Article detail · 2022
Surface roughness and Streptococcus mutans adhesion on surface sealant agent coupled interim crown materials after dynamic loading
- Year
- 2022
- Type
- article
Data source split
- YÖKSİS YÖKSİS article record
- YÖKSİS venue BMC Oral Health
- Catalog match (ISSN) BMC Oral Health
- OpenAlex OpenAlex enrichment (abstract, citations, topics)
Abstract
OpenAlex · English
Abstract Background With the application of surface sealant agents, smooth surfaces can be achieved in a shorter time when compared with conventional polishing. However, studies on the performance of these agents against chewing forces are not many. The purpose of this study was to evaluate the surface roughness and Streptococcus mutans adhesion on surface sealent coupled interim prosthetic materials after chewing simulation. Methods One hundred and twelve specimens were fabricated from two poly(methyl methacrylate) (Tab 2000, Dentalon Plus) and two bis-acryl (Tempofit, Protemp 4) interim crown materials and divided into 4 groups (n = 7) according to applied surface treatment: conventional polishing (control) and 3 surface sealant (Palaseal, Optiglaze, Biscover) coupling methods. The surface roughness values (Ra) were measured with a profilometer before (Ra0) and after aging through dynamic loading in a multifunctional chewing simulator for 10,000 cycles at 50 N load combined with integral thermocycling (between 5 and 55 °C) (Ra1). Specimens were incubated with Streptococcus mutans suspension and the total number of adherent bacteria was calculated by multiplying the counted bacterial colonies with the dilution coefficient. Results Surface sealant agent application significantly decreased the surface roughness compared with conventionally polished specimens, except for Optiglaze or BisCover LV applied Protemp 4 and Palaseal or Biscover LV applied Tempofit. Surface roughness after dynamic loading showed a statistically significant increase in all groups, except for the control groups of Tab 2000 and Protemp 4. A positive correlation was found between surface roughness values of interim prosthodontic materials and the quantitiy of Streptococcus Mutans. Conclusions Even though surface sealant agent application significantly decreased the surface roughness compared with conventionally polished specimens, dynamic loading significantly increased the surface roughness of all surface sealant coupled materials. The Ra values of all test groups were higher than the plaque accumulation threshold (0.20 µm). Streptococcus mutans adhered more on rougher surfaces.
Topics
Citations
OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.
18 citations
OpenAlex cited_by_count (cache / database)
10 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).
- Impact of surface roughness and wettability on microbial adhesion of temporary prostheses made by additive, subtractive, and conventional methods 2025
- Impact of surface roughness and wettability on microbial adhesion of temporary prostheses made by additive, subtractive, and conventional methods 2025
- Effect of Different Surface Treatments and Toothbrushing Durations on Surface Roughness and Color Stability of CAD/CAM Interim Crown Material 2025
- Effect of Different Surface Treatments and Toothbrushing Durations on Surface Roughness and Color Stability of CAD/CAM Interim Crown Material 2025
- Effect of Different Surface Treatments and Toothbrushing Durations on Surface Roughness and Color Stability of CAD/CAM Interim Crown Material 2025
- Effect of Different Surface Treatments and Toothbrushing Durations on Surface Roughness and Color Stability of CAD/CAM Interim Crown Material 2025
- The Effect of the Toothbrushing and Surface Treatments on the Surface Roughness of Interim Crown Materials Used for Conventional, Subtractive, and Additive Manufacturing Techniques: An in Vitro Study 2023
- The Effect of the Toothbrushing and Surface Treatments on the Surface Roughness of Interim Crown Materials Used for Conventional, Subtractive, and Additive Manufacturing Techniques: An in Vitro Study 2023
- The Effect of the Toothbrushing and Surface Treatments on the Surface Roughness of Interim Crown Materials Used for Conventional, Subtractive, and Additive Manufacturing Techniques: An in Vitro Study 2023
- Effect of Printing Orientation and Layer Thickness on Surface Properties and Streptococcus mutans Biofilm Formation of 3D-Printed Provisional Restorations: An In Vitro Study 2026