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通过物理相互作用制备亚单位纳米疫苗。

Fabrication of subunit nanovaccines by physical interaction.

作者信息

Chen HaoLin, Liu Hong, Liu LiXin, Chen YongMing

机构信息

School of Materials Science and Engineering, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Sun Yat-sen University, Guangzhou, 510275 China.

Zhuhai Jinan Selenium Source Nanotechnology Co., Ltd., Jinan University, Zhuhai, 519000 China.

出版信息

Sci China Technol Sci. 2022;65(5):989-999. doi: 10.1007/s11431-021-2011-7. Epub 2022 Apr 8.

Abstract

Vaccines can improve the quality of human life by preventing the burden of infectious diseases. Also, vaccination is becoming a powerful medication for preventing and treating tumors. Various vaccines have been developed based on the origin of the antigens. Herein, we focus on the subunit vaccines whose antigens are proteins or peptides. The advantage of subunit vaccines is safety for recipients; however, the immunogenicity of subunit antigens is relatively low. Nanoparticular delivery systems have been applied to improve the immunocompetence of subunit vaccines by targeting lymph nodes, and effectively present antigens to immune cells. Moreover, adding appropriate molecular adjuvants may strengthen the antigens to elicit immune response. In this perspective article, we first elucidate the characteristics of immunity induced by subunit nanovaccines and then summarize the strategies to fabricate subunit nanovaccines with delivering materials. Herein we highlight non-covalent interaction to fabricate nanoparticular subunit vaccines.

摘要

疫苗可以通过预防传染病负担来提高人类生活质量。此外,疫苗接种正成为预防和治疗肿瘤的一种强有力的药物。基于抗原的来源,已经开发出了各种疫苗。在此,我们聚焦于抗原为蛋白质或肽的亚单位疫苗。亚单位疫苗的优点是对接受者安全;然而,亚单位抗原的免疫原性相对较低。纳米颗粒递送系统已被应用于通过靶向淋巴结来提高亚单位疫苗的免疫能力,并有效地将抗原呈递给免疫细胞。此外,添加适当的分子佐剂可能会增强抗原以引发免疫反应。在这篇观点文章中,我们首先阐明亚单位纳米疫苗诱导的免疫特性,然后总结用递送材料制备亚单位纳米疫苗的策略。在此我们强调通过非共价相互作用来制备纳米颗粒亚单位疫苗。

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