PEG-pHPMAm-based polymeric micelles loaded with doxorubicin-prodrugs in combination antitumor therapy with oncolytic vaccinia viruses
Publication date
2014-03-07
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Abstract
An enzymatically activatable prodrug of doxorubicin was covalently coupled, using click-chemistry, to the hydrophobic core of poly(ethylene glycol)-b-poly[N-(2-hydroxypropyl)-methacrylamide-lactate] micelles. The release and cytotoxic activity of the prodrug was evaluated in vitro in A549 non-small-cell lung cancer cells after adding β-glucuronidase, an enzyme which is present intracellularly in lysosomes and extracellularly in necrotic areas of tumor lesions. The prodrug-containing micelles alone and in combination with standard and β-glucuronidase-producing oncolytic vaccinia viruses were also evaluated in vivo, in mice bearing A549 xenograft tumors. When combined with the oncolytic viruses, the micelles completely blocked tumor growth. Moreover, a significantly better antitumor efficacy as compared to virus treatment alone was observed when β-glucuronidase virus treated tumor-bearing mice received the prodrug-containing micelles. These findings show that combining tumor-targeted drug delivery systems with oncolytic vaccinia viruses holds potential for improving anticancer therapy.
Keywords
Polymers and Plastics, Organic Chemistry, Biochemistry, Biomedical Engineering, Bioengineering, SDG 3 - Good Health and Well-being
Citation
Ruiz-Hernández, E, Hess, M, Melen, G J, Theek, B, Talelli, M, Shi, Y, Ozbakir, B, Teunissen, E A, Ramírez, M, Moeckel, D, Kiessling, F, Storm, G, Scheeren, H W, Hennink, W E, Szalay, A A, Stritzker, J & Lammers, T 2014, 'PEG-pHPMAm-based polymeric micelles loaded with doxorubicin-prodrugs in combination antitumor therapy with oncolytic vaccinia viruses', Polymer Chemistry, vol. 5, no. 5, pp. 1674-1681. https://doi.org/10.1039/c3py01097j