Villarreal Daniel O, Walters Jewell, Laddy Dominick J, Yan Jian, Weiner David B
a Department of Pathology and Laboratory Medicine; University of Pennsylvania School of Medicine; Philadelphia, PA USA.
Hum Vaccin Immunother. 2014;10(8):2188-98. doi: 10.4161/hv.29574.
Development of a broad-spectrum synthetic vaccine against TB would represent an important advance to the limited vaccine armamentarium against TB. It is believed that the esx family of TB antigens may represent important vaccine candidates. However, only 4 esx antigens have been studied as potential vaccine antigens. The challenge remains to develop a vaccine that simultaneously targets all 23 members of the esx family to induce enhanced broad-spectrum cell-mediated immunity. We sought to investigate if broader cellular immune responses could be induced using a multivalent DNA vaccine representing the esx family protein members delivered via electroporation. In this study, 15 designed esx antigens were created to cross target all members of the esx family. They were distributed into groups of 3 self-processing antigens each, resulting in 5 trivalent highly optimized DNA plasmids. Vaccination with all 5 constructs elicited robust antigen-specific IFN-γ responses to all encoded esx antigens and induced multifunctional CD4 Th1 and CD8 T cell responses. Importantly, we show that when all constructs are combined into a cocktail, the RSQ-15 vaccine, elicited substantial broad Ag-specific T cell responses to all esx antigens as compared with vaccination with BCG. Moreover, these vaccine-induced responses were highly cross-reactive with BCG encoded esx family members and were highly immune effective in a BCG DNA prime-boost format. Furthermore, we demonstrate the vaccine potential and immunopotent profile of several novel esx antigens never previously studied. These data highlight the likely importance of these novel immunogens for study as preventative or therapeutic synthetic TB vaccines in combination or as stand alone antigens.
开发一种针对结核病的广谱合成疫苗将是对抗结核病有限疫苗库的一项重要进展。据信,结核杆菌抗原的esx家族可能是重要的疫苗候选物。然而,只有4种esx抗原作为潜在疫苗抗原进行了研究。挑战仍然是开发一种能同时针对esx家族所有23个成员以诱导增强的广谱细胞介导免疫的疫苗。我们试图研究使用通过电穿孔递送的代表esx家族蛋白成员的多价DNA疫苗是否能诱导更广泛的细胞免疫反应。在本研究中,设计了15种esx抗原以交叉靶向esx家族的所有成员。它们被分成每组3种自加工抗原的组,产生5种三价高度优化的DNA质粒。用所有5种构建体进行疫苗接种引发了对所有编码的esx抗原的强烈抗原特异性IFN-γ反应,并诱导了多功能CD4 Th1和CD8 T细胞反应。重要的是,我们表明,当将所有构建体组合成一种混合物,即RSQ-15疫苗时,与用卡介苗接种相比,它引发了对所有esx抗原的大量广泛的抗原特异性T细胞反应。此外,这些疫苗诱导的反应与卡介苗编码的esx家族成员具有高度交叉反应性,并且在卡介苗DNA初免-加强免疫模式下具有高度免疫效力。此外,我们证明了几种以前从未研究过的新型esx抗原的疫苗潜力和免疫效力特征。这些数据突出了这些新型免疫原作为预防性或治疗性合成结核病疫苗联合使用或作为单独抗原进行研究的可能重要性。