Enhanced mechanical properties, anti-biofilm activity, and cytocompatibility of a methacrylate-based polymer loaded with native multiwalled carbon nanotubes.

dc.contributor.authorRodrigues, Ricardo Antonio Alpino
dc.contributor.authorSilva, Rosangela Maria Ferreira da Costa e
dc.contributor.authorFerreira, Luiza de Almeida Queiroz
dc.contributor.authorBranco, Natália Tavares Teixeira
dc.contributor.authorÁvila, Érick de Souza
dc.contributor.authorPeres, Anderson Maia
dc.contributor.authorBraga, Weslley Fernandes
dc.contributor.authorDias, Augusto César Sette
dc.contributor.authorAndrade, Ângela Leão
dc.contributor.authorDibb, Regina Guenka Palma
dc.contributor.authorMagalhães, Cláudia Silami de
dc.contributor.authorLadeira, Luiz Orlando
dc.contributor.authorSilveira, Rodrigo Richard da
dc.contributor.authorMoreira, Allyson Nogueira
dc.contributor.authorMartins Júnior, Paulo Antônio
dc.contributor.authorYamauti, Mônica
dc.contributor.authorDiniz, Ivana Márcia Alves
dc.date.accessioned2023-11-17T20:51:17Z
dc.date.available2023-11-17T20:51:17Z
dc.date.issued2022pt_BR
dc.description.abstractObjectives: We aimed to optimize the mechanical and biological properties of a conventional methacrylate-based dental polymer by loading it with double- and triple-walled carbon nanotubes as growth (DTWCNTG). Methods: A formulation of bisphenol A-glycidyl methacrylate and triethylene glycol dimethacrylate (mass ratio = 2:1) was mixed with DTWCNTG at concentrations of 0.0% (control), 0.001%, 0.005%, and 0.010%. The concentrations were physicochemical and morphologically evaluated, and antibacterial activity was assessed by seeding a Streptococcus mutans strain (ATCC 25175) on the experimental polymeric surfaces. Cellular survival and osteodifferentiation were evaluated in epithelial (HaCat) and preosteoblast cells (MC3T3-E1). Results: The 0.001% DTWCNTG concentration yielded higher compressive strength, elastic modulus, flexural strength, flexural modulus, water sorption, and solubility than the control. The degree of conversion and color did not significantly change with a low amount of DTWCNTG incorporated into the polymer. Antibacterial activity significantly improved when tested on the 0.001% DTWCNTG discs. No groups showed cytotoxicity in a short-term analysis and adding DTWCNTG favored MC3T3-E1 mineralization over the control, particularly in the 0.001% formulation. Significance: The micro-addition of 0.001% DTWCNTG confers mechanical resistance, antimicrobial properties, and bioactivity to methacrylate-based polymers without significantly compromising color. Incorporating DTWCNTG improved dental composite properties and could be a biomodified material for minimally invasive procedures.pt_BR
dc.identifier.citationRODRIGUES, R. A. A. et al. Enhanced mechanical properties, anti-biofilm activity, and cytocompatibility of a methacrylate-based polymer loaded with native multiwalled carbon nanotubes. Journal of the Mechanical Behavior of Biomedical Materials, v. 136, artigo 105511, dez. 2022. Disponível em: <https://www.sciencedirect.com/science/article/pii/S1751616122004167>. Acesso em: 01 ago. 2023.pt_BR
dc.identifier.doihttps://doi.org/10.1016/j.jmbbm.2022.105511pt_BR
dc.identifier.issn1751-6161
dc.identifier.urihttp://www.repositorio.ufop.br/jspui/handle/123456789/17810
dc.identifier.uri2https://www.sciencedirect.com/science/article/pii/S1751616122004167pt_BR
dc.language.isoen_USpt_BR
dc.rightsrestritopt_BR
dc.subjectMultiwalled carbon nanotubespt_BR
dc.subjectMethacrylate-based polymerspt_BR
dc.subjectDental resin compositespt_BR
dc.subjectAntibacterial activitypt_BR
dc.subjectBiomodificationpt_BR
dc.titleEnhanced mechanical properties, anti-biofilm activity, and cytocompatibility of a methacrylate-based polymer loaded with native multiwalled carbon nanotubes.pt_BR
dc.typeArtigo publicado em periodicopt_BR
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