Nanobody-mediated targeting of zinc phthalocyanine with polymer micelles as nanocarriers

Publication date

2024-04-25

Authors

Mesquita, BárbaraISNI 0000000512552483
Singh, Arunika
Masdeu, Cèlia Prats
Lokhorst, Nienke
Hebels, ErikISNI 000000050659699X
van Steenbergen, Mies JISNI 0000000394872442
Mastrobattista, EnricoORCID 0000-0002-6745-2015ISNI 000000035187179X
Heger, MichalISNI 0000000390982433
van Nostrum, ReneISNI 0000000396379707
Oliveira, SabrinaORCID 0000-0002-6011-2122ISNI 0000000392912295

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Photodynamic therapy (PDT) is a suitable alternative to currently employed cancer treatments. However, the hydrophobicity of most photosensitizers (e.g., zinc phthalocyanine (ZnPC)) leads to their aggregation in blood. Moreover, non-specific accumulation in skin and low clearance rate of ZnPC leads to long-lasting skin photosensitization, forcing patients with a short life expectancy to remain indoors. Consequently, the clinical implementation of these photosensitizers is limited. Here, benzyl-poly(ε-caprolactone)-b-poly(ethylene glycol) micelles encapsulating ZnPC (ZnPC-M) were investigated to increase the solubility of ZnPC and its specificity towards cancers cells. Asymmetric flow field-flow fractionation was used to characterize micelles with different ZnPC-to-polymer ratios and their stability in human plasma. The ZnPC-M with the lowest payload (0.2 and 0.4% ZnPC w/w) were the most stable in plasma, exhibiting minimal ZnPC transfer to lipoproteins, and induced the highest phototoxicity in three cancer cell lines. Nanobodies (Nbs) with binding specificity towards hepatocyte growth factor receptor (MET) or epidermal growth factor receptor (EGFR) were conjugated to ZnPC-M to facilitate cell targeting and internalization. MET- and EGFR-targeting micelles enhanced the association and the phototoxicity in cells expressing the target receptor. Altogether, these results indicate that ZnPC-M decorated with Nbs targeting overexpressed proteins on cancer cells may provide a better alternative to currently approved formulations.

Keywords

Active targeting, Biologicals, Cancer treatment, Nanobody, Stability, Targeted nanomedicine, Pharmaceutical Science, SDG 3 - Good Health and Well-being

Citation

Mesquita, B, Singh, A, Masdeu, C P, Lokhorst, N, Hebels, E R, van Steenbergen, M, Mastrobattista, E, Heger, M, van Nostrum, C F & Oliveira, S 2024, 'Nanobody-mediated targeting of zinc phthalocyanine with polymer micelles as nanocarriers', International Journal of Pharmaceutics, vol. 655, 124004, pp. 1-12. https://doi.org/10.1016/j.ijpharm.2024.124004