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GM-CSF 表达 RNA 的联合给药是增强基于 SAM 的疫苗效力的有力工具。

Co-administration of GM-CSF expressing RNA is a powerful tool to enhance potency of SAM-based vaccines.

机构信息

GSK Vaccines S.r.l., Via Fiorentina 1, 53100 Siena, Italy.

GSK Vaccines S.r.l., Via Fiorentina 1, 53100 Siena, Italy.

出版信息

Vaccine. 2019 Jul 9;37(30):4204-4213. doi: 10.1016/j.vaccine.2019.04.028. Epub 2019 Jun 18.

Abstract

Self-amplifying mRNAs (SAM)-based vaccines have been shown to induce a robust immune response in various animal species against both viral and bacterial pathogens. Due to their synthetic nature and to the versatility of the manufacturing process, SAM technology may represent an attractive solution for rapidly producing novel vaccines, which is particularly critical in case of pandemic infections or diseases mediated by newly emerging pathogens. Recent published data support the hypothesis that Antigen Presenting Cells (APCs) are responsible for CD8+ T-cell priming after SAM vaccination, suggesting cross-priming as the key mechanism for antigen presentation by SAM vaccines. In our study we investigated the possibility to enhance the immune response induced in mice by a single immunization with SAM by increasing the recruitment of APCs at the site of injection. To enhance SAM immunogenicity, we selected murine granulocyte-macrophage colony-stimulating factor (GM-CSF) as a model chemoattractant for APCs, and developed a SAM-GM-CSF vector. We evaluated whether the use of SAM-GM-CSF in combination with a SAM construct encoding the Influenza A virus nucleoprotein (NP) would lead to an increase of APC recruitment and NP-specific immune response. We indeed observed that the administration of SAM-GM-CSF enhances the recruitment of APCs at the injection site. Consistently with our hypothesis, co-administration of SAM-GM-CSF with SAM-NP significantly improved the magnitude of NP-specific CD8+ T-cell response both in terms of frequency of cytotoxic antigen-specific CD8+ T-cells and their functional activity in vivo. Furthermore, co-immunization with SAM-GM-CSF and SAM-NP provided an increase in protection against a lethal challenge with influenza virus. In conclusion, we demonstrated that increased recruitment of APCs at the site of injection is associated with an enhanced effectiveness of SAM vaccination and might be a powerful tool to potentiate the efficacy of RNA vaccination.

摘要

自扩增信使 RNA(SAM)疫苗已被证明可在各种动物物种中诱导针对病毒和细菌病原体的强大免疫反应。由于其合成性质和制造工艺的多功能性,SAM 技术可能代表着快速生产新型疫苗的有吸引力的解决方案,特别是在大流行感染或由新出现的病原体介导的疾病的情况下。最近发表的数据支持这样一种假设,即抗原呈递细胞(APC)负责 SAM 疫苗接种后的 CD8+T 细胞的初始激活,这表明交叉呈递是 SAM 疫苗进行抗原呈递的关键机制。在我们的研究中,我们通过增加 APC 在注射部位的募集来研究增强单次 SAM 免疫在小鼠中诱导的免疫反应的可能性。为了增强 SAM 的免疫原性,我们选择了鼠粒细胞-巨噬细胞集落刺激因子(GM-CSF)作为 APC 的模型趋化因子,并开发了 SAM-GM-CSF 载体。我们评估了使用 SAM-GM-CSF 与编码甲型流感病毒核蛋白(NP)的 SAM 构建体联合使用是否会导致 APC 募集和 NP 特异性免疫反应的增加。我们确实观察到 SAM-GM-CSF 的给药增强了 APC 在注射部位的募集。与我们的假设一致,SAM-GM-CSF 与 SAM-NP 的共同给药显著提高了 NP 特异性 CD8+T 细胞反应的幅度,无论是在细胞毒性抗原特异性 CD8+T 细胞的频率方面,还是在体内其功能活性方面。此外,SAM-GM-CSF 和 SAM-NP 的共同免疫接种提供了对流感病毒致死性挑战的保护增加。总之,我们证明了 APC 在注射部位的募集增加与 SAM 疫苗接种的有效性提高相关,并且可能是增强 RNA 疫苗效力的有力工具。

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