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Biopolymer Grafting: Applications(1)
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scopus(8)
Comonomer effect: Switching the lower critical solution temperature to upper critical solution temperature in thermo-pH sensitive binary graft copolymers
ArticleAbstract: Hydrophilic biocompatible surfaces can be obtained by grafting stimuli-sensitive polymers onto commePalabras claves:Gamma radiation, Graft copolymers, Lcst, stimuli-responsive materials, Surface modificationAutores:Cedillo G., Emilio Bucio, López-Barriguete E., Pino-Ramos V.H.Fuentes:scopusAntimicrobial polyurethane catheters synthesized by grafting-radiation method doped with silver nanoparticles
ArticleAbstract: Tecoflex® polyurethane catheters were surficial modified with acrylic acid (AAc) to obtain a hydrophPalabras claves:Antimicrobial surface, Biomaterials, Medical devices, silver nanoparticles, Surface modificationAutores:Audifred-Aguilar J.C., Emilio Bucio, Pino-Ramos V.H., Sánchez-Obregón R.Fuentes:scopusOne-step grafting of temperature-and pH-sensitive (N-vinylcaprolactam-co-4- vinylpyridine) onto silicone rubber for drug delivery
ArticleAbstract: A one-step method was implemented to graft N-vinylcaprolactam (NVCL) and 4-vinylpyridine (4VP) ontoPalabras claves:Bacteria adhesion, Cytocompatibility, Diclofenac sodium, Drug-eluting device, Dually responsive, silicone rubberAutores:Alvarez-Lorenzob C., Concheiro A., Emilio Bucio, Pino-Ramos V.H.Fuentes:scopusRadiation Grafting for the Functionalization and Development of Smart Polymeric Materials
ReviewAbstract: Gamma radiation has been shown particularly useful for the functionalization of surfaces with stimulPalabras claves:biosensors, drug delivery, Polymer functionalization, Radiation-grafting, Smart polymers, SuturesAutores:Emilio Bucio, López‐barriguete J.E., López‐saucedo F., Pino-Ramos V.H., Ramos-Ballesteros A., Varca G.H.C.Fuentes:scopusRadiation grafting of biopolymers and synthetic polymers: Synthesis and biomedical applications
Book PartAbstract: This chapter discusses the state of the art of biopolymers and synthetic polymers with potential bioPalabras claves:Biomedical Applications, biopolymers, Medical devices, Radiation grafting, Smart polymers, Synthetic polymersAutores:Emilio Bucio, Meléndez-Ortiz I.H., Pino-Ramos V.H., Ramos-Ballesteros A.Fuentes:scopusRadiation-grafting of N-vinylcaprolactam and 2-hydroxyethyl methacrylate onto polypropylene films to obtain a thermo-responsive drug delivery system
ArticleAbstract: 2-Hydroxyethyl methacrylate (HEMA) and N-vinylcaprolactam (NVCL) were grafted onto polypropylene filPalabras claves:Benzalkonium chloride, ciprofloxacin, LCST and UCST, NVCL and HEMA, Radiation-graftingAutores:Alvarez-Lorenzob C., Concheiro A., Emilio Bucio, González-Hernández G., Islas L., Pino-Ramos V.H.Fuentes:scopusSynthesis and characterization of hydrophilically modified Tecoflex® polyurethane catheters for drug delivery
ArticleAbstract: Hydrophilic surface modification of Tecoflex® polyurethane (PU) catheters was performed by graftingPalabras claves:Catheter, drug delivery, Medical devices, Polymer-surface modification, polyurethaneAutores:Audifred-Aguilar J.C., Emilio Bucio, Pino-Ramos V.H.Fuentes:scopusSynthesis of a thermo- and pH-sensitive comb-type graft copolymer by ionizing radiation
ArticleAbstract: A thermo-pH sensitive graft copolymer was successfully obtained by grafting 4-vinylpyridine and N-viPalabras claves:Autores:Emilio Bucio, Pino-Ramos V.H.Fuentes:scopus