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首页> 外文期刊>Vaccine >Cross-protective immunity conferred by a DNA adenine methylase deficient Salmonella enterica serovar Typhimurium vaccine in calves challenged with Salmonella serovar Newport.
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Cross-protective immunity conferred by a DNA adenine methylase deficient Salmonella enterica serovar Typhimurium vaccine in calves challenged with Salmonella serovar Newport.

机译:DNA腺嘌呤甲基化酶缺陷型沙门氏肠炎沙门氏菌鼠伤寒疫苗在交叉感染沙门氏菌纽波特的犊牛中产生的交叉保护免疫。

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摘要

Intensive livestock production and management systems are associated with increased fecal-oral pathogen transmission and a resultant high prevalence of multiple Salmonella serovars in many large dairy farms and feedlots. Thus, it is imperative to develop livestock vaccines that are capable of eliciting potent states of cross-protective immunity against a diversity of serovars of a given species. Immunization with modified live Salmonella enterica serovar Typhimurium vaccine strains, that lack the DNA adenine methylase (Dam), confers cross-protective immunity in murine and avian models of typhoid fever as well as in a bovine model of salmonellosis. Here we examined whether a dam mutant Typhimurium vaccine (serogroup B) has the capacity to elicit cross-protection against a virulent challenge with an emerging, clinically relevant, and multi-drug resistant strain of serovar Newport (serogroup C2-C3) that has been associated with clinical disease in recent salmonellosis outbreaks in calves. Vaccinated animals challenged with Newport exhibited a significant attenuation of clinical disease (improved attitude scores, increased daily weight gains and reduced fever and diarrhea) and a concomitant reduction in Newport fecal shedding and colonization of mesenteric lymph nodes and lungs compared to non-vaccinated control animals. The capacity to elicit cross-protective immunity in calves suggests that dam mutant vaccines have potential application toward the prevention and control of Salmonella infection in commercial livestock production systems wherein livestock are exposed to a diversity of Salmonella serovars.
机译:集约化畜牧生产和管理系统与粪便口病原体传播的增加以及许多大型奶牛场和饲养场中多种沙门氏菌血清的高流行有关。因此,必须开发能够引发针对给定物种的多种血清型的交叉保护性免疫的有效状态的家畜疫苗。缺少DNA腺嘌呤甲基化酶(Dam)的改良活沙门氏沙门氏菌鼠伤寒沙门氏菌疫苗株的免疫,可在鼠伤寒和禽类伤寒模型以及牛沙门氏菌病模型中提供交叉保护性免疫。在这里,我们检查了大坝突变体鼠伤寒疫苗(血清群B)是否具有针对新出现的,具有临床相关性和多药耐药性的纽波特血清群(血清群C2-C3)产生的交叉攻击,以对抗强毒攻击的交叉保护能力。最近在小牛的沙门氏菌病暴发中与临床疾病有关。与未接种疫苗的对照动物相比,接受Newport疫苗接种的动物表现出显着的临床疾病减轻(态度评分提高,每日体重增加增加以及发烧和腹泻减少),Newport粪便脱落以及肠系膜淋巴结和肺的定居同时减少。在犊牛中引发交叉保护性免疫的能力表明,大坝突变疫苗可潜在地应用于预防和控制商业性畜牧生产系统中的沙门氏菌感染,在该系统中,牲畜暴露于多种沙门氏菌血清型。

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