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Combination of nanoparticle-based therapeutic vaccination and transient ablation of regulatory T cells enhances anti-viral immunity during chronic retroviral infection

机译:基于纳米粒子的治疗疫苗接种和瞬时消融调节性T细胞的组合可增强慢性逆转录病毒感染期间的抗病毒免疫

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Regulatory T cells (Tregs) have been shown to limit anti-viral immunity during chronic retroviral infection and to restrict vaccine-induced T cell responses. The objective of the study was to assess whether a combinational therapy of nanoparticle-based therapeutic vaccination and concomitant transient ablation of Tregs augments anti-viral immunity and improves virus control in chronically retrovirus-infected mice. Therefore, chronically Friend retrovirus (FV)-infected mice were immunized with calcium phosphate (CaP) nanoparticles functionalized with TLR9 ligand CpG and CD8(+) or CD4(+) T cell epitope peptides (GagL85-93 or Env gp70123-141) of FV. In addition, Tregs were ablated during the immunization process. Reactivation of CD4(+) and CD8(+) effector T cells was analysed and the viral loads were determined. Therapeutic vaccination of chronically FV-infected mice with functionalized CaP nanoparticles transiently reactivated cytotoxic CD8(+) T cells and significantly reduced the viral loads. Transient ablation of Tregs during nanoparticle-based therapeutic vaccination strongly enhanced anti-viral immunity and further decreased viral burden. Our data illustrate a crucial role for CD4(+) Foxp3(+) Tregs in the suppression of anti-viral T cell responses during therapeutic vaccination against chronic retroviral infection. Thus, the combination of transient Treg ablation and therapeutic nanoparticle-based vaccination confers robust and sustained anti-viral immunity.
机译:已经显示调节性T细胞(Tregs)在慢性逆转录病毒感染期间限制抗病毒免疫,并限制疫苗诱导的T细胞反应。该研究的目的是评估基于纳米粒子的治疗性疫苗接种的组合治疗和伴随的Tregs的暂时烧蚀抑制抗病毒免疫力,并在慢性逆转录病毒感染的小鼠中改善病毒对照。因此,使用用TLR9配体CpG和CD8(+)或CD4(+)T细胞表位肽(GAGL85-93或ENV GP70123-141)用磷酸钙(帽)纳米颗粒免疫慢性逆转录病毒(FV) - 培养基小鼠Fv。此外,在免疫过程中消除Tregs。分析CD4(+)和CD8(+)效应T细胞的再活化并测定病毒载量。具有官能化帽纳米颗粒的慢性Fv感染小鼠的治疗性接种瞬时重新激活细胞毒性CD8(+)T细胞并显着降低了病毒载荷。基于纳米粒子的治疗疫苗接种期间Tregs的瞬态消融强烈增强了抗病毒免疫,进一步降低了病毒负担。我们的数据说明了CD4(+)Foxp3(+)Tregs在抑制治疗慢性逆转录病毒感染期间抑制抗病毒T细胞应答的CD4(+)Foxp3(+)Treg的关键作用。因此,瞬时Treg消融和治疗性纳米粒子的疫苗接种的组合赋予稳健和持续的抗病毒免疫。

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