Zhang Han, Liu Zezhong, Lihe Hongye, Lu Linwei, Zhang Zongxu, Yang Shengmin, Meng Nana, Xiong Yin, Fan Xingyan, Chen Zhikai, Lu Weiyue, Xie Cao, Liu Min
Department of Pharmaceutics and the Key Laboratory of Smart Drug Delivery, Ministry of Education, School of Pharmacy, Fudan University, Shanghai, 201203, China.
Department of Pharmacology and the Key Laboratory of Smart Drug Delivery, Ministry of Education, School of Pharmacy, Fudan University, Shanghai, 201203, China.
Adv Healthc Mater. 2024 Mar;13(6):e2303261. doi: 10.1002/adhm.202303261. Epub 2023 Nov 28.
Infectious disease pandemics, including the coronavirus disease 2019 pandemic, have heightened the demand for vaccines. Although parenteral vaccines induce robust systemic immunity, their effectiveness in respiratory mucosae is limited. Considering the crucial role of nasal-associated lymphoid tissue (NALT) in mucosal immune responses, in this study, the intranasal complex composed of G5-BGG and antigen-expressing plasmid DNA (pSP), named G5-BGG/pSP complex, is developed to activate NALT and to promote both systemic and mucosal immune defense. G5-BGG/pSP could traverse mucosal barriers and deliver DNA to the target cells because of its superior nasal retention and permeability characteristics. The intranasal G5-BGG/pSP complex elicits robust antigen-specific immune responses, such as the notable production of IgG antibody against several virus variants. More importantly, it induces elevated levels of antigen-specific IgA antibody and a significant expansion of the lung-resident T lymphocyte population. Notably, the intranasal G5-BGG/pSP complex results in antigen expression and maturation of dendritic cells in nasal mucosae. These findings exhibit the potential of G5-BGG, a novel cationic material, as an effective gene carrier for intranasal vaccines to obtain robust systemic and mucosal immunity.
包括2019年冠状病毒病大流行在内的传染病大流行,增加了对疫苗的需求。尽管注射用疫苗可诱导强大的全身免疫,但它们在呼吸道黏膜中的有效性有限。考虑到鼻相关淋巴组织(NALT)在黏膜免疫反应中的关键作用,在本研究中,开发了由G5-BGG和表达抗原的质粒DNA(pSP)组成的鼻内复合物,命名为G5-BGG/pSP复合物,以激活NALT并促进全身和黏膜免疫防御。由于其优异的鼻腔滞留和渗透特性,G5-BGG/pSP可以穿过黏膜屏障并将DNA递送至靶细胞。鼻内G5-BGG/pSP复合物可引发强大的抗原特异性免疫反应,例如针对多种病毒变体产生显著的IgG抗体。更重要的是,它可诱导抗原特异性IgA抗体水平升高,并使肺驻留T淋巴细胞群体显著扩增。值得注意的是,鼻内G5-BGG/pSP复合物可导致鼻黏膜中树突状细胞的抗原表达和成熟。这些发现表明,新型阳离子材料G5-BGG作为鼻内疫苗的有效基因载体,具有获得强大的全身和黏膜免疫的潜力。