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Modification of indwelling PVC catheters by ionizing radiation with temperature- and pH-responsive polymers for antibiotic delivery
ArticleAbstract: Gamma rays were evaluated as energy source to generate reactive points onto polyvinyl chloride (PVC)Palabras claves:Biomedical devices, Gamma radiation, PH-responsive, Polyvinyl chloride, Smart polymers, Thermal-responsiveAutores:Alvarez-Lorenzob C., Concheiro A., Duarte-Peña L., Emilio Bucio, López‐saucedo F.Fuentes:scopusModification of medical grade PVC with N-vinylimidazole to obtain bactericidal surface
ArticleAbstract: N-vinylimidazole (VIm) was grafted onto medical-grade poly(vinyl chloride) (PVC) catheters in orderPalabras claves:antimicrobial activity, Gamma radiation, N-vinylimidazole, Poly(vinyl chloride), Urinary catheterAutores:Alvarez-Lorenzob C., Concheiro A., Emilio Bucio, Jiménez-Páez V.M., Meléndez-Ortiz I.H.Fuentes:scopusSilicone rubber modified with methacrylic acid to host antiseptic drugs
ArticleAbstract: Silicone rubber (SR) was γ-ray grafted with poly(methacrylic acid) (PMAA) to improve its ability toPalabras claves:antimicrobial activity, Antiseptic medical device, Drugdevice combination product, Gamma radiation, Poly(methacrylic acid), Sustained releaseAutores:Alvarez-Lorenzob C., Concheiro A., Díaz-Gómez L., Emilio Bucio, Meléndez-Ortiz I.H., Vázquez-González B.Fuentes:scopusRadiation-grafting of N-vinylimidazole onto silicone rubber for antimicrobial properties
ArticleAbstract: Poly(N-vinylimidazole) (PVIm) was grafted $numbers onto silicone rubber (SR) with the aim of providiPalabras claves:Antiseptic medical device, Gamma radiation, Poly(N-vinylimidazole), silicone rubberAutores:Alvarez-Lorenzob C., Burillo G., Concheiro A., Emilio Bucio, Magariños B., Meléndez-Ortiz I.H.Fuentes:scopus