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Bioactive Functionalisation of Silicones with Polysaccharides [[electronic resource] /] / by Matej Bračič, Simona Strnad, Lidija Fras Zemljič



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Autore: Bračič Matej Visualizza persona
Titolo: Bioactive Functionalisation of Silicones with Polysaccharides [[electronic resource] /] / by Matej Bračič, Simona Strnad, Lidija Fras Zemljič Visualizza cluster
Pubblicazione: Cham : , : Springer International Publishing : , : Imprint : Springer, , 2018
Edizione: 1st ed. 2018.
Descrizione fisica: 1 online resource (87 pages)
Disciplina: 668.4227
Soggetto topico: Materials—Surfaces
Thin films
Polymers  
Biomedical engineering
Surfaces and Interfaces, Thin Films
Polymer Sciences
Biomedical Engineering and Bioengineering
Persona (resp. second.): StrnadSimona
Fras ZemljičLidija
Nota di contenuto: Introduction -- Silicone in medical applications -- Catheter associated urethral tract infections -- Polysaccharides in medical applications -- Functionalisation of silicones with polysaccharides -- Conclusions.
Sommario/riassunto: This book covers the functionalisation of silicone surfaces with polysaccharides to improve their antimicrobial and antifouling properties, thus reducing the implant-related infections. The authors describe how silicone surfaces were chosen because silicone exhibits excellent biocompatible properties and is already being used for medical implants such as catheters, breast implants, prosthetics etc. The potential of polysaccharides such as cellulose, chitosan, hyaluronic acid, and other natural substances such as natural surfactants as coatings for silicones are also discussed, their effects are evaluated. With the aging of the population, the number of medical implants is growing and with it the number of infections associated with the use of implants.
Titolo autorizzato: Bioactive Functionalisation of Silicones with Polysaccharides  Visualizza cluster
ISBN: 3-030-02275-7
Formato: Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione: Inglese
Record Nr.: 9910392752403321
Lo trovi qui: Univ. Federico II
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Serie: Biobased Polymers, . 2510-3407