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通过点击化学负载CpG增强生物共轭纳米疫苗的免疫反应

Enhancement of Immune Response of Bioconjugate Nanovaccine by Loading of CpG through Click Chemistry.

作者信息

Mo Mengting, Li Xiang, Li Caixia, Wang Kangfeng, Li Shulei, Guo Yan, Sun Peng, Wu Jun, Lu Ying, Pan Chao, Wang Hengliang

机构信息

College of Food Science and Technology, Shanghai Ocean University, No. 999 Hucheng Huan Road, LinGang New City, Shanghai 201306, China.

State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Biotechnology, No. 20 Dongdajie Street, Fengtai District, Beijing 100071, China.

出版信息

J Pers Med. 2023 Mar 11;13(3):507. doi: 10.3390/jpm13030507.

Abstract

CpG is a widely used adjuvant that enhances the cellular immune response by entering antigen-presenting cells and binding with receptors. The traditional physical mixing of the antigen and CpG adjuvant results in a low adjuvant utilization rate. Considering the efficient delivery capacity of nanovaccines, we developed an attractive strategy to covalently load CpG onto the nanovaccine, which realized the co-delivery of both CpG and the antigen. Briefly, the azide-modified CpG was conjugated to a bioconjugate nanovaccine (NP-OPS) against through a simple two-step reaction. After characterization of the novel vaccine (NP-OPS-CpG), a series of in vitro and in vivo experiments were performed, including in vivo imaging, lymph node sectioning, and dendritic cell stimulation, and the results showed that more CpG reached the lymph nodes after covalent coupling. Subsequent flow cytometry analysis of lymph nodes from immunized mice showed that the cellular immune response was greatly promoted by the nanovaccine coupled with CpG. Moreover, by analyzing the antibody subtypes of immunized mice, NP-OPS-CpG was found to further promote a Th1-biased immune response. Thus, we developed an attractive method to load CpG on a nanovaccine that is simple, convenient, and is especially suitable for immune enhancement of vaccines against intracellular bacteria.

摘要

CpG是一种广泛使用的佐剂,它通过进入抗原呈递细胞并与受体结合来增强细胞免疫反应。传统的将抗原与CpG佐剂物理混合会导致佐剂利用率低下。考虑到纳米疫苗的高效递送能力,我们开发了一种有吸引力的策略,将CpG共价负载到纳米疫苗上,实现了CpG和抗原的共同递送。简而言之,通过简单的两步反应,将叠氮化物修饰的CpG与一种针对……的生物共轭纳米疫苗(NP-OPS)偶联。对新型疫苗(NP-OPS-CpG)进行表征后,进行了一系列体外和体内实验,包括体内成像、淋巴结切片和树突状细胞刺激,结果表明共价偶联后更多的CpG到达了淋巴结。随后对免疫小鼠的淋巴结进行流式细胞术分析表明,与CpG偶联的纳米疫苗极大地促进了细胞免疫反应。此外,通过分析免疫小鼠的抗体亚型,发现NP-OPS-CpG进一步促进了以Th1为主的免疫反应。因此,我们开发了一种将CpG负载到纳米疫苗上的有吸引力的方法,该方法简单、方便,特别适用于增强针对细胞内细菌的疫苗的免疫效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/703a/10052328/a3c7435ffe8b/jpm-13-00507-g001.jpg

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