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口服免疫橄榄石斑鱼(Paralichthys olivaceus)重组活病毒性出血性败血症病毒(VHSV)可诱导对 VHSV 感染的保护。

Oral immunization of olive flounder (Paralichthys olivaceus) with recombinant live viral hemorrhagic septicemia virus (VHSV) induces protection against VHSV infection.

机构信息

Department of Aquatic Life Medicine, Pukyong National University, Nam-gu 599-1, Busan 608-737, South Korea.

出版信息

Fish Shellfish Immunol. 2011 Aug;31(2):212-6. doi: 10.1016/j.fsi.2011.05.003. Epub 2011 May 17.

DOI:10.1016/j.fsi.2011.05.003
PMID:21605686
Abstract

A recombinant viral hemorrhagic septicemia virus (rVHSV-ΔNV-EGFP) that has enhanced green fluorescent protein (EGFP) gene instead of NV gene was previously generated using reverse genetics technology. In this study, potential of the rVHSV-ΔNV-EGFP to be used as a live oral vaccine candidate was assessed. The presence of the recombinant virus in internal organs of orally administered olive flounder (Paralichthys olivaceus) was analyzed by semi-quantitative RT-PCR. Although the recombinant VHSV-specific band was detected only when the number of PCR cycle was increased to 35, the band was detected from internal organs, such as kidney, spleen, and liver of fish that were reared at either 15 °C or 20 °C till even 20 days, suggesting that a few orally administered rVHSV-ΔNV-EGFP might be transported to internal organs, and might keep weak replication ability in the organs. VHSV-neutralizing activity was induced by oral immunization of olive flounder with the NV gene knock-out recombinant VHSV not only in skin and intestinal mucus but also in serum, suggesting that mucosal and systemic adaptive immune responses were elicited by oral immunization. In challenge experiment, groups of fish immunized with 10⁴, 10⁵, and 2 × 10⁵ PFU of rVHSV-ΔNV-EGFP/fish showed 25%, 50%, and 70% of relative percent survival (RPS), respectively. The RPSs were elevated to 60%, 75%, and 90% by a boost immunization in fish boost immunized with 10⁴, 10⁵, and 2 × 10⁵ PFU of rVHSV-ΔNV-EGFP, respectively. The cumulative mortality of fish in the control groups was 100%. Conclusionly, the present results demonstrate that the NV gene knock-out recombinant VHSV administered orally to olive flounder can induce dose- and boosting-dependent VHSV-neutralizing antibody in mucus and serum, and can provide a high protection in olive flounder against a virulent VHSV challenge.

摘要

先前利用反向遗传学技术构建了一株缺失了 NV 基因、并携带增强型绿色荧光蛋白(EGFP)基因的重组病毒(rVHSV-ΔNV-EGFP)。本研究评估了该重组病毒作为活口服疫苗候选株的潜力。通过半定量 RT-PCR 分析了口服感染牙鲆(Paralichthys olivaceus)后,其内部器官中重组病毒的存在情况。尽管当 PCR 循环数增加到 35 时,才检测到重组 VHSV 的特异性条带,但在 15°C 或 20°C 条件下饲养的鱼的肾脏、脾脏和肝脏等内部器官中均检测到了该条带,提示少量口服的 rVHSV-ΔNV-EGFP 可能被转运至内部器官,并在器官中保持较弱的复制能力。NV 基因敲除重组 VHSV 经牙鲆口服免疫后,不仅在皮肤和肠道黏液中,而且在血清中诱导产生了 VHSV 中和抗体,表明黏膜和系统适应性免疫反应均由口服免疫诱导产生。在攻毒实验中,10⁴、10⁵和 2×10⁵PFU/rVHSV-ΔNV-EGFP/鱼组的相对存活率(RPS)分别为 25%、50%和 70%。在对已免疫的鱼进行加强免疫后,10⁴、10⁵和 2×10⁵PFU/rVHSV-ΔNV-EGFP 组的 RPS 分别提高到 60%、75%和 90%。对照组鱼的累计死亡率为 100%。综上所述,本研究结果表明,口服感染牙鲆的 NV 基因敲除重组 VHSV 可诱导黏液和血清中剂量和加强依赖的 VHSV 中和抗体,并为牙鲆抵御强毒 VHSV 攻击提供高保护力。

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