Advances in regenerative medicine and in modern biomedical therapies are fast evolving and set goals causing an upheaval in the field of materials science. This review discusses recent developments involving the use of biopolymers as smart materials, in terms of material properties and stimulus-responsive behavior, in the presence of environmental physicochemical changes. An overview on the transformations that can be triggered in natural-based polymeric systems (sol–gel transition, polymer relaxation, cross-linking, and swelling) is presented, with specific focus on the benefits these materials can provide in biomedical applications.

(2018). Biopolymer-based strategies in the design of smart medical devices and artificial organs [journal article - articolo]. In INTERNATIONAL JOURNAL OF ARTIFICIAL ORGANS. Retrieved from http://hdl.handle.net/10446/202697

Biopolymer-based strategies in the design of smart medical devices and artificial organs

Campiglio, Chiara Emma;
2018-01-01

Abstract

Advances in regenerative medicine and in modern biomedical therapies are fast evolving and set goals causing an upheaval in the field of materials science. This review discusses recent developments involving the use of biopolymers as smart materials, in terms of material properties and stimulus-responsive behavior, in the presence of environmental physicochemical changes. An overview on the transformations that can be triggered in natural-based polymeric systems (sol–gel transition, polymer relaxation, cross-linking, and swelling) is presented, with specific focus on the benefits these materials can provide in biomedical applications.
articolo
2018
Altomare, Lina; Bonetti, Lorenzo; Campiglio, Chiara Emma; De Nardo, Luigi; Draghi, Lorenza; Tana, Francesca; Farè, Silvia
(2018). Biopolymer-based strategies in the design of smart medical devices and artificial organs [journal article - articolo]. In INTERNATIONAL JOURNAL OF ARTIFICIAL ORGANS. Retrieved from http://hdl.handle.net/10446/202697
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/202697
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