Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
2487968 | Journal of Pharmaceutical Sciences | 2006 | 11 Pages |
Abstract
βâLapachone (βâlap) is a novel anticancer agent that kills tumors overexpressing the NADP(H): quinone oxidoreductase enzyme. However, poor aqueous solubility and low bioavailability hinder its therapeutic applications. Herein we describe the development of poly(D,Lâlactideâcoâglycolide) (PLGA) polymer millirods for local delivery of βâlap. The objective was to investigate the use of βâlap inclusion complexes with cyclodextrins (CDs) to control βâlap release kinetics from PLGA millirods. Differential scanning calorimetry was performed to measure drug/polymer interactions, complexation efficiency with different CDs, and complex/polymer interactions. βâLap was found to have a solidâstate solubility of 13% in PLGA. βâLap dissolution in PLGA matrix lowered the glass transition temperature of PLGA from 44 to 31°C, and led to a slow release of βâlap (8.8â±â1.2% release after 22 days). For βâlap and CD interactions, increasing complexation efficiency was observed in the order of αâCD, γâCD, and βâCD. βâLap complexation with hydroxypropylâβâcyclodextrin (HPβâCD) prevented drug dissolution in PLGA, and led to fast release (79.6â±â2.1% after 2 days). Sustained drug release was achieved when βâlap was complexed with αâCD or γâCD. These data demonstrate the ability to tailor βâlap release kinetics via CD complexation, providing exciting opportunities for the use of βâlapâmillirods for intratumoral drug delivery.
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Authors
Fangjing Wang, Elvin Blanco, H.u.a. Ai, David A. Boothman, Jinming Gao,