Department of Biomedical-Chemical Engineering, The Catholic University of Korea, Bucheon-si, Gyeonggi-do, 14662, Republic of Korea.
Department of Biotechnology, The Catholic University of Korea, Bucheon-si, Gyeonggi-do, 14662, Republic of Korea.
Adv Sci (Weinh). 2021 Dec;8(23):e2100118. doi: 10.1002/advs.202100118. Epub 2021 Oct 24.
Recently, viral infectious diseases, including COVID-19 and Influenza, are the subjects of major concerns worldwide. One strategy for addressing these concerns focuses on nasal vaccines, which have great potential for achieving successful immunization via safe, easy, and affordable approaches. However, conventional nasal vaccines have major limitations resulting from fast removal when pass through nasal mucosa and mucociliary clearance hindering their effectiveness. Herein a nanoparticulate vaccine (NanoVac) exhibiting photochemical immunomodulation and constituting a new self-assembled immunization system of a photoactivatable polymeric adjuvant with influenza virus hemagglutinin for efficient nasal delivery and antigen-specific immunity against pathogenic influenza viruses is described. NanoVac increases the residence period of antigens and further enhances by spatiotemporal photochemical modulation in the nasal cavity. As a consequence, photochemical immunomodulation of NanoVacs successfully induces humoral and cellular immune responses followed by stimulation of mature dendritic cells, plasma cells, memory B cells, and CD4 and CD8 T cells, resulting in secretion of antigen-specific immunoglobulins, cytokines, and CD8 T cells. Notably, challenge with influenza virus after nasal immunization with NanoVacs demonstrates robust prevention of viral infection. Thus, this newly designed vaccine system can serve as a promising strategy for developing vaccines that are active against current hazardous pathogen outbreaks and pandemics.
最近,包括 COVID-19 和流感在内的病毒性传染病是全球关注的焦点。应对这些关注的一种策略是关注鼻内疫苗,这些疫苗通过安全、简便和经济的方法实现成功免疫的潜力巨大。然而,传统的鼻内疫苗由于在穿过鼻黏膜时被快速清除以及黏液纤毛清除作用而存在很大的局限性,从而阻碍了其效果。本文描述了一种纳米颗粒疫苗(NanoVac),其具有光化学免疫调节作用,并构成了一种新型的自组装免疫体系,由光活化聚合物佐剂与流感病毒血凝素组成,可有效递送至鼻腔并针对致病性流感病毒产生抗原特异性免疫。NanoVac 增加了抗原的停留时间,并通过鼻腔内的时空光化学调节进一步增强。结果,NanoVac 的光化学免疫调节成功诱导了体液和细胞免疫反应,随后刺激成熟树突状细胞、浆细胞、记忆 B 细胞和 CD4 和 CD8 T 细胞,导致抗原特异性免疫球蛋白、细胞因子和 CD8 T 细胞的分泌。值得注意的是,鼻内免疫接种 NanoVac 后再用流感病毒进行挑战,可有效预防病毒感染。因此,这种新设计的疫苗系统可以作为一种有前途的策略,用于开发针对当前危险病原体爆发和大流行的有效疫苗。