Lassaunière Ria, Polacek Charlotta, Gram Gregers J, Frische Anders, Tingstedt Jeanette Linnea, Krüger Maren, Dorner Brigitte G, Cook Anthony, Brown Renita, Orekov Tatyana, Putmon-Taylor Tammy, Campbell Tracey-Ann, Greenhouse Jack, Pessaint Laurent, Andersen Hanne, Lewis Mark G, Fomsgaard Anders
Department of Virus and Microbiological Special Diagnostic, Statens Serum Institut, Copenhagen, Denmark.
Department of Business Support and Campus, Statens Serum Institut, Copenhagen, Denmark.
NPJ Vaccines. 2021 Dec 20;6(1):156. doi: 10.1038/s41541-021-00419-z.
New generation plasmid DNA vaccines may be a safe, fast and simple emergency vaccine platform for preparedness against emerging viral pathogens. Applying platform optimization strategies, we tested the pre-clinical immunogenicity and protective effect of a candidate DNA plasmid vaccine specific for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). The DNA vaccine induced spike-specific binding IgG and neutralizing antibodies in mice, rabbits, and rhesus macaques together with robust Th1 dominant cellular responses in small animals. Intradermal and intramuscular needle-free administration of the DNA vaccine yielded comparable immune responses. In a vaccination-challenge study of rhesus macaques, the vaccine demonstrated protection from viral replication in the lungs following intranasal and intratracheal inoculation with SARS-CoV-2. In conclusion, the candidate plasmid DNA vaccine encoding the SARS-CoV-2 spike protein is immunogenic in different models and confers protection against lung infection in nonhuman primates. Further evaluation of this DNA vaccine candidate in clinical trials is warranted.
新一代质粒DNA疫苗可能是一种安全、快速且简便的应急疫苗平台,用于防范新出现的病毒病原体。应用平台优化策略,我们测试了一种针对严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的候选DNA质粒疫苗的临床前免疫原性和保护效果。该DNA疫苗在小鼠、兔子和恒河猴中诱导出刺突特异性结合IgG和中和抗体,同时在小动物中引发了强烈的以Th1为主导的细胞反应。DNA疫苗经皮内和肌肉内无针给药产生了相当的免疫反应。在恒河猴的疫苗接种-攻毒研究中,该疫苗在经鼻和气管内接种SARS-CoV-2后,显示出对肺部病毒复制的保护作用。总之,编码SARS-CoV-2刺突蛋白 的候选质粒DNA疫苗在不同模型中具有免疫原性,并能保护非人类灵长类动物免受肺部感染。有必要在临床试验中对这种候选DNA疫苗进行进一步评估。