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Nanoconjugation of bicistronic DNA vaccine against Edwardsiella tarda using chitosan nanoparticles: Evaluation of its protective efficacy and immune modulatory effects in Labeo rohita vaccinated by different delivery routes

机译:使用壳聚糖纳米粒子对Edwardiella Tarda的纳米核疫苗进行使用壳聚糖纳米粒子:通过不同递送途径接种的Labeo Rohita的保护效应和免疫调节效果评估

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摘要

DNA-based immunization has proven to be an effective prophylactic measure to control aquatic animal diseases. In order to improve the efficiency of vaccine against fish pathogen, novel delivery mechanism needs to be adopted. In the present study we nanoconjugated the previously constructed DNA vaccine (pGPD + IFN) with chitosan nanoparticles (CNPs) by complex coacervation process. After construction of the vaccine, an in vivo vaccination trial was conducted in which 2 groups of rohu (L. rohita) fingerlings were vaccinated with CNPs-pGPD + IFN, one group by oral route (incorporated in feed for 14 days) and the other by immersion route (primary and booster immunised), whereas, a third group was intramuscularly (I/M) injected (initial and booster immunised) with naked pGPD + IFN and subsequently challenged with E. tarda (8.7 x 10(4) CFU/fish) at 35-day post initial vaccination. The protective immune responses were determined in terms of relative percentage survival (RPS), specific antibody production, non-specific immune response, expression kinetics of immune-related genes and pathological manifestation. Evaluation of RPS analysis revealed that CNPs-pGPD + IFN groups recorded highest RPS (81.82% and 72.73% in oral and immersion vaccinated fish group respectively) while the naked pGPD + IFN injected group showed 63.62% RPS when compared with 55% cumulative mortality of control group. In addition, NBT, myeloperoxidase activity, serum lysozyme activity and specific antibody titre in case of CNPs-pGPD + IFN groups showed higher activities during all the time points. Furthermore, CNPs-pGPD + IFN groups showed significant (p & 0.05) upregulation of different immune gene transcripts (IgHC, iNOS, TLR22, NOD1 and IL-1 beta) in three immunologically important tissues post immunization (both primary and booster dose) as well as after challenge. Thus, from this study, we can conclude that oral or immersion vaccination with CNPs-pGPD + IFN can orchestrate an effective immunisation strategy in organizing a coordinative immune response against E. tarda in L rohita exhibiting minimum stress to the host with maximum efficacy. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于DNA的免疫已经被证明是控制水生动物疾病的有效预防措施。为了改善针对鱼病原体疫苗的效率,要采用新的递送机制的需求。在本研究中,我们nanoconjugated先前构建的DNA疫苗(PGPD + IFN)与壳聚糖纳米颗粒(CNPS)通过复合凝聚过程。施工疫苗后,在体内接种试验进行,其中2组鲮的(L.鲮)鱼种用CNPS-PGPD + IFN,其中一组通过口服途径(进料中掺入14天),而另一接种通过浸渍路线(初次和加强免疫的),反之,第三组为肌内(I / M)注射(初次和助推器免疫)用裸PGPD + IFN并且随后用E.氏菌(8.7×10(4)CFU /激发鱼),在35天的后初次接种。的保护性免疫应答是在相对百分比存活(RPS),特异性抗体生产,非特异性免疫应答,免疫相关基因和病理表现表达动力学方面来确定。 RPS分析的评价显示记录CNPS-PGPD + IFN组最高RPS(81.82%和72.73%的口服和浸没分别接种鱼组),而裸PGPD + IFN注射组显示出63.62%RPS当与55%的累积死亡率相比控制组。此外,NBT,髓过氧化物酶活性,血清溶菌酶活性和在CNPS-PGPD + IFN基团的情况下,特定的抗体滴度显示在所有的时间点更高的活性。此外,CNPS-PGPD + IFN组显示显著(P&安培; LT; 0.05)在三个免疫重要组织免疫后不同的免疫基因转录物(IGHC,iNOS的,TLR22,NOD1和IL-1β)的上调(初级和增压剂量)以及攻击后。因此,从本研究中,我们可以得出结论与CNPS-PGPD + IFN,口服或浸入接种可以在组织对大肠杆菌氏菌以L鲮表现出最小应力以最大功效所述主机的协调免疫应答协调的有效免疫策略。 (c)2018年elestvier有限公司保留所有权利。

著录项

  • 来源
    《Vaccine》 |2018年第16期|共11页
  • 作者单位

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Fish Genet &

    Biotechnol Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Brackishwater Aquaculture Finfish Culture Div Madras Tamil Nadu India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

    ICAR Res Complex Cent Inst Fisheries Educ Aquat Environm &

    Hlth Management Div Bombay Maharashtra India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学免疫学;
  • 关键词

    Nanoconjugation; DNA vaccine; GAPDH; Edwardsiella tarda; Labeo rohita; Chitosan nanoparticles;

    机译:Nanoconjugation;DNA疫苗;GAPDH;Edwardsiella Tarda;Labeo Rohita;壳聚糖纳米粒子;

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