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首页> 外文期刊>PLoS Pathogens >Concurrent infection with Mycobacterium tuberculosis confers robust protection against secondary infection in macaques
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Concurrent infection with Mycobacterium tuberculosis confers robust protection against secondary infection in macaques

机译:结核分枝杆菌同时感染可为猕猴的继发感染提供强有力的保护

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For many pathogens, including most targets of effective vaccines, infection elicits an immune response that confers significant protection against reinfection. There has been significant debate as to whether natural Mycobacterium tuberculosis (Mtb) infection confers protection against reinfection. Here we experimentally assessed the protection conferred by concurrent Mtb infection in macaques, a robust experimental model of human tuberculosis (TB), using a combination of serial imaging and Mtb challenge strains differentiated by DNA identifiers. Strikingly, ongoing Mtb infection provided complete protection against establishment of secondary infection in over half of the macaques and allowed near sterilizing bacterial control for those in which a secondary infection was established. By contrast, boosted BCG vaccination reduced granuloma inflammation but had no impact on early granuloma bacterial burden. These findings are evidence of highly effective concomitant mycobacterial immunity in the lung, which may inform TB vaccine design and development.
机译:对于包括许多有效疫苗靶标在内的许多病原体,感染会引起免疫反应,从而赋予针对再感染的显着保护作用。关于天然结核分枝杆菌(Mtb)感染是否赋予防止再感染的保护作用,已经引起了广泛的争论。在这里,我们结合序列成像和通过DNA标识符区分的Mtb攻击菌株,通过实验评估了猕猴同时感染Mtb所赋予的保护作用,猕猴是人结核病(TB)的强大实验模型。令人惊讶的是,正在进行的Mtb感染为半数以上的猕猴提供了完全的保护,以防止继发感染,并为那些继发感染的细菌提供了接近无菌的细菌控制。相比之下,加强卡介苗接种可减少肉芽肿发炎,但对早期肉芽肿细菌负担没有影响。这些发现证明了肺部高效的分枝杆菌同时免疫,可为结核病疫苗的设计和开发提供依据。

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