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向玻璃离子水门汀中添加甘油磷酸钙和木糖醇对其机械性能和微生物性能的影响。

Effect on mechanical and microbiological properties of adding calcium glycerophosphate and xylitol to glass ionomer cement.

作者信息

de Azevedo Santana Juliana, de Lima Navarro Maria Fidela, Gomes Leonardo Fernandes, Brighenti Fernanda Lourenção, de Oliveira Analú Barros, Fernandes Gabriela Leal Peres, Nunes Gabriel Pereira, Danelon Marcelle

机构信息

School of Dentistry, University of Ribeirão Preto - UNAERP, Ribeirão Preto, SP, Brazil.

Department of Dental Materials, Endodontics and Operative Dentistry, Bauru School of Dentistry, University of São Paulo, Bauru, Brazil.

出版信息

Eur J Oral Sci. 2025 Apr;133(2):e70001. doi: 10.1111/eos.70001. Epub 2025 Feb 13.

Abstract

This study aimed to evaluate the effect on the mechanical and microbiological properties of incorporating calcium glycerophosphate (CaGP) and/or xylitol into resin modified glass ionomer cement (RMGIC). Six experimental cements were tested: i) RMGIC without additions; and RMGIC with ii) 5% xylitol; iii) 10% xylitol; iv) 3% CaGP; v) 3% CaGP and 5% xylitol, or vi) 3% CaGP and 10% xylitol. The compressive strength, diametral tensile strength and surface hardness were determined (24 h and 7 days). Antimicrobial/antibiofilm activity was evaluated. Compressive strength values after 24 h for +3% CaGP & 5% xylitol were higher and similar to RMGIC. After 7 days, +3% CaGP & 5% xylitol presented the highest compressive strength values. The +3% CaGP & 10% xylitol showed the lowest values of diametral tensile strength values (24 h). The RMGIC with +3% CaGP & 5% xylitol showed the highest diametral tensile strength (7 days). The surface hardness (24 h) were highest for the RMGIC and +10% xylitol. After 7 days, +3% CaGP & 5% xylitol showed the highest value. The +3% CaGP & 5% xylitol or +3% CaGP & 10% xylitol showed the lowest levels of microbial/biofilm formation. The addition of CaGP/xylitol promoted improved the mechanical and antibacterial properties of RMGIC.

摘要

本研究旨在评估将甘油磷酸钙(CaGP)和/或木糖醇加入树脂改性玻璃离子水门汀(RMGIC)中对其机械性能和微生物性能的影响。测试了六种实验性水门汀:i)未添加任何物质的RMGIC;以及添加了ii)5%木糖醇;iii)10%木糖醇;iv)3% CaGP;v)3% CaGP和5%木糖醇;或vi)3% CaGP和10%木糖醇的RMGIC。测定了抗压强度、径向拉伸强度和表面硬度(24小时和7天)。评估了抗菌/抗生物膜活性。添加3% CaGP和5%木糖醇的样品在24小时后的抗压强度值较高,与RMGIC相似。7天后,添加3% CaGP和5%木糖醇的样品呈现出最高的抗压强度值。添加3% CaGP和10%木糖醇的样品在24小时时径向拉伸强度值最低。添加3% CaGP和5%木糖醇的RMGIC在7天时显示出最高的径向拉伸强度。RMGIC和添加10%木糖醇的样品在24小时时表面硬度最高。7天后,添加3% CaGP和5%木糖醇的样品显示出最高值。添加3% CaGP和5%木糖醇或3% CaGP和10%木糖醇的样品显示出最低水平的微生物/生物膜形成。CaGP/木糖醇的添加促进了RMGIC机械性能和抗菌性能的改善。

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