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Abstract

The aim of this work is the production of bacterial cellulose scaffolds (CBs) incorporated with hydroxyapatite (Hap) and silk fibroin (FS) for bone restoration applications. The samples produced presented high percentage of open and connected pores (75.16% to 88.52%). MEV results show that FS incorporation makes CBs pores more organized and elongated. This elongated pore profile is also confirmed by the Structure Model Index (SMI) and sphericity parameters, provided by X-ray microtomography (µCT). The sample composed by CBs-FS has an SMI = 2.42, close to the limit value (SMI = 3) that corresponds to the elongated structure. The scaffolds sphericity values were: 0.030 (CBs), 0.043 (CBs-Hap) and 0.020 (CBs-FS). The scaffolds produced have a trend of transversely isotropic symmetry, generally associated with a preferentially oriented direction.

Institutions
  • 1 Universidade de Sorocaba
  • 2 Laboratory of Applied Nuclear Physycs, University of Sorocaba – LaFINAU / University of Sorocaba (UNISO)
  • 3 Faculdade de Odontologia de Piracicaba / UNICAMP
  • 4 Laboratory of Biomaterials and Nanotechnology (LaBNUS) / University of Sorocaba (UNISO),
  • 5 UNIVERSIDADE DE SOROCABA / Uniso
  • 6 Departamento De Processos Tecnológicos e Ambientais / UNIVERSIDADE DE SOROCABA / Uniso
  • 7 UNIVERSIDADE DE SOROCABA - UNISO
Track
  • Biotechnology
Keywords
bacterial cellulose
silk fibroin
scaffold