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Chitosan/Xanthan/Hydroxyapatite-graphene oxide porous scaffold associated with mesenchymal stem cells for dentin-pulp complex regeneration.
Souza, Alana Pc; Neves, José G; Navarro da Rocha, Daniel; Lopes, Camila C; Moraes, Ângela M; Correr-Sobrinho, Lourenço; Correr, Américo Bortolazzo.
Afiliação
  • Souza AP; Department of Restorative Dentistry- Dental Materials Area, Piracicaba Dental School, State University of Campinas - UNICAMP, S.P, Brazil.
  • Neves JG; Department of Restorative Dentistry- Dental Materials Area, Piracicaba Dental School, State University of Campinas - UNICAMP, S.P, Brazil.
  • Navarro da Rocha D; Department of Mechanical and Materials Engineering, Military Institute of Engineering- IME, Rio de Janeiro, Brazil.
  • Lopes CC; Department of Bioengineering, R-Crio Criogenia S.A., Campinas, SP, Brazil.
  • Moraes ÂM; Department of Mechanical and Materials Engineering, Military Institute of Engineering- IME, Rio de Janeiro, Brazil.
  • Correr-Sobrinho L; Department of Engineering of Materials and of Bioprocesses, School of Chemical Engineering, University of Campinas UNICAMP, Campinas, SP, Brazil.
  • Correr AB; Department of Restorative Dentistry- Dental Materials Area, Piracicaba Dental School, State University of Campinas - UNICAMP, S.P, Brazil.
J Biomater Appl ; 37(9): 1605-1616, 2023 04.
Article em En | MEDLINE | ID: mdl-36740600
ABSTRACT
The aim of this paper was to synthesize and characterize polymeric scaffolds of Chitosan/Xanthan/Hydroxyapatite-Graphene Oxide nanocomposite associated with mesenchymal stem cells for regenerative dentistry application. The chitosan-xanthan gum (CX) complex was associated with Hydroxyapatite-Graphene Oxide (HA-GO) nanocomposite with different Graphene Oxides (GO) concentration (0.5 wt%; 1.0 wt%; 1.5 wt%). The scaffolds characterizations were performed by X-ray diffraction (XRD), Fourier Transform Infrared Spectroscopy (FTIR), Raman spectroscopy, thermogravimetric analysis (TGA), scanning electron microscopy (SEM) and contact angle. The mechanical properties were assessed by compressive strength. The in vitro bioactivity and the in vitro cytotoxicity test (MTT test) were analyzed as well. The data was submitted to the Normality and Homogeneity tests. In vitro Indirect Cytotoxicity assay data was statistically analyzed by ANOVA two-way, followed by Tukey's test (α = 0.05). Compressive strength and contact angle data were statistically analyzed by one-way ANOVA, followed by Tukey's test (α = 0.05). XRD showed the presence of Hydroxyapatite (HA) peaks in the structures CXHA, CXHAGO 0.5%,1.0% and 1.5%. FT-IR showed amino and carboxylic bands characteristic of CX. Raman spectroscopy analysis evidenced a high quality of the GO. In the TGA it was observed the mass loss associated with the CX degradation by depolymerization. SEM analysis showed pores in the scaffolds, in addition to HA incorporated and adhered to the polymer. Contact angle test showed that scaffolds have a hydrophilic characteristic, with the CX group the highest contact angle and CXHA the lowest (p < 0.05). 1.0 wt% GO significantly increased the compressive strength compared to other compositions. In the bioactivity test, the apatite crystals precipitation on the scaffold surface was observed. MTT test showed high cell viability in CXHAGO 1.0% and CXHAGO 1.5% scaffold. CXHAGO scaffolds are promising for regenerative dentistry application because they have morphological characteristics, mechanical and biological properties favorable for the regeneration process.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Quitosana / Células-Tronco Mesenquimais / Grafite Tipo de estudo: Risk_factors_studies Idioma: En Revista: J Biomater Appl Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Quitosana / Células-Tronco Mesenquimais / Grafite Tipo de estudo: Risk_factors_studies Idioma: En Revista: J Biomater Appl Ano de publicação: 2023 Tipo de documento: Article