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布鲁氏菌脂多糖增强递送布鲁氏菌免疫原的沙门氏菌可保护小鼠免受强毒株攻击。

Brucella lipopolysaccharide reinforced Salmonella delivering Brucella immunogens protects mice against virulent challenge.

作者信息

Lalsiamthara Jonathan, Lee John Hwa

机构信息

College of Veterinary Medicine and Bio-Safety Research Institute, Chonbuk National University, Iksan Campus, 570-752, Iksan, Republic of Korea.

College of Veterinary Medicine and Bio-Safety Research Institute, Chonbuk National University, Iksan Campus, 570-752, Iksan, Republic of Korea.

出版信息

Vet Microbiol. 2017 Jun;205:84-91. doi: 10.1016/j.vetmic.2017.05.012. Epub 2017 May 17.

Abstract

Intracellular pathogen Salmonella exhibits natural infection broadly analogous to Brucella, this phenomenon makes Salmonella a pragmatic choice for an anti-Brucella vaccine delivery platform. In this study we developed and formulated a combination of four attenuated Salmonella Typhimurium live vector strains delivering heterologous Brucella antigens (rBs), namely lumazine synthase, proline racemase subunit A, lipoprotein outer membrane protein-19, and Cu-Zn superoxide dismutase. With an aim to develop a cross-protecting vaccine, Brucella pan-species conserved rBs were selected. The present study compared the efficacy of smooth and rough variants of Salmonella delivery vector and also evaluated the inclusion of purified Brucella lipopolysaccharide (LPS) in the formulation. Immunization of SPF-BALB/c mice with the vaccine combinations significantly (P≤0.05) reduced splenic wild-type Brucella abortus 544 colonization as compared to non-immunized mice as well as Salmonella only immunized mice. Increased induction of Brucella specific-IgG, sIgA production, and antigen-specific splenocyte proliferative responses were observed in the mice immunized with the formulations as compared to naïve or vector only immunized mice. Modulatory effects of rB and LPS on production of interleukin (IL)-4, IL-12, and interferon-γ were detected in splenocytes of mice immunized with the formulation. Rough Salmonella variant in combination with LPS could further enhance the efficacy of the delivery when applied intraperitoneally. Taken together, it is compelling that Brucella LPS-augmented Salmonella vector delivering immunogenic Brucella proteins may be more suitable than the current non-ideal live Brucella abortus vaccine. The vaccine system also provides a basis for the development of cross-protecting vaccine capable of preventing multispecies brucellosis.

摘要

细胞内病原体沙门氏菌表现出与布鲁氏菌广泛相似的自然感染现象,这一现象使得沙门氏菌成为抗布鲁氏菌疫苗递送平台的一个实用选择。在本研究中,我们开发并配制了四种减毒鼠伤寒沙门氏菌活载体菌株的组合,这些菌株可递送异源布鲁氏菌抗原(rBs),即核黄素合酶、脯氨酸消旋酶亚基A、脂蛋白外膜蛋白-19和铜锌超氧化物歧化酶。为了开发一种交叉保护疫苗,我们选择了布鲁氏菌全物种保守的rBs。本研究比较了沙门氏菌递送载体的光滑型和粗糙型变体的效力,并评估了制剂中纯化的布鲁氏菌脂多糖(LPS)的添加情况。与未免疫小鼠以及仅免疫沙门氏菌的小鼠相比,用疫苗组合免疫SPF-BALB/c小鼠可显著(P≤0.05)减少脾脏中野生型布鲁氏菌流产544的定植。与未免疫或仅免疫载体的小鼠相比,在用制剂免疫的小鼠中观察到布鲁氏菌特异性IgG、sIgA产生以及抗原特异性脾细胞增殖反应的诱导增加。在用制剂免疫的小鼠的脾细胞中检测到rB和LPS对白细胞介素(IL)-4、IL-12和干扰素-γ产生的调节作用。当腹腔注射时,粗糙型沙门氏菌变体与LPS联合使用可进一步提高递送效力。综上所述,令人信服的是,递送具有免疫原性的布鲁氏菌蛋白的布鲁氏菌LPS增强型沙门氏菌载体可能比目前不理想的活布鲁氏菌流产疫苗更合适。该疫苗系统也为开发能够预防多物种布鲁氏菌病的交叉保护疫苗提供了基础。

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