Zinc Carnosine Metal–Organic Coordination Polymer as a Potent Broadly Active Influenza Vaccine Platform with In Vitro Shelf-Stability

免疫原性 佐剂 免疫原 抗原 免疫系统 体外 TLR9型 病毒学 化学 接种疫苗 血凝素(流感) CpG寡核苷酸 CpG站点 生物 抗体 免疫学 生物化学 单克隆抗体 基因表达 DNA甲基化 基因
作者
Dylan A. Hendy,Liubov M. Lifshits,Cole J. Batty,Michael A. Carlock,Ted M. Ross,Jarrod J. Mousa,Eric M. Bachelder,Kristy M. Ainslie
出处
期刊:Molecular Pharmaceutics [American Chemical Society]
卷期号:20 (9): 4687-4697 被引量:1
标识
DOI:10.1021/acs.molpharmaceut.3c00424
摘要

Current seasonal influenza vaccines are limited in that they need to be reformulated every year in order to account for the constant mutation of the virus. Hemagglutinin (HA) immunogens have been developed using a computationally optimized broadly reactive antigen (COBRA) methodology, which are able to elicit an antibody response that neutralizes antigenically distinct influenza strains; however, subunit proteins are not immunogenic enough on their own to generate a substantial immune response. Due to this, different delivery strategies and adjuvants can be used to improve immunogenicity. Recently, we reported a new coordination polymer composed of the dipeptide carnosine and zinc (ZnCar) that is able to deliver protein antigens along with CpG to generate a potent immune response. In the present work, ZnCar was used to deliver the COBRA HA immunogen Y2 and the adjuvant CpG. We incorporated Y2 into ZnCar using two different methods to assess which would be the most immunogenic. Mice vaccinated with Y2 and CpG complexed with ZnCar showed an improved humoral and cellular response when compared to mice vaccinated with soluble Y2 and CpG. Further, we demonstrate in vitro that when Y2 and CpG are coordinated with ZnCar, they are protected from degradation at 40 °C for 3 months or 24 °C for 6 months. Overall, ZnCar shows promise as a delivery vehicle for subunit vaccines, given its superior immunogenicity and in vitro storage stability.
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