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Nanohydroxyapatite/Titanate Nanotube Composites for Bone Tissue Regeneration.
Gusmão, Suziete B S; Ghosh, Anupama; de Menezes, Alan S; Pereira, Antônio F M; Lopes, Miriam T P; Souza, Madaline K; Dittz, Dalton; Abreu, Guilherme J P; Pinto, Lucielma S S; Maia Filho, Antônio L M; Gusmão, Gustavo O M; Webster, Thomas J; Lobo, Anderson O; Viana, Bartolomeu C.
Afiliação
  • Gusmão SBS; Interdisciplinary Laboratory for Advanced Materials(LIMAV), Materials Science and Engineering Graduate Program, Federal University of Piaui, Teresina 64049-550, PI, Brazil.
  • Ghosh A; Central Analítica, Federal University of Ceara, Fortaleza 60020-181, CE, Brazil.
  • de Menezes AS; Department of Chemical and Materials Engineering-DEQM, Pontifical Catholic University of Rio de Janeiro, Rio de Janeiro 22541-041, RJ, Brazil.
  • Pereira AFM; Departamento de Física, CCET, Federal University of Maranhao, São Luís 65080-805, MA, Brazil.
  • Lopes MTP; Departamento de Enfermagem, Federal University of Piaui, Teresina 64049-550, PI, Brazil.
  • Souza MK; Departamento de Farmacologia, Federal University of Minas Gerais, Belo Horizonte 31270-901, MG, Brazil.
  • Dittz D; Departamento de Farmacologia, Federal University of Minas Gerais, Belo Horizonte 31270-901, MG, Brazil.
  • Abreu GJP; Departamento de Bioquímica e Farmacologia, Federal University of Piaui, Teresina 64049-550, PI, Brazil.
  • Pinto LSS; Departamento de Física, Universidade Federal do Paraná, Curitiba 80060-000, PR, Brazil.
  • Maia Filho ALM; Centro de Ciências da Saúde, State University of Piaui, Teresina 64049-550, PI, Brazil.
  • Gusmão GOM; Núcleo de Pesquisa em Biotecnologia e Biodiversidade, State University of Piaui, Teresina 64002-150, PI, Brazil.
  • Webster TJ; Departmento de Física, State University of Piaui, Teresina 64049-550, PI, Brazil.
  • Lobo AO; Interdisciplinary Laboratory for Advanced Materials(LIMAV), Materials Science and Engineering Graduate Program, Federal University of Piaui, Teresina 64049-550, PI, Brazil.
  • Viana BC; School of Health Sciences and Biomedical Engineering, Hebei University of Technology, Tianjin 300130, China.
J Funct Biomater ; 13(4)2022 Dec 17.
Article em En | MEDLINE | ID: mdl-36547566
ABSTRACT
Strategies for the production of new nanocomposites that promote bone tissue regeneration are important, particularly those that enhance the osteoinduction of hydroxyapatite in situ. Here, we studied and report the synthesis of nanohydroxyapatite and titanate nanotube (nHAp/TiNT) composites formulated at different concentrations (1, 2, 3, and 10 wt % TiNT) by means of a wet aqueous chemical reaction. The addition of TiNT affects the morphology of the nanocomposites, decreasing the average crystallite size from 54 nm (nHAp) to 34 nm (nHAp/TiNT10%), while confirming its interaction with the nanocomposite. The crystallinity index (CI) calculated by Raman spectroscopy and XRD showed that the values decreased according to the increase in TiNT concentration, which confirmed their addition to the structure of the nanocomposite. SEM images showed the presence of TiNTs in the nanocomposite. We further verified the potential cytotoxicity of murine fibroblast cell line L929, revealing that there was no remarkable cell death at any of the concentrations tested. In vivo regenerative activity was performed using oophorectomized animal (rat) models organized into seven groups containing five animals each over two experimental periods (15 and 30 days), with bone regeneration occurring in all groups tested within 30 days; however, the nHAp/TiNT10% group showed statistically greater tissue repair, compared to the untreated control group. Thus, the results of this study demonstrate that the presently formulated nHAp/TiNT nanocomposites are promising for numerous improved bone tissue regeneration applications.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article