Aldon Yoann, McKay Paul F, Moreno Herrero Jorge, Vogel Annette B, Lévai Réka, Maisonnasse Pauline, Dereuddre-Bosquet Nathalie, Haas Heinrich, Fábián Katalin, Le Grand Roger, Sahin Ugur, Shattock Robin J
Imperial College London, Department of Medicine, London W2 1PG, UK.
Biopharmaceutical New Technologies (BioNTech) Corporation, Mainz 55131, Germany.
Mol Ther Nucleic Acids. 2021 Jun 24;25:483-493. doi: 10.1016/j.omtn.2021.06.008. eCollection 2021 Sep 3.
Self-amplifying mRNA (saRNA) represents a promising platform for nucleic acid delivery of vaccine immunogens. Unlike plasmid DNA, saRNA does not require entry into the nucleus of target cells for expression, having the capacity to drive higher protein expression compared to mRNA as it replicates within the cytoplasm. In this study, we examined the potential of stabilized native-like HIV-1 Envelope glycoprotein (Env) trimers to elicit immune responses when delivered by saRNA polyplexes (PLXs), assembled with linear polyethylenimine. We showed that Venezuelan equine encephalitis virus (VEEV) saRNA induces a stronger humoral immune response to the encoded transgene compared to Semliki Forest virus saRNA. Moreover, we characterized the immunogenicity of the soluble and membrane-bound ConSOSL.UFO Env design in mice and showed a faster humoral kinetic and an immunoglobulin G (IgG)2a skew using a membrane-bound design. The immune response generated by PLX VEEV saRNA encoding the membrane-bound Env was then evaluated in larger animal models including macaques, in which low doses induced high IgG responses. Our data demonstrated that the VEEV saRNA PLX nanoparticle formulation represents a suitable platform for the delivery of stabilized HIV-1 Env and has the potential to be used in a variety of vaccine regimens.
自我扩增mRNA(saRNA)是一种很有前景的疫苗免疫原核酸递送平台。与质粒DNA不同,saRNA在靶细胞中表达不需要进入细胞核,因为它在细胞质中复制,所以与mRNA相比,它有能力驱动更高水平的蛋白质表达。在本研究中,我们检测了与线性聚乙烯亚胺组装形成的saRNA多聚体(PLX)递送时,稳定的天然样HIV-1包膜糖蛋白(Env)三聚体引发免疫反应的潜力。我们发现,与辛德毕斯病毒saRNA相比,委内瑞拉马脑炎病毒(VEEV)saRNA对编码转基因诱导的体液免疫反应更强。此外,我们在小鼠中对可溶性和膜结合型ConSOSL.UFO Env设计的免疫原性进行了表征,结果显示使用膜结合型设计时体液动力学更快,且免疫球蛋白G(IgG)2a偏向性更高。然后在包括猕猴在内的大型动物模型中评估了编码膜结合型Env的PLX VEEV saRNA产生的免疫反应,结果显示低剂量即可诱导高IgG反应。我们的数据表明,VEEV saRNA PLX纳米颗粒制剂是递送稳定化HIV-1 Env的合适平台,有潜力用于多种疫苗方案。