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光活化玫瑰红孟加拉染料掺杂 TiO2 纳米颗粒修饰第五代黏结剂对变异链球菌存活率和牙色修复材料对龋坏牙本质机械性能的影响。

Photoactivated rose bengal-doped TiO nanoparticles modified fifth-generation adhesive on the survival rate of Streptococcus mutants and mechanical properties of tooth-colored restorative material to carious dentin.

机构信息

Pharmaceutical Biotechnology Laboratory, Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.

Dow University of Health Sciences, Karachi, Pakistan.

出版信息

Microsc Res Tech. 2024 Dec;87(12):2943-2953. doi: 10.1002/jemt.24658. Epub 2024 Jul 26.

Abstract

Assessment of the antimicrobial, micro tensile bond strength (μTBS), and degree of conversion (DC) of fifth-generation adhesive modified using photoactivated 0.5% rose bengal (RB) and photoactivated RB-doped titanium dioxide nanoparticles (TiONPs) in different concentrations (2% and 5%) as compared with the unmodified adhesive bonded to the carious affected dentin (CAD). Forty mandibular molars with caries progression up to the middle third of the dentin, as per the International Caries Detection and Assessment System (ICDAS) score of 4 and 5 were included. Specimens were divided into four groups based on etch and rinse adhesive (ERA) modification group 1: unmodified ERA, group 2: photoactivated 0.5% RB photosensitizer (PS) modified ERA, group 3: photoactivated RB-doped 2 wt% TiONPs adhesive, group 4: photoactivated RB-doped 5 wt% TiONPs adhesive. Followed by adhesive and composite restoration on the CAD surface. All the specimens were thermocycled and an assessment of μTBS and failure pattern analysis was performed. The antibacterial potency of RB and RB-doped TiONPs (2% and 5%) followed by their activation using visible light against Streptococcus mutans (S.mutans) were tested. The survival rate of S.mutans was assessed using the Kruskal-Wallis test. The analysis of μTBS involved the use of ANOVA, followed by a post-hoc Tukey honestly significant difference (HSD) multiple comparisons test. Group 1 (Unmodified ERA) (0.52 ± 0.31 CFU/mL) treated samples unveiled the highest means of bacterial survival and lowest μTBS (11.32 ± 0.63 MPa). Nevertheless, group 4: photoactivated RB-doped 5 wt% TiO2NPs adhesive displayed the lowest outcomes of S.mutans survival (0.11 ± 0.02 CFU/mL) and highest bond strength (18.76 ± 1.45 MPa). The photoactivated RB-doped 2 wt% TiONPs in adhesive demonstrated promising enhancements in both μTBS and antibacterial efficacy against S.mutans. However, it is noteworthy that this modification led to a decrease in the DC of the adhesive. RESEARCH HIGHLIGHTS: Unmodified ERA-treated samples unveiled the highest bacterial survival and the lowest μTBS. Photoactivated RB-doped 5 wt% TiONPs adhesive displayed the lowest S.mutans survival rate and highest bond strength. DC decreased with an increase in concentration of TiO.

摘要

评估使用光激活 0.5%玫瑰红(RB)和光激活 RB 掺杂二氧化钛纳米颗粒(TiONPs)的第五代改良型胶粘剂的抗菌性、微拉伸结合强度(μTBS)和转化率(DC),并将其与未改性的胶粘剂进行比较,将其粘合到受龋影响的牙本质(CAD)上。共有 40 颗下颌磨牙,根据 ICDAS 评分 4 和 5,龋进展至牙本质的中三分之一。根据蚀刻和冲洗胶粘剂(ERA)改良组 1:未改良 ERA、组 2:光激活 0.5%RB 光敏剂(PS)改良 ERA、组 3:光激活 RB 掺杂 2wt%TiONPs 胶粘剂、组 4:光激活 RB 掺杂 5wt%TiONPs 胶粘剂将标本分为四组。随后在 CAD 表面进行胶粘剂和复合修复。所有标本均进行热循环,并进行 μTBS 评估和失效模式分析。测试了 RB 和 RB 掺杂 TiONPs(2%和 5%)的抗菌效力,然后使用可见光对其进行激活,以对抗变形链球菌(S.mutans)。使用 Kruskal-Wallis 检验评估 S.mutans 的存活率。分析 μTBS 时使用了 ANOVA,然后进行了事后 Tukey Honestly 显著差异(HSD)多重比较检验。组 1(未改良 ERA)(0.52±0.31 CFU/mL)处理的样本显示出最高的细菌存活平均值和最低的 μTBS(11.32±0.63 MPa)。然而,组 4:光激活 RB 掺杂 5wt%TiO2NPs 胶粘剂显示出最低的 S.mutans 存活结果(0.11±0.02 CFU/mL)和最高的结合强度(18.76±1.45 MPa)。光激活 RB 掺杂 2wt%TiONPs 在胶粘剂中的应用显示出在提高 μTBS 和对 S.mutans 的抗菌效果方面具有广阔的前景。然而,值得注意的是,这种修饰会降低胶粘剂的 DC。研究亮点:未经处理的 ERA 处理的样本显示出最高的细菌存活率和最低的 μTBS。光激活 RB 掺杂 5wt%TiONPs 胶粘剂显示出最低的 S.mutans 存活率和最高的结合强度。随着 TiO 浓度的增加,DC 降低。

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