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染色对二硅酸锂的机械、表面和生物学性能的影响。

Effect of staining on the mechanical, surface and biological properties of lithium disilicate.

作者信息

Serrado de Pinho Barcellos Aline, Soares Miranda Jean, Amaral Marina, Araújo Alvarenga Janaína, Nogueira Lafayette, Tomomitsu Kimpara Estevão

机构信息

Post Graduation Program in Restorative Dentistry, Sao Paulo State University, Av. Eng. Francisco José Longo, 777 - Jardim Sao Dimas, São José dos Campos, SP 12245-000, Brazil.

Department of Dentistry, Federal University of Juiz de Fora (UFJF) - Campus Governador Valadares - Rua São Paulo, 745 - Centro, Governador Valadares, MG 35010-180, Brazil.

出版信息

Saudi Dent J. 2022 Feb;34(2):136-141. doi: 10.1016/j.sdentj.2021.12.007. Epub 2021 Dec 20.

Abstract

PURPOSE

To simulate biodegradation and wear of stained and glazed CAD lithium disilicate ceramic, and evaluate their effects on the microbial adherence and mechanical and surface properties of lithium disilicate ceramic.

MATERIALS AND METHODS

160 lithium disilicate ceramic discs were fabricated and divided in eight groups according to manual stain and glaze application with a fine paint brush (without stain and glaze; with stain and glaze) and aging procedures (no aging; wear at 30 N load, 1.7 Hz, 3 × 10 cycles; biodegradation by exposure to microcosm biofilm; biodegradation + wear; biodegradation + wear). Profilometry was performed to determine the surface roughness and the wear consequences. Biaxial flexural strength test was performed, and a adherence test was conducted to evaluate the number of colony forming units.

RESULTS

Unaged samples with and without stain and glaze presented the lowest values of surface roughness (p < 0.001), but after aging (wear, biodegradation, or both), the samples in the stain and glaze groups were rougher than those in the no stain and glaze groups (p < 0.001). The stain and glaze groups showed the highest volume of wear after aging (p = 0.04), and had the lowest flexural strength values (p < 0.01), irrespective of the aging method. The aging method did not affect the flexural strength (p = 0.06). The number of colonies forming units was higher for biodegradation + no stain and glaze, biodegradation + wear + no stain and glaze, no aging + stain and glaze, biodegradation + stain and glaze, and biodegradation + wear + stain and glaze. The lowest values were observed for no aging + no stain and glaze.

CONCLUSION

The staining and glazing of lithium disilicate increased the surface wear and bacterial adherence, and decreased biaxial flexural strength of the material. When exposed to S. mutans, surface roughness increased, and biodegradation favored bacterial adherence.

摘要

目的

模拟染色和上釉的CAD硅酸锂陶瓷的生物降解和磨损,并评估其对硅酸锂陶瓷微生物附着以及机械性能和表面性能的影响。

材料与方法

制作160个硅酸锂陶瓷圆盘,根据用细画笔手动染色和上釉情况(未染色和上釉;染色和上釉)以及老化程序(未老化;在30N载荷、1.7Hz频率下磨损3×10个循环;通过暴露于微观生物膜进行生物降解;生物降解+磨损;生物降解+磨损)分为八组。进行轮廓测定以确定表面粗糙度和磨损情况。进行双轴弯曲强度测试,并进行细菌附着测试以评估菌落形成单位的数量。

结果

未老化的有染色和上釉以及无染色和上釉的样品表面粗糙度值最低(p<0.001),但老化后(磨损、生物降解或两者皆有),染色和上釉组的样品比未染色和上釉组的样品更粗糙(p<0.001)。染色和上釉组在老化后磨损量最大(p = 0.04),并且无论老化方法如何,其弯曲强度值最低(p<0.01)。老化方法对弯曲强度没有影响(p = 0.06)。生物降解+无染色和上釉、生物降解+磨损+无染色和上釉、未老化+染色和上釉、生物降解+染色和上釉以及生物降解+磨损+染色和上釉的菌落形成单位数量较高。未老化+无染色和上釉的菌落形成单位数量最低。

结论

硅酸锂的染色和上釉增加了材料的表面磨损和细菌附着,并降低了材料的双轴弯曲强度。当暴露于变形链球菌时,表面粗糙度增加,生物降解有利于细菌附着。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dfc/8864374/4845a9f38e69/ga1.jpg

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