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Nanomedicine ; 9(8): 1124-34, 2013 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-23764660

RESUMEN

Nearly 40% of patients with non-invasive bladder cancer will progress to invasive disease despite locally-directed therapy. Overcoming the bladder permeability barrier (BPB) is a challenge for intravesical drug delivery. Using the fluorophore coumarin (C6), we synthesized C6-loaded poly(lactide-co-glycolide) (PLGA) nanoparticles (NPs), which were surface modified with a novel cell penetrating polymer, poly(guanidinium oxanorbornene) (PGON). Addition of PGON to the NP surface improved tissue penetration by 10-fold in intravesically-treated mouse bladder and ex vivo human ureter. In addition, NP-C6-PGON significantly enhanced intracellular uptake of NPs compared to NPs without PGON. To examine biological activity, we synthesized NPs that were loaded with the histone deacetylase (HDAC) inhibitor belinostat (NP-Bel-PGON). NP-Bel-PGON exhibited a significantly lower IC50 in cultured bladder cancer cells, and sustained hyperacetylation, when compared to unencapsulated belinostat. Xenograft tumors treated with NP-Bel-PGON showed a 70% reduction in volume, and a 2.5-fold higher intratumoral acetyl-H4, when compared to tumors treated with unloaded NP-PGON. FROM THE CLINICAL EDITOR: These authors demonstrate that PLGA nanoparticles with PGON surface functionalization result in greatly enhanced cell penetrating capabilities, and present convincing data from a mouse model of bladder cancer for increased chemotherapy efficacy.


Asunto(s)
Portadores de Fármacos/química , Inhibidores de Histona Desacetilasas/administración & dosificación , Ácidos Hidroxámicos/administración & dosificación , Nanopartículas/química , Sulfonamidas/administración & dosificación , Neoplasias de la Vejiga Urinaria/tratamiento farmacológico , Animales , Línea Celular Tumoral , Portadores de Fármacos/metabolismo , Sistemas de Liberación de Medicamentos , Femenino , Inhibidores de Histona Desacetilasas/farmacocinética , Inhibidores de Histona Desacetilasas/uso terapéutico , Humanos , Ácidos Hidroxámicos/farmacocinética , Ácidos Hidroxámicos/uso terapéutico , Ratones , Nanopartículas/metabolismo , Poliglactina 910/química , Poliglactina 910/metabolismo , Sulfonamidas/farmacocinética , Sulfonamidas/uso terapéutico , Vejiga Urinaria/efectos de los fármacos , Vejiga Urinaria/metabolismo , Vejiga Urinaria/patología , Neoplasias de la Vejiga Urinaria/metabolismo , Neoplasias de la Vejiga Urinaria/patología , Urotelio/efectos de los fármacos , Urotelio/metabolismo , Urotelio/patología
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