Abstract
AbstractAdjuvants play a determinant role in cancer vaccination by optimally activating APCs and shaping the T cell response. Bacterial-derived lipid A is one of the most potent immune-stimulators known, and is recognized via Toll-like receptor 4 (TLR4). In this study, we explore the use of the synthetic, non-toxic, lipid A analog CRX-527 as an adjuvant for peptide cancer vaccines. This well-defined adjuvant was covalently conjugated to antigenic peptides as a strategy to improve vaccine efficacy. We show that coupling of this TLR4 agonist to peptide antigens improves vaccine uptake by dendritic cells (DCs), maturation of DCs and T cell activation in vitro, and stimulates DC migration and functional T cell priming in vivo. This translates into enhanced tumor protection upon prophylactic and therapeutic vaccination via intradermal injection against B16-OVA melanoma and HPV-related TC1 tumors. These results highlight the potential of CRX-527 as an adjuvant for molecularly defined cancer vaccines, and support the design of adjuvant-peptide conjugates as a strategy to optimize vaccine formulation.
Publisher
Springer Science and Business Media LLC
Subject
Pharmacology (medical),Infectious Diseases,Pharmacology,Immunology
Reference50 articles.
1. Morse, M. A., Gwin, W. R. 3rd & Mitchell, D. A. Vaccine therapies for cancer: then and now. Target Oncol. 16, 121–152 (2021).
2. Bodey, B., Bodey, B. Jr., Siegel, S. E. & Kaiser, H. E. Failure of cancer vaccines: the significant limitations of this approach to immunotherapy. Anticancer Res. 20, 2665–2676 (2000).
3. Spranger, S. Mechanisms of tumor escape in the context of the T-cell-inflamed and the non-T-cell-inflamed tumor microenvironment. Int. Immunol. 28, 383–391 (2016).
4. Heuts, J., Jiskoot, W., Ossendorp, F. & van der Maaden, K. Cationic nanoparticle-based cancer vaccines. Pharmaceutics 13, https://doi.org/10.3390/pharmaceutics13050596 (2021).
5. Wen, R., Umeano, A. C., Kou, Y., Xu, J. & Farooqi, A. A. Nanoparticle systems for cancer vaccine. Nanomedicine 14, 627–648 (2019).
Cited by
6 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献