Artículo
Crossing biological barriers with nanogels to improve drug delivery performance
Cuggino, Julio César
; Blanco, Ernesto Rafael Osorio; Gugliotta, Luis Marcelino
; Alvarez Igarzabal, Cecilia Ines
; Calderon, Marcelo
Fecha de publicación:
08/2019
Editorial:
Elsevier Science
Revista:
Journal of Controlled Release
ISSN:
0168-3659
e-ISSN:
1873-4995
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
The current limitations in the use of nanocarriers to treat constantly evolving diseases call for the design of novel and smarter drug delivery systems (DDS). Nanogels (NGs) are three-dimensional crosslinked polymers with dimensions on the nanoscale and with a great potential for use in the biomedical field. Particular interest focuses on their application as DDS to minimize severe toxic effects and increase the therapeutic index of drugs. They have recently gained attention, since they can include responsive modalities within their structure, which enable them to excerpt a therapeutic function on demand. Their bigger sizes and controlled architecture and functionality, when compared to non-crosslinked polymers, make them particularly interesting to explore novel modalities to cross biological barriers. The present review summarizes the most significant developments of NGs as smart carriers, with focus on smart modalities to cross biological barriers such as cellular membrane, tumor stroma, mucose, skin, and blood brain barrier. We discuss the properties of each barrier and highlight the importance that the NG design has on their capability to overcome them and deliver the cargo at the site of action.
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Articulos(IPQA)
Articulos deINSTITUTO DE INVESTIGACION Y DESARROLLO EN INGENIERIA DE PROCESOS Y QUIMICA APLICADA
Articulos deINSTITUTO DE INVESTIGACION Y DESARROLLO EN INGENIERIA DE PROCESOS Y QUIMICA APLICADA
Citación
Cuggino, Julio César; Blanco, Ernesto Rafael Osorio; Gugliotta, Luis Marcelino; Alvarez Igarzabal, Cecilia Ines; Calderon, Marcelo; Crossing biological barriers with nanogels to improve drug delivery performance; Elsevier Science; Journal of Controlled Release; 307; 8-2019; 221-246
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