Nanobody-liposomes as novel cancer vaccine platform to efficiently stimulate T cell immunity

Publication date

2024-07-20

Authors

Bouma, R. G.
Twilhaar, M. K. Nijen
Brink, H. J.
Affandi, A. J.ISNI 0000000390249258
Mesquita, B. S.
Olesek, K.
van Dommelen, J. M. A.
Heukers, RaimondISNI 0000000393983618
de Haas, A. M.ISNI 0000000518041617
Kalay, H.

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Cancer vaccines can be utilized in combination with checkpoint inhibitors to optimally stimulate the anti -tumor immune response. Uptake of vaccine antigen by antigen presenting cells (APCs) is a prerequisite for T cell priming, but often relies on non-specific mechanisms. Here, we have developed a novel vaccination strategy consisting of cancer antigen -containing liposomes conjugated with CD169- or DC -SIGN -specific nanobodies (single domain antibodies) to achieve specific uptake by APCs. Our studies demonstrate efficient nanobody liposome uptake by human and murine CD169 + and DC -SIGN + APCs in vitro and in vivo when compared to control liposomes or liposomes with natural ligands for CD169 and DC -SIGN. Uptake of CD169 nanobody liposomes resulted in increased T cell activation by human APCs and stimulated naive T cell priming in mouse models. In conclusion, while nanobody liposomes have previously been utilized to direct drugs to tumors, here we show that nanobody liposomes can be applied as vaccination strategy that can be extended to other receptors on APCs in order to elicit a potent immune response against tumor antigens.

Keywords

Antigen, Cd169(+) macrophages, Delivery, Dendritic cells, Generation, Inhibition, Marginal zone, Nanoparticles, Responses, Targeting dc-sign, SDG 3 - Good Health and Well-being

Citation

Bouma, R G, Twilhaar, M K N, Brink, H J, Affandi, A J, Mesquita, B S, Olesek, K, van Dommelen, J M A, Heukers, R, de Haas, A M, Kalay, H, Ambrosini, M, Metselaar, J M, van Rooijen, A, Storm, G, Oliveira, S, van Kooyk, Y & den Haan, J M M 2024, 'Nanobody-liposomes as novel cancer vaccine platform to efficiently stimulate T cell immunity', International Journal of Pharmaceutics, vol. 660, 124254, pp. 1-13. https://doi.org/10.1016/j.ijpharm.2024.124254