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Grinstaff, MarkPerson Why?
Lesion complexity determines arterial drug distribution after local drug delivery.Academic Article Why?
3D superhydrophobic electrospun meshes as reinforcement materials for sustained local drug delivery against colorectal cancer cells.Academic Article Why?
Biologically responsive polymeric nanoparticles for drug delivery.Academic Article Why?
Controlled-release drug delivery systems in cardiovascular medicine.Academic Article Why?
Dendritic supramolecular assemblies for drug delivery.Academic Article Why?
Expansile nanoparticles: synthesis, characterization, and in vivo efficacy of an acid-responsive polymeric drug delivery system.Academic Article Why?
Heterotopic mucosal engrafting procedure for direct drug delivery to the brain in mice.Academic Article Why?
Local drug delivery strategies for cancer treatment: gels, nanoparticles, polymeric films, rods, and wafers.Academic Article Why?
Trojan-horse nanotube on-command intracellular drug delivery.Academic Article Why?
Mechanoresponsive materials for drug delivery: Harnessing forces for controlled release.Academic Article Why?
Cation Tuning of Supramolecular Gel Properties: A New Paradigm for Sustained Drug Delivery.Academic Article Why?
Hydrogels as intracellular depots for drug delivery.Academic Article Why?
Nanoparticle tumor localization, disruption of autophagosomal trafficking, and prolonged drug delivery improve survival in peritoneal mesothelioma.Academic Article Why?
Paclitaxel-loaded expansile nanoparticles enhance chemotherapeutic drug delivery in mesothelioma 3-dimensional multicellular spheroids.Academic Article Why?
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