Tesi etd-02192010-183249 |
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Tipo di tesi
Tesi di dottorato di ricerca
Autore
DASH, MAMONI
Indirizzo email
mdash@ns.dcci.unipi.it
URN
etd-02192010-183249
Titolo
Biocompatible polymeric materials for regenerative medicine applications
Settore scientifico disciplinare
CHIM/05
Corso di studi
BIOMATERIALI
Relatori
tutor Prof. Chiellini, Emo
Parole chiave
- chitin
- chitosan
- polymeric characterization
- regenerative medicine
Data inizio appello
05/03/2010
Consultabilità
Completa
Riassunto
networks are
prepared by the interaction of chitosan with poly(methacryloylglycylglycine), which is a synthetic
polymer belonging to the class of poly(acrylamides) and is being widely investigated for drug
delivery applications. A comprehensive study of the prepared biomaterials including their
degradability are done and presented. To recapitulate, the research activity in the present Doctorate
Thesis involves the following topics:
· Chitosan – A Versatile Material for Regenerative Medicine applications
· Statistical Approach of Chitin Deacetylation.
· Chitosan-Based Beads for Controlled Release of Proteins
· Hybrid Nanoparticles Based on Chitosan and Poly(Methacryloylglycylglycine)
· Synthesis and Characterization of Semi Interpenetrating Polymer Network Hydrogel
Composed of Chitosan and Poly(methacryloylglycyl glycine)
prepared by the interaction of chitosan with poly(methacryloylglycylglycine), which is a synthetic
polymer belonging to the class of poly(acrylamides) and is being widely investigated for drug
delivery applications. A comprehensive study of the prepared biomaterials including their
degradability are done and presented. To recapitulate, the research activity in the present Doctorate
Thesis involves the following topics:
· Chitosan – A Versatile Material for Regenerative Medicine applications
· Statistical Approach of Chitin Deacetylation.
· Chitosan-Based Beads for Controlled Release of Proteins
· Hybrid Nanoparticles Based on Chitosan and Poly(Methacryloylglycylglycine)
· Synthesis and Characterization of Semi Interpenetrating Polymer Network Hydrogel
Composed of Chitosan and Poly(methacryloylglycyl glycine)
File
Nome file | Dimensione |
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MD_Thesis.pdf | 8.59 Mb |
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