A Doxorubicin-Glucuronide Prodrug Released from Nanogels Activated by High-Intensity Focused Ultrasound Liberated β-Glucuronidase

Publication date

2020-06-10

Authors

Besse, Helena C.
Chen, Yinan
Scheeren, Hans W
Metselaar, Josbert M
Lammers, Twan
Moonen, Chrit T WORCID 0000-0001-5593-3121ISNI 0000000038813649
Hennink, Wim E
Deckers, RHR

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Abstract

The poor pharmacokinetics and selectivity of low-molecular-weight anticancer drugs contribute to the relatively low effectiveness of chemotherapy treatments. To improve the pharmacokinetics and selectivity of these treatments, the combination of a doxorubicin-glucuronide prodrug (DOX-propGA3) nanogel formulation and the liberation of endogenous β-glucuronidase from cells exposed to high-intensity focused ultrasound (HIFU) were investigated in vitro. First, a DOX-propGA3-polymer was synthesized. Subsequently, DOX-propGA3-nanogels were formed from this polymer dissolved in water using inverse mini-emulsion photopolymerization. In the presence of bovine β-glucuronidase, the DOX-propGA3 in the nanogels was quantitatively converted into the chemotherapeutic drug doxorubicin. Exposure of cells to HIFU efficiently induced liberation of endogenous β-glucuronidase, which in turn converted the prodrug released from the DOX-propGA3-nanogels into doxorubicin. β-glucuronidase liberated from cells exposed to HIFU increased the cytotoxicity of DOX-propGA3-nanogels to a similar extend as bovine β-glucuronidase, whereas in the absence of either bovine β-glucuronidase or β-glucuronidase liberated from cells exposed to HIFU, the DOX-propGA3-nanogels hardly showed cytotoxicity. Overall, DOX-propGA3-nanogels systems might help to further improve the outcome of HIFU-related anticancer therapy.

Keywords

Enzyme prodrug therapy, High-intensity focused ultrasound, Local drug delivery, Nanogel, Prodrug, Pharmaceutical Science

Citation

Besse, H C, Chen, Y, Scheeren, H W, Metselaar, J M, Lammers, T, Moonen, C T W, Hennink, W E & Deckers, R 2020, 'A Doxorubicin-Glucuronide Prodrug Released from Nanogels Activated by High-Intensity Focused Ultrasound Liberated β-Glucuronidase', Pharmaceutics, vol. 12, no. 6, 536. https://doi.org/10.3390/pharmaceutics12060536