首页> 外文期刊>FEMS Microbiology Letters >Immunogenicity and protective effect of recombinant Brucella abortus Ndk (rNdk) against a virulent strain B. abortus 544 infection in BALB/c mice
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Immunogenicity and protective effect of recombinant Brucella abortus Ndk (rNdk) against a virulent strain B. abortus 544 infection in BALB/c mice

机译:重组Brucella abortus NDK(RNDK)对BALB / C小鼠毒力菌株B. abortius 544感染的免疫原性和保护作用

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In this study, we particularly evaluated the protective effect of recombinant protein encoded by Brucella abortus 544 ndk (nucleoside diphosphate kinase) gene against B. abortus infection in the BALB/ c mice. Cloning and expression of B. abortus Ndk was accomplished by PCR amplification into a pMAL expression system, and purification of a recombinant Ndk (rNdk). As for the determination of IgG responses, rNdk induced vigorous IgG production, especially higher in IgG2a compared to IgG1 with titers of 5.2 and 4.8, respectively, whereas titers of these in mice immunized with MBP were 2.4 of IgG2a and 2.6 of IgG1. The analysis of cytokine has revealed that rNdk can strongly induce production of IFN-gamma as well as proinflammatory cytokines (TNF, MCP1 and IL-6) but not much IL-10, suggesting rNdk elicited predominantly cell-mediated immune responses. Furthermore, the spleen proliferation and bacterial burden in the spleen of rNdk immunized mice were significantly lower than those of MBP-immunized mice against virulent B. abortus challenge (P < 0.01). Conclusionly, rNdk immunization enables to elicit both of the humoral and cellular response, ultimately enhancing protection level in experimental mice, suggesting that rNdk of B. abortus might be a useful candidate for subunit vaccine for brucellosis in animals.
机译:在本研究中,我们特别评估了Brucella abortus 544 Ndk(核苷二磷酸激酶)基因对Balb / c小鼠B. abortius感染的重组蛋白对B. abortius感染的重组蛋白的保护作用。通过PCR扩增到PMAl表达系统中完成B. Abortus NDK的克隆和表达,并纯化重组NDK(RNDK)。至于测定IgG反应的测定,与IgG2分别与5.2和4.8的IgG1相比,IgG2A中的RNDK诱导剧烈的IgG产生,而用MBP免疫的小鼠中,其中滴度为2.4的IgG2a和2.6的IgG1。细胞因子的分析表明,RNDK可以强烈地诱导IFN-GAMMA以及促炎细胞因子(TNF,MCP1和IL-6)的产生,但不太多的IL-10,表明RNDK主要引发细胞介导的免疫应答。此外,RNDK免疫小鼠脾脏的脾细胞增殖和细菌负担显着低于毒力B. Abortus挑战的MBP免疫小鼠(P <0.01)。结论地,RNDK免疫使得能够引发患有实验小鼠的体液和细胞反应,最终增强保护水平,表明B. Abortus的RNDK可能是动物亚基疫苗的有用候选者。

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