Title of article
Visualization of degradable worm micelle breakdown in relation to drug release
Author/Authors
Geng، نويسنده , , Yan and Discher، نويسنده , , Dennis E.، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2006
Pages
7
From page
2519
To page
2525
Abstract
Spherical micelles and spherical vesicles have been extensively studied as carriers of hydrophobic drugs, but highly elongated polymer-based worm micelles might also serve the same purpose if release mechanisms are integrated. Degradable amphiphilic copolymers of poly(ethylene oxide)-block-polycaprolactone, PEO-b-PCL, are labeled here with hydrophobic dye and shown by fluorescence microscopy to assemble into highly flexible worm micelles. Degradation-induced morphological transitions from worms to spheres are quantitated in terms of decreasing contour lengths. The hydrophobic core of PCL can carry hydrophobic drugs in addition to dyes, as illustrated here by loading efficiency, storage, and degradation-coupled release of a model hydrophobic anti-cancer drug, taxol. From this, it can be estimated that single worm micelle about 10 μm long is additionally estimated to carry and release enough taxol to kill a single cell. The transition-coupled release is explained in part by the fact that worms have a larger volume-to-area ratio compared to spheres of the same radius.
Keywords
Degradation , taxol , Polyesters
Journal title
Polymer
Serial Year
2006
Journal title
Polymer
Record number
1726174
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