Zhu Bin, Zhang Chen, Zhao Zhao, Wang Gao-Xue
Department of aquaculture, College of Animal Science and Technology, Northwest A&F University, Yangling 712100, China.
Vaccines (Basel). 2020 Feb 15;8(1):87. doi: 10.3390/vaccines8010087.
Immersion vaccination is considered as the most effective method for juvenile fish in preventing viral disease, due to its convenience for mass vaccination and stress-free administration. However, immune responses following immersion vaccination are generally less robust and of shorter duration than those induced through intraperitoneal injection. Herein, to improve the efficacy of the immersion vaccine, we constructed a targeted single-walled carbon nanotubes-based immersion vaccine delivery system (CNTs-M-VP7), the surface of which are modified with mannose to allow antigen-presenting cells' (APCs) targeting. The targeting ability of CNTs-M-VP7 was confirmed in vivo and in vitro. Critically, this immersion CNTs-M-VP7 vaccine could cross into the fish body through mucosal tissues (skin, gill, and intestine), and then present to immune-related tissues. Moreover, CNTs-M-VP7 could significantly induce the maturation and presenting process of APCs, which would then trigger robust immune responses. Altogether, this study demonstrates that the single-walled carbon nanotubes (SWCNTs)-based targeted nanovaccine delivery system shows the potential to be an effective prophylactic against fish viral disease.
浸泡式疫苗接种被认为是预防幼鱼病毒性疾病的最有效方法,因为它便于大规模接种且接种过程无应激。然而,浸泡式疫苗接种后的免疫反应通常不如腹腔注射诱导的免疫反应强烈,持续时间也较短。在此,为提高浸泡式疫苗的效力,我们构建了一种基于靶向单壁碳纳米管的浸泡式疫苗递送系统(CNTs-M-VP7),其表面用甘露糖修饰,以实现靶向抗原呈递细胞(APC)。CNTs-M-VP7的靶向能力在体内和体外均得到证实。至关重要的是,这种浸泡式CNTs-M-VP7疫苗可通过黏膜组织(皮肤、鳃和肠道)进入鱼体,然后呈递给免疫相关组织。此外,CNTs-M-VP7可显著诱导APC的成熟和呈递过程,进而引发强烈的免疫反应。总之,本研究表明基于单壁碳纳米管(SWCNT)的靶向纳米疫苗递送系统有潜力成为预防鱼类病毒性疾病的有效手段。