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Comparison of protective efficacy between two DNA vaccines encoding DnaK and GroEL against fish nocardiosis

机译:杜卡迪病编码DNAK和腹股沟腹股沟疫苗的保护效应的比较

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摘要

Fish nocardiosis is a chronic granulomatous bacterial disease mainly caused by three pathogenic bacteria, including Nocardia seriolae, N. asteroids and N. salmonicida. Molecular chaperone DnaK and GroEL were identified to be the common antigens of the three pathogenic Nocardia species in our previous studies. To evaluate the immune protective effect of two DNA vaccines encoding DnaK or GroEL against fish nocardiosis, hybrid snakehead were vaccinated and the immune responses induced by these two vaccines were comparatively analyzed. The results suggested it needed at least 7 d to transport DnaK or GroEL gene from injected muscle to head kidney, spleen and liver and stimulate host's immune system for later protection after immunization by DNA vaccines. Additionally, non-specific immunity parameters (serum lysozyme (LYZ), peroxidase (POD), acid phosphatase (ACP), alkaline phosphatase (AKP) and superoxide dismutase (SOD) activities), specific antibody (IgM) production and immune-related genes (MHCI alpha, MHCII alpha, CD4, CD8 alpha, IL-1 beta and TNF alpha) were used to evaluate the immune responses induced in vaccinated hybrid snakehead. It proved that all the above-mentioned immune activities were significantly enhanced after immunization with these two DNA vaccines. The protective efficacy of pcDNA-DnaK and pcDNA-GroEL DNA vaccines, in terms of relative percentage survival (RPS), were 53.01% and 80.71% respectively. It demonstrated that these two DNA vaccines could increase the survival rate of hybrid snakehead against fish nocardiosis, albeit with variations in immunoprotective effects. Taken together, these results indicated that both pcDNA-DnaK and pcDNA-GroEL DNA vaccines could boost the innate, humoral and cellular immune response in hybrid snakehead and show highly protective efficacy against fish nocardiosis, suggesting that DnaK and GroEL were promising vaccine candidates. These findings will promote the development of DNA vaccines against fish nocardiosis in aquaculture.
机译:鱼芽病是一种慢性肉芽肿细菌疾病,主要由三种致病细菌引起,包括Nocardia Seriolae,N.Asteroids和N. Salmonicida。将分子伴侣DNAK和GROBEL鉴定为我们以前的研究中三种致病性诺卡迪亚物种的常见抗原。为了评估编码DNAK或腹股沟的两种DNA疫苗的免疫保护作用,抗鱼类嗜癌症,接种杂交蛇发头,并且通过这两个疫苗诱导的免疫应答相对较浅。结果表明,需要至少7天将DNAK或GROEL基因传送到头部肾脏,脾脏和肝脏,刺激宿主的免疫系统,以便在DNA疫苗免疫后以后的保护。另外,非特异性免疫参数(血清溶菌酶(Lyz),过氧化物酶(POD),酸性磷酸酶(ACP),碱性磷酸酶(AKP)和超氧化物歧化酶(SOD)活性),特异性抗体(IgM)产生和免疫相关基因(MHCIα,MHCIIα,CD4,CD8α,IL-1β和TNFα)用于评估疫苗杂交蛇头中诱导的免疫应答。事实证明,在用这两个DNA疫苗免疫后,所有上述免疫活性显着提高。在相对百分比存活率(RPS)方面,PCDNA-DNAK和PCDNA-GENEL DNA疫苗的保护效果分别为53.01%和80.71%。它表明,这两种DNA疫苗可以增加杂交蛇头的存活率对鱼的嗜胞病,尽管具有免疫保护作用的变化。总之,这些结果表明,PCDNA-DNAK和PCDNA-Groel DNA疫苗可以提高杂交蛇头的先天性,体液和细胞免疫应答,并表现出对鱼嗜胞病症的高度保护性疗效,表明DNAK和GEGEL是有前途的疫苗候选者。这些调查结果将促进DNA疫苗对水产养殖中鱼芽病的发展。

著录项

  • 来源
    《Fish & Shellfish Immunology》 |2019年第2019期|共12页
  • 作者单位

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

    Guangdong Ocean Univ Fisheries Coll Zhanjiang Guangdong Peoples R China;

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

    Guangdong Ocean Univ Shenzhen Inst 3 Binhai 2nd Rd Shenzhen 518108 Guangdong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

    Fish nocardiosis; Nocardia seriolae; Molecular chaperone DnaK; Molecular chaperone GroEL; DNA vaccine;

    机译:鱼芽病;Nocardia seriolae;分子伴侣dnak;分子伴侣腹股沟;DNA疫苗;

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