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dc.contributor.author França, Carla Giometti
dc.contributor.author Plaza, Tanya
dc.contributor.author Naveas, Nelson
dc.contributor.author Andrade Santana, Maria Helena
dc.contributor.author Manso-Silván, Miguel
dc.contributor.author Recio, Gonzalo
dc.contributor.author Hernandez-Montelongo, Jacobo
dc.date.accessioned 2024-09-26T00:31:32Z
dc.date.available 2024-09-26T00:31:32Z
dc.date.issued 2021-01
dc.identifier.issn 1387-1811
dc.identifier.uri https://repositorio.uss.cl/handle/uss/12462
dc.description Publisher Copyright: © 2020 Elsevier Inc.
dc.description.abstract Oxidized hyaluronic acid cross-linked with adipic acid dihydrazide (oxi-HA/ADH) forms an injectable and biocompatible hydrogel suitable for treatment of musculoskeletal diseases and for drug delivery applications. In that sense, nanoporous silicon (nPSi) can be combined with biopolymers, such as oxi-HA/ADH hydrogel, to display new characteristics, which are not exhibited by the individual constituents alone. Under this context, in this work nPSi microparticles at concentrations from 0.1% to 1% m/v were embedded into oxi-HA/ADH hydrogel to improve its mechanical stability and enhance its control over drug release kinetics using Rose Bengal (RB) as a model drug because its cytotoxic effect in different cancer cell lines and tumors has been previously reported. Our results showed, for both compressive force and stress strength tests, that oxi-HA/ADH hydrogel with 1% nPSi microparticles doubled the values of control samples. Moreover, samples of oxi-HA/ADH with nPSi microparticles improved RB release kinetics control over pure oxi-HA/ADH hydrogel. Finally, the cell viability of nPSi microparticles embedded into oxi-HA/ADH hydrogel was confirmed using fibroblasts. en
dc.language.iso eng
dc.relation.ispartof vol. 310 Issue: Pages:
dc.source Microporous and Mesoporous Materials
dc.title Nanoporous silicon microparticles embedded into oxidized hyaluronic acid/adipic acid dihydrazide hydrogel for enhanced controlled drug delivery en
dc.type Artículo
dc.identifier.doi 10.1016/j.micromeso.2020.110634
dc.publisher.department Facultad de Ingeniería, Arquitectura y Diseño


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