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甘露糖修饰的靶向浸入式疫苗递送系统增强了鳜鱼对传染性脾肾坏死病毒的保护性免疫。

Mannose modified targeted immersion vaccine delivery system improves protective immunity against Infectious spleen and kidney necrosis virus in mandarin fish (Siniperca chuatsi).

作者信息

Zhao Zhao, Meng Qiang, Sun Tian-Zi, Zhu Bin

机构信息

College of Animal Science and Technology, Northwest A&F University, Xinong Road 22nd, Yangling, Shaanxi 712100, PR China.

Shenzhen Vaccine Biotechnology Co., Ltd, B618, Virtual University Experimental Platform Building, Nanshan District, Shenzhen 518000, PR China.

出版信息

Vaccine. 2024 Apr 19;42(11):2886-2894. doi: 10.1016/j.vaccine.2024.03.047. Epub 2024 Mar 21.

Abstract

Vaccination is an effective method to prevent viral diseases. However, the biological barrier prevents the immersion vaccine from achieving the best effect without adding adjuvants and carriers. Researches on the targeted presentation technology of vaccines with nanocarriers are helpful to develop immersion vaccines for fish that can break through biological barriers and play an effective role in fish defense. In our study, functionally modified single-walled carbon nanotubes (SWCNTs) were used as carriers to construct a targeted immersion vaccine (SWCNTs-M-MCP) with mannose modified major capsid protein (MCP) to target antigen-presenting cells (APCs), against iridovirus diseases. After bath immunization, our results showed that SWCNTs-M-MCP induced the presentation process and uptake of APCs, triggering a powerful immune response. Moreover, the highest relative percent survival (RPS) was 81.3% in SWCNTs-M-MCP group, which was only 41.5% in SWCNTs-MCP group. Altogether, this study indicates that the SWCNTs-based targeted immersion vaccine induces strong immune response and provided an effective protection against iridovirus diseases.

摘要

疫苗接种是预防病毒性疾病的有效方法。然而,生物屏障使得浸泡疫苗在不添加佐剂和载体的情况下无法达到最佳效果。对纳米载体疫苗靶向呈递技术的研究有助于开发能够突破生物屏障并在鱼类防御中发挥有效作用的鱼类浸泡疫苗。在我们的研究中,功能修饰的单壁碳纳米管(SWCNTs)被用作载体,构建了一种靶向浸泡疫苗(SWCNTs-M-MCP),该疫苗用甘露糖修饰的主要衣壳蛋白(MCP)来靶向抗原呈递细胞(APC),用于预防虹彩病毒病。浸浴免疫后,我们的结果表明,SWCNTs-M-MCP诱导了APC的呈递过程和摄取,引发了强大的免疫反应。此外,SWCNTs-M-MCP组的最高相对存活率(RPS)为81.3%,而SWCNTs-MCP组仅为41.5%。总之,本研究表明基于SWCNTs的靶向浸泡疫苗可诱导强烈的免疫反应,并为预防虹彩病毒病提供有效保护。

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