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用布鲁氏菌流产菌株RB51对野牛进行飞镖接种或加强免疫后的免疫反应和安全性。

Immune responses and safety after dart or booster vaccination of bison with Brucella abortus strain RB51.

作者信息

Olsen S C, Johnson C

机构信息

Bacterial Diseases of Livestock Research Unit, National Animal Disease Center, Agricultural Research Service, United States Department of Agriculture, Ames, Iowa, USA.

出版信息

Clin Vaccine Immunol. 2012 May;19(5):642-8. doi: 10.1128/CVI.00033-12. Epub 2012 Mar 29.

Abstract

One alternative for management of brucellosis in Yellowstone National Park bison (Bison bison) is vaccination of calves and yearlings. Although Brucella abortus strain RB51 vaccination protects bison against experimental challenge, the effect of booster vaccinations was unknown. This study characterized immunologic responses after dart or booster vaccination of bison with Brucella abortus strain RB51. In two studies, 8- to 10-month-old female bison were inoculated with saline (n = 14), hand vaccinated with 1.1 × 10(10) to 2.0 × 10(10) CFU of RB51 (n = 21), or dart vaccinated with 1.8 × 10(10) CFU of RB51 (n = 7). A subgroup of hand vaccinates in study 1 was randomly selected for booster vaccination 15 months later with 2.2 × 10(10) CFU of RB51. Compared to single vaccinates, booster-vaccinated bison had greater serologic responses to RB51. However, there was a trend for antigen-specific proliferative responses of peripheral blood mononuclear cells (PBMC) from booster vaccinates to be reduced compared to responses of PBMC from single vaccinates. PBMC from booster vaccinates tended to have greater gamma interferon (IFN-γ) production than those from single vaccinates. In general, dart vaccination with RB51 induced immunologic responses similar to those of hand vaccination. All vaccinates (single hand, dart, or booster) demonstrated greater (P < 0.05) immunologic responses at various times after vaccination than nonvaccinated bison. Booster vaccination with RB51 in early gestation did not induce abortion or fetal infection. Our data suggest that booster vaccination does not induce strong anamnestic responses. However, phenotypic data on resistance to experimental challenge are required to fully assess the effect of booster vaccination on protective immunity.

摘要

黄石国家公园美洲野牛(Bison bison)布鲁氏菌病管理的一种替代方法是给犊牛和一岁小牛接种疫苗。虽然布鲁氏菌流产菌株RB51疫苗接种可保护野牛免受实验性攻击,但加强疫苗接种的效果尚不清楚。本研究对用布鲁氏菌流产菌株RB51对野牛进行飞镖注射或加强疫苗接种后的免疫反应进行了表征。在两项研究中,给8至10个月大的雌性野牛接种生理盐水(n = 14)、用1.1×10¹⁰至2.0×10¹⁰ CFU的RB51进行手动接种(n = 21)或用1.8×10¹⁰ CFU的RB51进行飞镖注射接种(n = 7)。研究1中手动接种的一个亚组在15个月后随机选择用2.2×10¹⁰ CFU的RB51进行加强疫苗接种。与单次接种的野牛相比,加强疫苗接种的野牛对RB51的血清学反应更强。然而,与单次接种的外周血单个核细胞(PBMC)反应相比,加强疫苗接种的PBMC的抗原特异性增殖反应有降低的趋势。加强疫苗接种的PBMC产生的γ干扰素(IFN-γ)往往比单次接种的更多。一般来说,用RB51进行飞镖注射接种诱导的免疫反应与手动接种相似。所有接种疫苗的(单次手动、飞镖或加强)在接种后的不同时间都表现出比未接种疫苗的野牛更强(P < 0.05)的免疫反应。在妊娠早期用RB51进行加强疫苗接种不会导致流产或胎儿感染。我们的数据表明,加强疫苗接种不会诱导强烈的回忆反应。然而,需要关于对实验性攻击抵抗力的表型数据来全面评估加强疫苗接种对保护性免疫的影响。

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