Compressive strength and fluoride release profile of a glass ionomer cement reinforced with silver-hydroxyapatite-silica hybrid nanoparticles: An in vitro study

IF 1.8 Q2 DENTISTRY, ORAL SURGERY & MEDICINE International Orthodontics Pub Date : 2024-04-12 DOI:10.1016/j.ortho.2024.100871
Elahe Chaychi Raghimi , Nazila Biglar , Somayeh Sadighian , Farzaneh Karamitanha , Aisan Nouri , Azin Nourian
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Abstract

Objectives

This study aimed to prepare a glass ionomer (GI) cement reinforced with silver-hydroxyapatite-silica (Ag/HA/Si) hybrid nanoparticles and assess its compressive strength and fluoride release profile.

Material and methods

In this in vitro, experimental study, 60 cylindrical specimens were fabricated with 4 mm diameter and 6 mm height in 6 groups (n = 10) using BracePaste composite, GC Fuji II LC pure RMGI, and RMGI reinforced with 0.1wt%, 0.5wt%, 1wt%, and 2wt% Ag/HA/Si hybrid nanoparticles. The specimens were subjected to compressive force in a universal testing machine to measure their compressive strength (MPa). To assess their fluoride release profile, discs with 3 mm diameter and 2 mm thickness were fabricated from Fuji II LC pure resin-modified glass ionomer (RMGI), and RMGI with 0.1wt%, 0.5wt%, 1wt%, and 2wt% hybrid nanoparticles, and the concentration of released fluoride was measured by a digital ion-selective electrode. Data were analysed by ANOVA and Scheffe test (alpha = 0.05).

Results

The compressive strength was 114.14 MPa for BracePaste composite, and 97.14, 97.84, 100.65, 109.5, and 89.33 MPa for GI groups with 0%, 0.1%, 0.5%, 1% and 2% hybrid nanoparticles, respectively, with no significant difference among them (P = 0.665). Addition of 1% (0.21 ± 0.07 μg/mL, P = 0.029) and 2% (0.45 ± 0.22 μg/mL, P = 0.000) hybrid nanoparticles to RMGI significantly increased the amount of released fluoride, compared with the control group (0.09 ± 0.03 μg/mL).

Conclusions

Addition of Ag/HA/Si hybrid nanoparticles to RMGI in the tested concentrations had no significant effect on its compressive strength but addition of 1wt% and 2wt% concentrations of Ag/HA/Si hybrid nanoparticles increased its fluoride release potential.

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银-羟基磷灰石-二氧化硅混合纳米粒子增强的玻璃离聚体水泥的抗压强度和氟化物释放曲线:体外研究
目的本研究旨在制备一种用银-羟基磷灰石-二氧化硅(Ag/HA/Si)混合纳米粒子增强的玻璃离聚体(GI)水门汀,并评估其抗压强度和氟化物释放情况。材料和方法在这项体外实验研究中,使用 BracePaste 复合材料、GC Fuji II LC 纯 RMGI 和使用 0.1wt%、0.5wt%、1wt% 和 2wt% Ag/HA/Si 混合纳米粒子增强的 RMGI,分 6 组(n = 10)制作了 60 个直径为 4 毫米、高为 6 毫米的圆柱形试样。试样在万能试验机中受到压缩力,以测量其抗压强度(兆帕)。为了评估它们的氟化物释放情况,用富士 II LC 纯树脂改性玻璃离子聚合物(RMGI)和含有 0.1wt%、0.5wt%、1wt% 和 2wt% 混合纳米粒子的 RMGI 制作了直径为 3 毫米、厚度为 2 毫米的圆盘,并用数字离子选择电极测量了释放的氟化物浓度。结果 BracePaste 复合材料的抗压强度为 114.14 MPa,而添加 0%、0.1%、0.5%、1% 和 2% 混合纳米粒子的 GI 组的抗压强度分别为 97.14、97.84、100.65、109.5 和 89.33 MPa,它们之间没有显著差异(P = 0.665)。与对照组(0.09 ± 0.03 μg/mL)相比,在 RMGI 中添加 1%(0.21 ± 0.07 μg/mL,P = 0.029)和 2%(0.45 ± 0.22 μg/mL,P = 0.000)混合纳米粒子可显著增加氟的释放量。结论在 RMGI 中添加测试浓度的 Ag/HA/Si 混合纳米粒子对其抗压强度没有显著影响,但添加 1wt% 和 2wt% 浓度的 Ag/HA/Si 混合纳米粒子会增加其氟化物释放潜力。
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来源期刊
International Orthodontics
International Orthodontics DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
2.50
自引率
13.30%
发文量
71
审稿时长
26 days
期刊介绍: Une revue de référence dans le domaine de orthodontie et des disciplines frontières Your reference in dentofacial orthopedics International Orthodontics adresse aux orthodontistes, aux dentistes, aux stomatologistes, aux chirurgiens maxillo-faciaux et aux plasticiens de la face, ainsi quà leurs assistant(e)s. International Orthodontics is addressed to orthodontists, dentists, stomatologists, maxillofacial surgeons and facial plastic surgeons, as well as their assistants.
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