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基于流感病毒载体的改良布鲁氏菌流产疫苗可诱导强烈的B细胞和T细胞反应,并对怀孕绵羊和山羊抵御马尔他布鲁氏菌感染起到保护作用。

Improved influenza viral vector based Brucella abortus vaccine induces robust B and T-cell responses and protection against Brucella melitensis infection in pregnant sheep and goats.

作者信息

Mailybayeva Aigerim, Yespembetov Bolat, Ryskeldinova Sholpan, Zinina Nadezhda, Sansyzbay Abylai, Renukaradhya Gourapura J, Petrovsky Nikolai, Tabynov Kaissar

机构信息

Laboratory of Infectious Disease Prevention, Research Institute for Biological Safety Problems, Zhambulskaya Oblast, Kordaiskiy Rayon, Gvardeiskiy, Republic of Kazakhstan.

Laboratory of Microbiology, Research Institute for Biological Safety Problems, Zhambulskaya Oblast, Kordaiskiy Rayon, Gvardeiskiy, Republic of Kazakhstan.

出版信息

PLoS One. 2017 Oct 12;12(10):e0186484. doi: 10.1371/journal.pone.0186484. eCollection 2017.

Abstract

We previously developed a potent candidate vaccine against bovine brucellosis caused by Brucella abortus using the influenza viral vector expressing Brucella Omp16 and L7/L12 proteins (Flu-BA). Our success in the Flu-BA vaccine trial in cattle and results of a pilot study in non-pregnant small ruminants prompted us in the current study to test its efficacy against B. melitensis infection in pregnant sheep and goats. In this study, we improved the Flu-BA vaccine formulation and immunization method to achieve maximum efficacy and safety. The Flu-BA vaccine formulation had two additional proteins Omp19 and SOD, and administered thrice with 20% Montanide Gel01 adjuvant, simultaneously by both subcutaneous and conjunctival routes at 21 days intervals in pregnant sheep and goats. At 42 days post-vaccination (DPV) we detected antigen-specific IgG antibodies predominantly of IgG2a isotype but also IgG1, and also detected a strong lymphocyte recall response with IFN-γ production. Importantly, our candidate vaccine prevented abortion in 66.7% and 77.8% of pregnant sheep and goats, respectively. Furthermore, complete protection (absence of live B. melitensis 16M) was observed in 55.6% and 66.7% of challenged sheep and goats, and 72.7% and 90.0% of their fetuses (lambs/yeanlings), respectively. The severity of B. melitensis 16M infection in vaccinated sheep and goats and their fetuses (index of infection and rates of Brucella colonization in tissues) was significantly lower than in control groups. None of the protection parameters after vaccination with Flu-BA vaccine were statistically inferior to protection seen with the commercial B. melitensis Rev.1 vaccine (protection against abortion and vaccination efficacy, alpha = 0.18-0.34, infection index, P = 0.37-0.77, Brucella colonization, P = 0.16 to P > 0.99). In conclusion, our improved Flu-BA vaccine formulation and delivery method were found safe and effective in protecting pregnant sheep and goats against adverse consequences of B. melitensis infection.

摘要

我们之前利用表达布鲁氏菌Omp16和L7/L12蛋白的流感病毒载体(Flu-BA)开发了一种针对流产布鲁氏菌引起的牛布鲁氏菌病的高效候选疫苗。我们在牛的Flu-BA疫苗试验中的成功以及在未怀孕小反刍动物中的初步研究结果促使我们在当前研究中测试其对怀孕绵羊和山羊感染羊种布鲁氏菌的疗效。在本研究中,我们改进了Flu-BA疫苗的配方和免疫方法,以实现最大疗效和安全性。Flu-BA疫苗配方中添加了另外两种蛋白Omp19和SOD,并在怀孕绵羊和山羊中以20%的Montanide Gel01佐剂,通过皮下和结膜途径同时每隔21天接种三次。在接种疫苗后42天(DPV),我们检测到主要为IgG2a亚型但也有IgG1的抗原特异性IgG抗体,并且还检测到强烈的淋巴细胞回忆反应以及IFN-γ的产生。重要的是,我们的候选疫苗分别使66.7%和77.8%的怀孕绵羊和山羊避免了流产。此外,在55.6%和66.7%的受攻击绵羊和山羊以及它们72.7%和90.0%的胎儿(羔羊/幼羊)中观察到了完全保护(不存在活的羊种布鲁氏菌16M)。接种疫苗的绵羊和山羊及其胎儿中羊种布鲁氏菌16M感染的严重程度(感染指数和组织中布鲁氏菌定植率)显著低于对照组。用Flu-BA疫苗接种后的保护参数在统计学上均不低于使用商业羊种布鲁氏菌Rev.1疫苗所观察到的保护效果(预防流产和疫苗效力,α = 0.18 - 0.34,感染指数,P = 0.37 - 0.77,布鲁氏菌定植,P = 0.16至P > 0.99)。总之,我们改进的Flu-BA疫苗配方和接种方法在保护怀孕绵羊和山羊免受羊种布鲁氏菌感染的不良后果方面被发现是安全有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07fc/5638537/83bd75a0cb19/pone.0186484.g001.jpg

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