College of Animal Science and Technology, Northwest A&F University, Yangling, 712100, China.
College of Animal Science and Technology, Northwest A&F University, Yangling, 712100, China.
Biomed Pharmacother. 2019 Oct;118:109147. doi: 10.1016/j.biopha.2019.109147. Epub 2019 Jul 11.
Base on the practical of MSTN-specific yeast-based protein vaccine in mice as described previously, this research was designed for developing a better DNA vaccine (a cascade of shIL21-MSTN yeast-based DNA vaccine) than solely MSTN yeast-based DNA vaccine to block the endogenous MSTN in the murine model. We first constructed the target vectors, including CMV-driven MSTN expression vector and a combined shIL21-MSTN vector which containing MSTN expression cassette and shIL21 (short hairpin RNA-IL21) expression cassette. After necessary validation, recombinant yeast vaccines harboring different vectors were well prepared. Subsequently, after 2-month administration, the MSTN-specific immune response was detected with western blots. The commercial ELISA assays indicated that the production of IL21 and IL6 were decreased compared with control groups. More importantly, the MSTN-specific antibody titer was much higher in the shIL21-MSTN group than MSTN group, which was consistent with the western blots result. The most important finding was significant body mass increased after oral administration of these yeast-based DNA vaccines, in which the shIL21-MSTN vaccine is slightly higher than the sole MSTN vaccine in mice. In this study, we confirmed the role of different MSTN-specific yeast-based DNA vaccines on increasing body mass in mice, to provide a good inspiration for livestock breeding through the new type of immunoregulatory method. On the other hand, we also detected the possible modulating role of shIL21 on the dendritic cell-mediated immune function which needs more practical application and deeper exploration.
基于之前报道的 MSTN 特异性酵母蛋白疫苗在小鼠中的实际应用,本研究旨在开发一种比单纯 MSTN 酵母 DNA 疫苗更好的 DNA 疫苗(一个串联的 shIL21-MSTN 酵母 DNA 疫苗),以阻断小鼠模型中的内源性 MSTN。我们首先构建了靶载体,包括 CMV 驱动的 MSTN 表达载体和包含 MSTN 表达盒和 shIL21(短发夹 RNA-IL21)表达盒的串联 shIL21-MSTN 载体。在进行了必要的验证后,成功制备了携带不同载体的重组酵母疫苗。随后,经过 2 个月的给药后,通过 Western blot 检测 MSTN 特异性免疫反应。商业 ELISA 检测表明,与对照组相比,IL21 和 IL6 的产生减少。更重要的是,shIL21-MSTN 组的 MSTN 特异性抗体滴度明显高于 MSTN 组,这与 Western blot 结果一致。最重要的发现是,口服这些酵母 DNA 疫苗后,体重显著增加,其中 shIL21-MSTN 疫苗在小鼠中的效果略高于单纯 MSTN 疫苗。在这项研究中,我们证实了不同 MSTN 特异性酵母 DNA 疫苗在增加小鼠体重方面的作用,为通过新型免疫调节方法进行家畜养殖提供了良好的启示。另一方面,我们还检测到 shIL21 对树突状细胞介导的免疫功能的可能调节作用,这需要更多的实际应用和深入探索。