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Use of a Genetically Defined Double Mutant Strain of Bordetella bronchiseptica Lacking Adenylate Cyclase and Type III Secretion as a Live Vaccine▿

机译:利用遗传学确定的缺乏腺苷酸环化酶和III型分泌物的支气管败血波氏杆菌双突变株作为活疫苗

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摘要

While most vaccines consisting of killed bacteria induce high serum antibody titers, they do not always confer protection as effective as that induced by infection, particularly against mucosal pathogens. Bordetella bronchiseptica is a gram-negative respiratory pathogen that is endemic in many nonhuman mammalian populations and causes substantial disease in a variety of animals. At least 14 different live attenuated vaccines against this pathogen are available for use in a variety of livestock and companion animals. However, there are few published data on the makeup or efficacy of these vaccines. Here we report the use of a genetically engineered double mutant of B. bronchiseptica, which lacks adenylate cyclase and type III secretion, as a vaccine candidate. This strain is safe at high doses, even for highly immunocompromised animals, and induces immune responses that are protective against highly divergent B. bronchiseptica strains, preventing colonization in the lower respiratory tract and decreasing the bacterial burden in the upper respiratory tract. This novel B. bronchiseptica vaccine candidate induces strong local immunity while eliminating damage caused by the two predominant cytotoxic mechanisms.
机译:尽管大多数由被杀死细菌组成的疫苗可诱导较高的血清抗体滴度,但它们并不总是能提供与感染(尤其是针对粘膜病原体)一样有效的保护作用。支气管败血博德特氏菌是革兰氏阴性呼吸道病原体,在许多非人类哺乳动物种群中都流行,并在多种动物中引起重大疾病。针对该病原体的至少14种不同的减毒活疫苗可用于各种牲畜和伴侣动物。但是,关于这些疫苗的组成或功效的公开数据很少。在这里,我们报告了一种基因工程的支气管败血双歧杆菌双突变体的使用,该突变体缺少腺苷酸环化酶和III型分泌物,可以用作疫苗候选物。即使对于高度免疫力低下的动物,该菌株在高剂量下也是安全的,并诱导免疫反应,以抵抗高度分歧的支气管败血性博德特氏菌菌株,防止在下呼吸道中定植并减轻上呼吸道中的细菌负担。这种新型的支气管炎双歧杆菌疫苗候选物诱导了强大的局部免疫力,同时消除了由两种主要的细胞毒性机制引起的损害。

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