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Nanoscale Peptide Self-assemblies Boost BCG-primed Cellular Immunity Against Mycobacterium tuberculosis

机译:纳米级肽自组装增强了抗结核分枝杆菌的BCG引发的细胞免疫。

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摘要

Bacillus Calmette-Guerin (BCG) is the only vaccine against TB and has limited protection efficacy, which wanes past adolescence. Multifunctional CD8+ T cells (IFN-γ+/TNF-α+/IL-2+) are associated with lower reactivation risk and enhanced control of active Mtb infection. Since boosting with BCG is contraindicated, booster vaccines that augment T cell immunity in the lungs of BCG-vaccinated individuals are urgently needed. We developed a vaccination strategy based on self-assembling peptide nanofibers presenting Mtb-specific CD8+ or CD4+ T cell epitopes that induce high frequency and antigen-specific effector memory T cells producing IFN-γ and IL-2. Intranasal immunization with peptide nanofibers was well tolerated in mice leading to increased antigen-specific CD8+ T cell population in the lungs. Co-assembled nanofibers of CD8+ T cell epitopes and toll-like receptor 2 (TLR2) agonists induced a 8-fold expansion in multifunctional CD8+ T cell populations in the lungs of vaccinated mice. Aerosol challenge with Mtb in BCG-primed and nanofiber-boosted mice provided an additional 0.5-log CFU reduction in lung bacterial load and indicating enhanced protection compared to BCG alone. Together, these data suggest that heterologous prime-boost with BCG and peptide nanofiber vaccines induces cell mediated immunity in the lung, reduces bacterial burden, and is a potentially safer alternative for boosting BCG-primed immunity.
机译:卡介苗芽孢杆菌(BCG)是唯一针对结核病的疫苗,其保护作用有限,这种作用在青春期后就消失了。多功能CD8 + T细胞(IFN-γ+ /TNF-α+ / IL-2 +)与降低再激活风险和增强对主动Mtb感染的控制有关。由于禁忌使用BCG加强免疫,因此迫切需要能够增强BCG疫苗接种者肺部T细胞免疫力的加强疫苗。我们开发了基于自组装肽纳米纤维的疫苗接种策略,该纳米纤维呈现Mtb特异性CD8 +或CD4 + T细胞表位,可诱导产生IFN-γ和IL-2的高频和抗原特异性效应记忆T细胞。肽纳米纤维的鼻内免疫在小鼠中具有良好的耐受性,导致肺中抗原特异性CD8 + T细胞数量增加。 CD8 + T细胞抗原决定簇和toll样受体2(TLR2)激动剂的共同组装的纳米纤维在接种的小鼠肺部的多功能CD8 + T细胞群体中诱导了8倍的扩增。在BCG引发的小鼠和纳米纤维增强的小鼠中,用Mtb进行气雾剂攻击可以使肺部细菌载量进一步降低0.5 log CFU,并且与单独的BCG相比,其保护作用增强。总之,这些数据表明,具有BCG和肽纳米纤维疫苗的异源初免-加强可诱导肺中细胞介导的免疫,减少细菌负担,并且是增强BCG初免的潜在安全替代方法。

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