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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (3/3 displayed)

  • 2024The impact of methylene blue photosensitizer, aPDT and a calcium hydroxide-based paste on the physicochemical and mechanical characteristics of root canal dentin and the bonding interface of fiberglass posts1citations
  • 2023Vital Pulp Therapy in Permanent Teeth Diagnosed with Symptomatic Irreversible Pulpitis: Reports with Long-Term Controls2citations
  • 2021Effect of Irrigating Agitation after Root End Preparation on the Wall Cleaning and Bond Strength of Calcium Silicate Material in Retrograde Obturation6citations

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Garcia, Dayana Cristina Silva
1 / 1 shared
Constantino, Carlos José Leopoldo
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Maltarollo, Thalya Fernanda Horsth
1 / 1 shared
Martinez, Carolina Martins Teixeira
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Rocha, Eloísa Alexo
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Figueiredo, Roberto Braga
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Spin-Neto, Rubens
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Strazzi-Sahyon, Henrico Badaoui
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Banci, Henrique Augusto
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Santos, Paulo Henrique Dos
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Sivieri-Araujo, Gustavo
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Cintra, Luciano Tavares Angelo
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Rojas, Pierre Alfredo Mejia
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Goncalves-Pereira, Juan
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Só, Marcus Vinícius Reis
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Vivan, Rodrigo Ricci
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Alcalde, Murilo Priori
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Vertuan, Gislene Cristina
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Valencia, Yahir Muñoz
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Co-Authors (by relevance)

  • Garcia, Dayana Cristina Silva
  • Constantino, Carlos José Leopoldo
  • Maltarollo, Thalya Fernanda Horsth
  • Martinez, Carolina Martins Teixeira
  • Rocha, Eloísa Alexo
  • Figueiredo, Roberto Braga
  • Spin-Neto, Rubens
  • Strazzi-Sahyon, Henrico Badaoui
  • Banci, Henrique Augusto
  • Santos, Paulo Henrique Dos
  • Sivieri-Araujo, Gustavo
  • Cintra, Luciano Tavares Angelo
  • Rojas, Pierre Alfredo Mejia
  • Goncalves-Pereira, Juan
  • Só, Marcus Vinícius Reis
  • Vivan, Rodrigo Ricci
  • Alcalde, Murilo Priori
  • Vertuan, Gislene Cristina
  • Valencia, Yahir Muñoz
OrganizationsLocationPeople

article

The impact of methylene blue photosensitizer, aPDT and a calcium hydroxide-based paste on the physicochemical and mechanical characteristics of root canal dentin and the bonding interface of fiberglass posts

  • Garcia, Dayana Cristina Silva
  • Constantino, Carlos José Leopoldo
  • Maltarollo, Thalya Fernanda Horsth
  • Martinez, Carolina Martins Teixeira
  • Rocha, Eloísa Alexo
  • Figueiredo, Roberto Braga
  • Spin-Neto, Rubens
  • Strazzi-Sahyon, Henrico Badaoui
  • Duarte, Marco Antonio Hungaro
  • Banci, Henrique Augusto
  • Santos, Paulo Henrique Dos
  • Sivieri-Araujo, Gustavo
  • Cintra, Luciano Tavares Angelo
Abstract

<p>Purpose: To investigate the influence of methylene blue (MB)-mediated antimicrobial photodynamic therapy (aPDT) and calcium hydroxide (CH) medication on the mechanical characteristics, degree of conversion (DC), quantification, and volume of gaps at the adhesive interface of glass fiber posts (GFPs) luted to distinct thirds of root canal dentin. Additionally, the microhardness (MH), elastic modulus (Eit), morphology, and chemical structure of the intraradicular dentin were assessed. Materials and methods: 6 experimental groups were formed by sorting 102 bovine incisors. Canals receiving deionized water irrigation as a negative control; canals receiving deionized water irrigation and filled with CH as a positive control; groups treated with CH + MB at 50 and 100 mg/L without irradiation; and groups treated with CH + MB at 50 and 100 mg/L irradiated by red laser for 60 s (660 nm; 100 mW; 6.5 J; 72 J/cm<sup>2</sup>). MH, Eit, and DC properties were evaluated for both the resin cement layer and root dentin substrate (n = 8). Volume and quantification of gaps at the bonding interface (n = 6), and dentin morphology and chemical content were investigated (n = 3). Data were analyzed using a repeated-measures 2-way ANOVA followed by Tukey post hoc analysis (α = 0.05). Results: The distinct intraradicular thirds and treatment with MB-mediated aPDT, whether activated or not, in combination with CH, had a significant impact on the mechanical characteristics of the root dentin. This effect was also observed in the MH, Eit, DC, quantification, and volume of gaps at the luting interface (P &lt; .05). In general, a higher concentration of MB, whether activated by a red laser or not, led to lower values in the mechanical properties of the root dentin, as well as in MH, Eit, and DC at the adhesive interface (P &lt; .05). Additionally, these groups exhibited higher values for quantification and volume of gaps at the luting substrate (P &lt; .05). Scanning electron micrographs and energy dispersive X-ray spectra showed qualitative similarity among all groups, except for the negative experimental control group. Conclusions: MB-mediated aPDT at 50 mg/L, in combination with CH, demonstrated favorable physico-chemical and mechanical characteristics in intraradicular dentin, along with satisfactory mechanical features and the adhesive interface integrity for GFPs at all intraradicular depths. Clinical significance: MB-mediated aPDT at a concentration of 50 mg/L combined to CH medication represents a suitable choice for photosensitization in the context of intracanal disinfection following the biomechanical procedure and prior to luting of intraradicular restorations.</p>

Topics
  • glass
  • glass
  • cement
  • Calcium
  • resin