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Curdlan-Chitosan Electrospun Fibers as Potential Scaffolds for Bone Regeneration.
Toullec, Clément; Le Bideau, Jean; Geoffroy, Valerie; Halgand, Boris; Buchtova, Nela; Molina-Peña, Rodolfo; Garcion, Emmanuel; Avril, Sylvie; Sindji, Laurence; Dube, Admire; Boury, Frank; Jérôme, Christine.
Afiliação
  • Toullec C; CRCINA, SFR ICAT, University Angers, Université de Nantes, Inserm, F-49000 Angers, France.
  • Le Bideau J; Center for Education and Research on Macromolecules (CERM), CESAM-UR, University of Liège, B-4000 Liège, Belgium.
  • Geoffroy V; Université de Nantes, CNRS, Institut des Matériaux Jean Rouxel, IMN, F-44000 Nantes, France.
  • Halgand B; INSERM, UMR 1229, RMeS, Regenerative Medicine and Skeleton, ONIRIS, Université de Nantes, F-44042 Nantes, France.
  • Buchtova N; UFR Odontologie, Université de Nantes, F-44042 Nantes, France.
  • Molina-Peña R; INSERM, UMR 1229, RMeS, Regenerative Medicine and Skeleton, ONIRIS, Université de Nantes, F-44042 Nantes, France.
  • Garcion E; UFR Odontologie, Université de Nantes, F-44042 Nantes, France.
  • Avril S; CHU Nantes, PHU4 OTONN, F-44093 Nantes, France.
  • Sindji L; CRCINA, SFR ICAT, University Angers, Université de Nantes, Inserm, F-49000 Angers, France.
  • Dube A; CRCINA, SFR ICAT, University Angers, Université de Nantes, Inserm, F-49000 Angers, France.
  • Boury F; CRCINA, SFR ICAT, University Angers, Université de Nantes, Inserm, F-49000 Angers, France.
  • Jérôme C; CRCINA, SFR ICAT, University Angers, Université de Nantes, Inserm, F-49000 Angers, France.
Polymers (Basel) ; 13(4)2021 Feb 10.
Article em En | MEDLINE | ID: mdl-33578913
ABSTRACT
Polysaccharides have received a lot of attention in biomedical research for their high potential as scaffolds owing to their unique biological properties. Fibrillar scaffolds made of chitosan demonstrated high promise in tissue engineering, especially for skin. As far as bone regeneration is concerned, curdlan (1,3-ß-glucan) is particularly interesting as it enhances bone growth by helping mesenchymal stem cell adhesion, by favoring their differentiation into osteoblasts and by limiting the osteoclastic activity. Therefore, we aim to combine both chitosan and curdlan polysaccharides in a new scaffold for bone regeneration. For that purpose, curdlan was electrospun as a blend with chitosan into a fibrillar scaffold. We show that this novel scaffold is biodegradable (8% at two weeks), exhibits a good swelling behavior (350%) and is non-cytotoxic in vitro. In addition, the benefit of incorporating curdlan in the scaffold was demonstrated in a scratch assay that evidences the ability of curdlan to express its immunomodulatory properties by enhancing cell migration. Thus, these innovative electrospun curdlan-chitosan scaffolds show great potential for bone tissue engineering.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article