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不同浓度的迟缓爱德华氏菌幽灵疫苗在体内诱导免疫反应,并保护真鲷免受同源性挑战。

Different concentrations of Edwardsiella tarda ghost vaccine induces immune responses in vivo and protects Sparus macrocephalus against a homologous challenge.

机构信息

Shandong Provincial Key Laboratory of Animal Biotechnology and Disease Control and Prevention & Shandong Provincial Engineering Technology Research Center of Animal Disease Control and Prevention, Shandong Agricultural University, Taian, 271018, PR China; Zhejiang Mariculture Research Institute, Zhejiang Key Laboratory of Exploitation and Preservation of Coastal Bio-Resource, Wenzhou, 325005, PR China.

Shandong Provincial Key Laboratory of Animal Biotechnology and Disease Control and Prevention & Shandong Provincial Engineering Technology Research Center of Animal Disease Control and Prevention, Shandong Agricultural University, Taian, 271018, PR China.

出版信息

Fish Shellfish Immunol. 2018 Sep;80:467-472. doi: 10.1016/j.fsi.2018.06.034. Epub 2018 Jun 19.

Abstract

Bacterial ghosts (BGs) can be generated by the controlled expression of the PhiX174 lysis gene E in gram-negative bacteria. They are intriguing vaccine candidates since ghosts retain functional antigenic cellular determinants often lost during traditional inactivation procedures. Here we prepared Edwardsiella tarda ghost (ETG) and tested different concentrations in vaccination trials. The results showed that serum IgM antibody titers were significantly higher in three different concentration immunization groups than control group (P < 0.05), However, there was no significant (P > 0.05) difference between the immunized groups. The phagocytic percentage (PP) was significantly higher (P < 0.05) in ETG immunized groups than in the control group from 3 days post-treatment. The PP continued to rise with time until day 21, when the values of three ETG immunized groups were 45.7%,51.2% and 50.7%, respectively. In addition, phagocytic index (PI) was significantly higher (P < 0.05) in ETG immunized groups than in the control group after 7 days post-treatment. However, there was no significant (P > 0.05) difference of PP or PI between immunized groups. In addition, non-specific immune immunity, such as acid phosphatase, alkaline phosphatase, superoxide dismutase and lysozyme activities displayed a similar pattern in all immunized groups, all immunized fish showed significantly higher activities than control group fish (P < 0.05). Most importantly three ETG immunized groups were all significantly more protected against the E. tarda challenge (19/25, 76% survival), (21/25, 84% survival) and (20/25, 80% survival) respectively, compared to (9/25, 36% survival) survival in the control group, but there was no significant (P > 0.05) difference of survival rate (SR) or relative percent survival (RPS) between immunized groups. All these results suggest that an ETG could stimulate cellular and humoral immunity, and could be used as a vaccine candidate in S.m. In summary, ETG can protect fish from Edwardsiellosis, and there is no significant difference in SR and RPS when three different concentrations of ETG are used, so it can easily be developed as a vaccine for mechanical and artificial operations.

摘要

细菌幽灵(BGs)可以通过在革兰氏阴性菌中控制表达 PhiX174 裂解基因 E 来产生。由于幽灵保留了传统失活过程中经常丢失的功能性抗原细胞决定簇,因此它们是令人感兴趣的疫苗候选物。在这里,我们制备了迟钝爱德华氏菌幽灵(ETG)并在疫苗接种试验中测试了不同浓度。结果表明,与对照组相比,三个不同浓度免疫组的血清 IgM 抗体滴度明显更高(P<0.05),但免疫组之间没有显著差异(P>0.05)。从治疗后 3 天开始,吞噬百分比(PP)在 ETG 免疫组中明显更高(P<0.05)。PP 随着时间的推移继续上升,直到第 21 天,三个 ETG 免疫组的值分别为 45.7%、51.2%和 50.7%。此外,在治疗后 7 天,ETG 免疫组的吞噬指数(PI)明显高于对照组(P<0.05)。然而,免疫组之间的 PP 或 PI 没有显著差异(P>0.05)。此外,非特异性免疫免疫,如酸性磷酸酶、碱性磷酸酶、超氧化物歧化酶和溶菌酶活性在所有免疫组中表现出相似的模式,所有免疫鱼的活性均明显高于对照组鱼(P<0.05)。最重要的是,与对照组(9/25,36%存活)相比,三个 ETG 免疫组均显著受到保护,免受 E. tarda 挑战(19/25,76%存活)、(21/25,84%存活)和(20/25,80%存活),但免疫组之间的存活率(SR)或相对存活率(RPS)没有显著差异(P>0.05)。所有这些结果表明,ETG 可以刺激细胞和体液免疫,并且可以作为 S.m. 的疫苗候选物。总之,ETG 可以保护鱼类免受爱德华氏菌病的侵害,当使用三种不同浓度的 ETG 时,SR 和 RPS 没有显著差异,因此它很容易被开发为机械和人工操作的疫苗。

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