Controlled release of nanoparticles and macromolecules from responsive microgel capsules.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 22176274.
- Also identified by DOI 10.1021/nn2043143.
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Abstract
Using a mesoscale computational model, we probe the release of nanoparticles and linear macromolecules from hollow microgel capsules that swell and deswell in response to external stimuli. Our simulations reveal that responsive microcapsules can be effectively utilized for steady and pulsatile release of encapsulated solutes. Swollen gel capsules allow steady, diffusive release of nanoparticles and polymer chains, whereas gel deswelling causes burst-like discharge of solutes driven by an outward flow of the solvent enclosed within a shrinking capsule. We demonstrate that this hydrodynamic release can be regulated by introducing rigid microscopic rods in the capsule interior. Thus, our findings disclose an efficient approach for controlled release from stimuli-responsive microcarriers that could be useful for designing advanced drug delivery systems.
Medical subject headings
- Delayed-Action Preparations
- Gels
- Models, Chemical
- Nanocapsules
- Pharmaceutical Preparations