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单壁碳纳米管作为草鱼免疫抗草鱼呼肠孤病毒的候选重组亚单位疫苗载体。

Single-walled carbon nanotubes as candidate recombinant subunit vaccine carrier for immunization of grass carp against grass carp reovirus.

作者信息

Zhu Bin, Liu Guang-Lu, Gong Yu-Xin, Ling Fei, Song Lin-Sheng, Wang Gao-Xue

机构信息

College of Animal Science and Technology, Northwest A&F University, Yangling 712100, China.

College of Science, Northwest A&F University, Yangling 712100, China.

出版信息

Fish Shellfish Immunol. 2014 Dec;41(2):279-93. doi: 10.1016/j.fsi.2014.09.014. Epub 2014 Sep 20.

Abstract

Grass carp reovirus (GCRV), the most pathogenic aquareovirus, can cause fatal hemorrhagic disease in fingerling and yearling grass carp. Vaccination by injection is by far the most effective method of combating disease. However it is labor intensive, costly and not feasible to vaccinate large numbers of the fish. Thus, an efficient and economic strategy for the prevention of GCRV infection becomes urgent. Here, functionalized single-walled carbon nanotubes (SWCNTs) as carrier were used to manufacture SWCNTs-VP7 subunit vaccine with chemical modification. Different developmental stages of grass carps were immunized by VP7/SWCNTs-VP7 subunit vaccine against GCRV by intramuscular injection and bath immunization. The results indicate that better immune responses of grass carp immunized with the SWCNTs-VP7 subunit vaccine were induced in comparison with VP7 subunit vaccine alone. Immunization doses/concentrations are significantly reduced (about 5-8 times) to prevent GCRV infection in different developmental stages of grass carp with injection or bath treatment when SWCNTs carrier was used. A good immune protective effect (relative percentage survival greater than 95%) is observed in smaller size fish (0.2 g) with SWCNTs-VP7 bath immunization. In addition, serum respiratory burst activity, complement activity, lysozyme activity, superoxide dismutase activity, alkaline phosphatase activity, immune-related genes and antibody levels were significantly enhanced in fish immunized with vaccine. This study suggested that functionalized SWCNTs was the promising carrier for recombinant subunit vaccine and might be used to vaccinate fish by bath approach.

摘要

草鱼呼肠孤病毒(GCRV)是致病性最强的水生呼肠孤病毒,可导致草鱼幼鱼和一岁草鱼患上致命的出血性疾病。注射疫苗是目前对抗该疾病最有效的方法。然而,这种方法 labor intensive(此处原文有误,推测可能是labor - intensive,意为劳动强度大)、成本高,对大量鱼类进行疫苗接种并不可行。因此,迫切需要一种高效且经济的策略来预防GCRV感染。在此,使用功能化的单壁碳纳米管(SWCNTs)作为载体,通过化学修饰制备SWCNTs - VP7亚单位疫苗。通过肌肉注射和浸浴免疫,用VP7/SWCNTs - VP7亚单位疫苗对草鱼的不同发育阶段进行免疫接种,以对抗GCRV。结果表明,与单独的VP7亚单位疫苗相比,用SWCNTs - VP7亚单位疫苗免疫的草鱼诱导出了更好的免疫反应。当使用SWCNTs载体时,通过注射或浸浴处理预防草鱼不同发育阶段的GCRV感染,免疫剂量/浓度显著降低(约5 - 8倍)。通过SWCNTs - VP7浸浴免疫,在较小规格的鱼(0.2克)中观察到了良好的免疫保护效果(相对存活率大于95%)。此外,用该疫苗免疫的鱼血清中的呼吸爆发活性、补体活性、溶菌酶活性、超氧化物歧化酶活性、碱性磷酸酶活性、免疫相关基因和抗体水平均显著增强。本研究表明,功能化的SWCNTs是重组亚单位疫苗的有前景的载体,并且可能用于通过浸浴方式给鱼接种疫苗。

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