Internalization and transport of PEGylated lipid-based mixed micelles across Caco-2 cells mediated by scavenger receptor B1

Publication date

2021-11-26

Authors

Su, XiangjieISNI 0000000507443549
Ramírez-Escudero, MercedesISNI 0000000507301241
Sun, F.ISNI 0000000527707089
van den Dikkenberg, JoepISNI 0000000391318542
van Steenbergen, MiesISNI 0000000394872442
Pieters, Roland JORCID 0000-0003-4723-3584ISNI 0000000391858821
Janssen, Bert J CISNI 0000000419421614
van Hasselt, Peter M.
Hennink, Wim E.ISNI 0000000390382745
van Nostrum, Cornelus FISNI 0000000396379707

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

The aim of this study was to get insight into the internalization and transport of PEGylat-ed mixed micelles loaded by vitamin K, as mediated by Scavenger Receptor B1 (SR-B1) that is abun-dantly expressed by intestinal epithelium cells as well as by differentiated Caco-2 cells. Inhibition of SR-B1 reduced endocytosis and transport of vitamin-K-loaded 0%, 30% and 50% PEGylated mixed micelles and decreased colocalization of the micelles with SR-B1. Confocal fluorescence mi-croscopy, fluorescence-activated cell sorting (FACS) analysis, and surface plasmon resonance (SPR) were used to study the interaction between the mixed micelles of different compositions (varying vitamin K loading and PEG content) and SR-B1. Interaction of PEGylated micelles was independent of the vitamin K content, indicating that the PEG shell prevented vitamin K exposure at the surface of the micelles and binding with the receptor and that the PEG took over the micelles’ ability to bind to the receptor. Molecular docking calculations corroborated the dual binding of both vita-min K and PEG with the binding domain of SR-B1. In conclusion, the improved colloidal stability of PEGylated mixed micelles did not compromise their cellular uptake and transport due to the affin-ity of PEG for SR-B1. SR-B1 is able to interact with PEGylated nanoparticles and mediates their subsequent internalization and transport.

Keywords

Epithelial transport, Mixed micelles, PEGylation, Scavenger receptor B1, Vitamin K, Pharmaceutical Science

Citation

Su, X, Ramírez-Escudero, M, Sun, F, van den Dikkenberg, J B, van Steenbergen, M J, Pieters, R J, Janssen, B J C, van Hasselt, P M, Hennink, W E & van Nostrum, C F 2021, 'Internalization and transport of PEGylated lipid-based mixed micelles across Caco-2 cells mediated by scavenger receptor B1', Molecular Pharmaceutics, vol. 13, no. 12, 2022, pp. 1-22. https://doi.org/10.3390/pharmaceutics13122022