The Impact of Nanobody Density on the Targeting Efficiency of PEGylated Liposomes

Publication date

2022-11-29

Authors

Mesquita, BárbaraISNI 0000000512552483
Fens, M.H.A.M.ISNI 0000000387629137
Di Maggio, AlessiaISNI 0000000506363491
Bosman, EsmeraldaISNI 0000000512509629
Hennink, Wim EISNI 0000000390382745
Heger, MichalISNI 0000000390982433
Oliveira, SabrinaORCID 0000-0002-6011-2122ISNI 0000000392912295

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Nanoparticles (NPs) are commonly modified with tumor-targeting moieties that recognize proteins overexpressed on the extracellular membrane to increase their specific interaction with target cells. Nanobodies (Nbs), the variable domain of heavy chain-only antibodies, are a robust targeting ligand due to their small size, superior stability, and strong binding affinity. For the clinical translation of targeted Nb-NPs, it is essential to understand how the number of Nbs per NP impacts the receptor recognition on cells. To study this, Nbs targeting the hepatocyte growth factor receptor (MET-Nbs) were conjugated to PEGylated liposomes at a density from 20 to 800 per liposome and their targeting efficiency was evaluated in vitro. MET-targeted liposomes (MET-TLs) associated more profoundly with MET-expressing cells than non-targeted liposomes (NTLs). MET-TLs with approximately 150-300 Nbs per liposome exhibited the highest association and specificity towards MET-expressing cells and retained their targeting capacity when pre-incubated with proteins from different sources. Furthermore, a MET-Nb density above 300 Nbs per liposome increased the interaction of MET-TLs with phagocytic cells by 2-fold in ex vivo human blood compared to NTLs. Overall, this study demonstrates that adjusting the MET-Nb density can increase the specificity of NPs towards their intended cellular target and reduce NP interaction with phagocytic cells.

Keywords

biologicals, nanobodies, nanoparticulate drug delivery systems, cancer treatment, protein corona, Neoplasms, immune cell interactions, SDG 3 - Good Health and Well-being

Citation

Mesquita, B S, Fens, M H A M, Di Maggio, A, Bosman, E D C, Hennink, W E, Heger, M & Oliveira, S 2022, 'The Impact of Nanobody Density on the Targeting Efficiency of PEGylated Liposomes', International Journal of Molecular Sciences, vol. 23, no. 23, pp. 1-19. https://doi.org/10.3390/ijms232314974