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1.
Swiss Dent J ; 133(7-8): 503-506, 2023 Jul 10.
Artículo en Alemán | MEDLINE | ID: mdl-37386915

RESUMEN

This article discusses the treatment of tooth structure loss due to erosion using indirect lithium disilicate ceramic restorations. Minimally invasive approaches, in which the eroded teeth are conservatively prepared and restored with minimally invasive restorations, are recommended. Lithium disilicate ceramics are currently the material of choice for this type of treatment as they can withstand maximum occlusal forces in the posterior region. The restorative process should be guided by diagnostic procedures that define the clinical therapeutic goal at the beginning of treatment. Adhesive cementation with the correct protocol is crucial for full mechanical strength of the restoration. At the end of the treatment, in addition to preventive measures, an overnight protective splint is recommended to ensure long-term clinical stability.


Asunto(s)
Estética Dental , Pérdida de Diente , Humanos , Dorso , Fuerza de la Mordida , Cementación
2.
J Mech Behav Biomed Mater ; 136: 105520, 2022 12.
Artículo en Inglés | MEDLINE | ID: mdl-36341889

RESUMEN

PURPOSE: The aim was to investigate the load bearing capacity of different pressable lithium disilicates cemented as occlusal veneers on molars. MATERIALS AND METHODS: One control group and six test groups were formed consisting of 20 specimens each (n = 20). The six test groups differed in the utilizing pressable lithium disilicate to fabricate occlusal veneers. As a control group, "group Lis", the lithium disilicate with the highest reported flexural strength was used (initial LiSi Press, GC Europe; Leuven, Belgium / flexural strength: 508 MPa). The test groups consisted of other pressable lithium disilicates with lower flexural strength values: "Ema" (IPS e.max press), "Vit" (VITA Ambria), "Liv" (Livento Press), "Amb" (Amber Press), "Mas" (Amber Press Master) and "Ros" (Rosetta SP)". After the preparation of 140 extracted human molars, which included the removal of the central enamel, the specimens were scanned using a desktop scanner. With the aid of a design software, the occlusal veneers were designed in a standardized thickness of 0.5 mm. To fabricate the restorations, all tested materials were processed using heat-pressing technique. All restorations were adhesively cemented. Afterwards, the specimens underwent cyclic fatigue during an aging procedure in a chewing simulator (1'200'000 chewing-cycles, 49 N force, 5-55°C temperature changes). Subsequently, the specimens were statically loaded and the load which was necessary to fracture the specimen (Fmax) were measured. Differences between the groups were compared applying the Kruskal-Wallis (KW) test and the Wilcoxon-Mann-Whitney-Test (WMW: p < 0.05). The two-parameter Weibull distribution values were calculated. RESULTS: The fatigue resistance was 100% for the groups Lis, Vit, Liv, Amb, Mas and Ros, whereas the group Ema showed a fatigue resistance of 95%. The control group Lis showed median Fmax values of 2'328 N. The median Fmax values for the test groups ranged between 1'753 N (Vit) and 2'490 N (Ros). Statistically significant difference was observed among the groups Lis (control) and Vit (KW: p < 0.001). Weibull distribution presented the highest shape values for the group Ros (12.83) and the lowest values for the group Ema (4.71). CONCLUSION: Regarding their load-bearing capacity different pressable lithium disilicates can be recommended to fabricate ultra-thin occlusal veneers on molars when restoring occlusal tooth wear.


Asunto(s)
Cerámica , Litio , Humanos , Soporte de Peso , Ensayo de Materiales , Ámbar , Porcelana Dental , Análisis del Estrés Dental , Diseño Asistido por Computadora
3.
Microbiologyopen ; 11(2): e1271, 2022 04.
Artículo en Inglés | MEDLINE | ID: mdl-35478282

RESUMEN

Antibacterial properties of toothpastes enable chemical plaque control in limited-access tooth regions that are mechanically not sufficiently reached by toothbrushes. Therefore, this study aimed to compare different microbial methods to assess antimicrobial toothpaste properties and evaluate different toothpastes in terms of their antibacterial efficacy against different oral microorganisms in an in vitro setting. Six toothpaste suspensions with varying antibacterial supplements were applied to a multispecies biofilm model (Actinomyces oris, Candida albicans, Fusobacterium nucleatum, Streptococcus oralis, and Streptococcus mutans) as well as to each microorganism. A culture method was used to assess the anti-biofilm effects and two different agar diffusion assays were performed for testing the antimicrobial effect on each microorganism. The measurements of the culture and diffusion analyses were statistically normalized and compared and toothpastes were ranked according to their antimicrobial efficacy. The results of both agar diffusion assays showed a high correlation across all tested species (Spearman correlation coefficients ρs > 0.95). The results of the multispecies biofilm model, however, substantially differed in its assessment of antibacterial properties (ρs ranging from 0.22 to 0.87) compared to the results of both diffusion assays. Toothpastes with amine fluoride (with and without stannous fluoride), and toothpastes with triclosan resulted in the highest antimicrobial efficacy. Activated carbon supplements in toothpastes were comparable in their antimicrobial action to the negative control NaCl. The appropriate selection of a broad range of oral microorganisms seems crucial when testing the chemical impact of toothpaste and toothpaste supplements.


Asunto(s)
Antiinfecciosos , Pastas de Dientes , Agar , Antibacterianos/farmacología , Antiinfecciosos/farmacología , Streptococcus mutans , Pastas de Dientes/farmacología
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