首页> 外文OA文献 >Potent O-antigen-deficient (rough) mutants of Salmonella Typhimurium secreting Lawsonia intracellularis antigens enhance immunogenicity and provide single-immunization protection against proliferative enteropathy and salmonellosis in a murine model
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Potent O-antigen-deficient (rough) mutants of Salmonella Typhimurium secreting Lawsonia intracellularis antigens enhance immunogenicity and provide single-immunization protection against proliferative enteropathy and salmonellosis in a murine model

机译:令人有效的O-抗原缺陷(粗糙)突变体的沙门氏菌细胞分泌鲍啡氏肾上腺素抗原增强免疫原性,并在鼠模型中提供针对增殖肠球菌和沙门氏菌的单一免疫保护

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摘要

Abstract The obligate intracellular pathogen Lawsonia intracellularis (LI), the etiological agent of proliferative enteropathy (PE), poses a substantial economic loss in the swine industry worldwide. In this study, we genetically engineered an O-antigen-deficient (rough) Salmonella strain secreting four selected immunogenic LI antigens, namely OptA, OptB, LfliC, and Lhly. The genes encoding these antigens were individually inserted in the expression vector plasmid pJHL65, and the resultant plasmids were transformed into the ∆asd ∆lon ∆cpxR ∆rfaL Salmonella Typhimurium (ST) strain JOL1800. The individual expression of the selected LI antigens in JOL1800 was validated by an immunoblotting assay. We observed significant (P < 0.05) induction of systemic IgG and mucosal IgA responses against each LI antigen or Salmonella outer membrane protein in mice immunized once orally with a mixture of four JOL1800-derived strains. Further, mRNA of IL-4 and IFN-γ were highly upregulated in splenic T cells re-stimulated in vitro with individual purified antigens. Subsequently, immunized mice showed significant protection against challenge with 106.9 TCID50 LI or 2 × 109 CFU of a virulent ST strain. At day 8 post-challenge, no mice in the immunized groups showed the presence of LI-specific genomic DNA (gDNA) in stool samples, while 50% of non-immunized mice were positive for LI-specific gDNA. Further, all the immunized mice survived the virulent ST challenge, compared to a 20% mortality rate observed in the control mice. Collectively, the constructed rough ST-based LI vaccine candidate efficiently elicited LI and ST-specific humoral and cell-mediated immunity and conferred proper dual protection against PE and salmonellosis.
机译:摘要巨大的细胞内病原体鲍森菊属植物(Li),增殖肠病的病因(PE)(PE),在全球猪工业中提出了大量的经济损失。在这项研究中,我们遗传地设计了一种分泌4个选定的免疫原性Li抗原的O-抗原缺陷(粗糙)的沙门氏菌菌株,即OPTA,OPTB,LHLY和LHLY。编码这些抗原的基因单独插入表达载体质粒pJH165中,将所得质粒转化到ΔASDΔLONΔCPXRδRFAL沙门氏菌中刺血吸虫(ST)菌株JOL1800中。通过免疫印迹测定验证了JOL1800中所选LI抗原的个体表达。我们观察到全身抗原或沙门氏菌外膜蛋白的全身IgG和粘膜IgA反应的显着(p <0.05)诱导,所述小鼠中的每种Li抗原或沙门氏菌外膜蛋白均用四种Jol1800衍生的菌株的混合物免疫。此外,IL-4和IFN-γ的mRNA在体外重新刺激的脾脏T细胞中高度上调,用个体纯化的抗原再刺激。随后,免疫小鼠表现出对致命的致命存在显着的保护,例如毒性ST菌株的2×109 CFU。在第8天挑战后,免疫基团中没有小鼠在粪便样品中显示出Li特异性基因组DNA(GDNA),而50%的非免疫小鼠对Li特异性GDNA阳性。此外,与对照小鼠中观察到的20%死亡率相比,所有免疫小鼠均存活毒性ST挑战。统称,构建的粗糙的ST基Li疫苗候选有效引发Li和ST特异性体液和细胞介导的免疫,并赋予Pe和SalMonellis的适当双重保护。

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