Dental Biomaterials Department, Faculty of Dentistry, Tanta University, Tanta, 31773, Egypt.
Chemistry Department, Faculty of Science, Tanta University, Tanta, 31111, Egypt.
Odontology. 2023 Apr;111(2):328-341. doi: 10.1007/s10266-022-00738-0. Epub 2022 Sep 7.
Glass ionomers (GICs), because of their qualities, are in a good position to be modified to resist masticatory stresses as permanent posterior restoration and prevent recurrent caries. The purpose of the present study was to evaluate the effect of adding quaternized chitosan-coated mesoporous silica nanoparticles (HTCC@MSNs) to conventional GIC on its mechanical properties, antimicrobial activity and fluoride release and the effect of 1- and 3-month water aging on the studied properties. HTCC@MSNs was synthesized, added to commercially available conventional GIC at 1%, 3%, and 5% by weight forming three experimental groups and compared with plain GIC as a control group. Flexural strength, modulus, Vickers microhardness and wear volumes were evaluated. Antibacterial activity was tested against Streptococcus mutans and fluoride release in de-ionized water was measured. All properties were evaluated before and after one- and three-month aging (n = 10 specimens per test/per time). Two-way ANOVA was used for statistical analysis. Characterization confirmed successful preparation of HTCC@MSNs. The flexural strength, modulus, hardness and wear resistance of the GICs improved significantly by adding 1-3% HTCC@MSNs, while 5% HTCC@MSNs group showed no significant difference compared to control group. Bacterial inhibition zones and fluoride release increased proportionally to the amount of filler added. Mechanical properties were improved by artificial aging. Fluoride release values, and bacterial inhibition zones decreased with aging for all groups. HTCC@MSNs as a filler with the optimized proportion provides strengthening and antibacterial effect. In addition, aging is an important factor to be considered in evaluating experimental fillers.
玻璃离子体(GIC)由于其特性,在作为永久性后牙修复体抵抗咀嚼应力和预防继发龋方面具有优势。本研究旨在评估将季铵化壳聚糖包覆的介孔硅纳米粒子(HTCC@MSNs)添加到传统 GIC 中对其机械性能、抗菌活性和氟释放的影响,以及 1 个月和 3 个月水老化对研究性能的影响。合成了 HTCC@MSNs,以 1%、3%和 5%(按重量计)的比例添加到市售的常规 GIC 中,形成三个实验组,并与普通 GIC 作为对照组进行比较。评估了弯曲强度、模量、维氏硬度和磨损体积。测试了对变形链球菌的抗菌活性和去离子水中的氟释放。所有性能均在 1 个月和 3 个月老化前后(每种测试/每种时间的 n = 10 个标本)进行评估。使用双因素方差分析进行统计分析。特性证实成功制备了 HTCC@MSNs。添加 1%-3%的 HTCC@MSNs 可显著提高 GIC 的弯曲强度、模量、硬度和耐磨性,而 5%HTCC@MSNs 组与对照组相比无显著差异。抑菌圈和氟释放量与填料添加量成正比增加。人工老化提高了机械性能。所有组的氟释放值和抑菌圈均随老化而降低。作为填充剂的 HTCC@MSNs 以优化的比例提供了增强和抗菌效果。此外,老化是评估实验性填充剂时需要考虑的一个重要因素。