Controlled drug release from biodegradable polymer matrix loaded in microcontainers using hot punching

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Abstract

Microcontainers are reservoir-based advanced drug delivery systems (DDS) that have proven to increase the bioavailibity of the small-molecule drugs, targeting of biomolecules, protection of vaccines and improved treatment of Pseudomonas aeruginosa. However, high-throughput loading of these micron-sized devices with drug has been challenging. Hot punching is a new technique that is a fast, simple and single-step process where the microdevices are themselves used as mold to punch biocompatible and biodegradable drug-polymer films, thereby loading the containers. Here, we investigate the effect of hot punching on the drug distribution as well as drug release from the loaded drug-polymer matrices. Zero-order sustained drug release is observed for the model drug Furosemide embedded in biodegradable polymer, Poly-ε-caprolactone, which is attributed to the unique spatial distribution of Furosemide during the loading process.

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Petersen, R. S., Nielsen, L. H., Rindzevicius, T., Boisen, A., & Keller, S. S. (2020). Controlled drug release from biodegradable polymer matrix loaded in microcontainers using hot punching. Pharmaceutics, 12(11), 1–13. https://doi.org/10.3390/pharmaceutics12111050

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