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首页> 外文期刊>Vaccine >Mycobacterium bovis DeltaleuD auxotroph-induced protective immunity against tissue colonization, burden and distribution in cattle intranasally challenged with Mycobacterium bovis Ravenel S
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Mycobacterium bovis DeltaleuD auxotroph-induced protective immunity against tissue colonization, burden and distribution in cattle intranasally challenged with Mycobacterium bovis Ravenel S

机译:牛分枝杆菌DeltaleuD营养缺陷型诱导的针对牛分枝杆菌Ravenel S鼻内攻击的牛的组织定植,负担和分布的保护性免疫

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摘要

Bovine tuberculosis is a chronic granulomatous disease caused by Mycobacterium bovis. Lack of definitive diagnostics and effective vaccines for domestic animals are major obstacles to the control and eradication of bovine tuberculosis. Auxotrophic mutants of Mycobacterium tuberculosis have shown promise as vaccine candidates for preventing human tuberculosis. Similarly, we constructed a leucine auxotroph of M. bovis, by using allelic exchange to delete leuD (encoding isopropyl malate isomerase), creating a strain requiring exogenous leucine for growth in vitro. We vaccinated 10 cattle subcutaneously with 10(9)CFU of M. bovis DeltaleuD and 10 age-matched, gender-matched controls were injected with phosphate-buffered saline. Vaccinated cattle had significantly increased in vitro antigen-specific T-cell-mediated responses. All cattle were challenged intranasally on day 160 post-immunization with 10(6)CFU of virulent M. bovis Ravenel S. On day 160 post-challenge vaccinated cattle had significantly reduced tissue mycobacterial burdens and 6 of 10 had complete clearance of the challenge strain and histopathological lesions were dramatically less severe in the vaccinated group. Thus, a single subcutaneous immunization of the M. bovis DeltaleuD mutant produced highly significantly protective immunity as measured by a reduction in tissue colonization, burden, bacilli dissemination, and histopathology caused by virulent M. bovis Ravenel S challenge.
机译:牛结核是由牛分枝杆菌引起的慢性肉芽肿病。缺乏针对家畜的明确诊断和有效疫苗是控制和根除牛结核病的主要障碍。结核分枝杆菌的营养缺陷型突变体已显示出有望作为预防人类结核病的候选疫苗。同样,我们通过使用等位基因交换删除leuD(编码苹果酸异丙酯苹果酸异构酶),构建了牛分枝杆菌的亮氨酸营养缺陷型,从而产生了需要外源亮氨酸在体外生长的菌株。我们用10(9)CFU的牛分枝杆菌DeltaleuD皮下接种了10头牛,并向10个年龄匹配,性别匹配的对照注射了磷酸盐缓冲液。接种牛的体外抗原特异性T细胞介导的反应明显增加。在免疫后第160天,用10(6)CFU毒性牛分枝杆菌Ravenel S对所有牛进行鼻内攻击。在攻击后160天,接种疫苗的牛的组织分枝杆菌负担显着降低,每10头中的6头已完全清除了挑战菌株接种组的组织病理学病变严重程度大大降低。因此,对牛分枝杆菌DeltaleuD突变体的单次皮下免疫产生了高度显着的保护性免疫,如通过由强力牛分枝杆菌Ravenel S攻击引起的组织定植,负担,杆菌分布和组织病理学的减少所测量的。

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