到黏膜传递。在这里,我们将总结(工程化)OMV 作为黏膜,特别是鼻内递送的疫苗平台的特征和临床潜力。