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基于二氧化钛纳米管的纳米技术应用于高粘度传统玻璃离子水门汀:超微结构分析与物理化学表征

TiO nanotube-based nanotechnology applied to high-viscosity conventional glass-ionomer cement: ultrastructural analyses and physicochemical characterization.

作者信息

Kantovitz Kamila Rosamilia, Carlos Natália Russo, Silva Ivania Aparecida Pimenta Santos, Braido Caroline, Costa Bruna Carolina, Kitagawa Igor Lebedenco, Nociti-Jr Francisco Humberto, Basting Roberta Tarkany, de Figueiredo Francine Kuhl Panzarella, Lisboa-Filho Paulo Noronha

机构信息

Faculdade São Leopoldo, SLMANDIC, Rua José Rocha Junqueira, 13, Campinas, SP, 13045-755, Brazil.

Pediatric Division, Department of Health Sciences, Orthodontics and Pediatric Dentistry, Piracicaba Dental School, University of Campinas, UNICAMP, Piracicaba, SP, Brazil.

出版信息

Odontology. 2023 Oct;111(4):916-928. doi: 10.1007/s10266-023-00799-9. Epub 2023 Mar 14.

Abstract

This study characterized TiO nanotube (TiO-nt) ultrastructure and morphology, and the physicochemical impact on high-viscosity conventional glass-ionomer cement (GIC). TiO-nt was synthesized by the alkaline method (n = 3), assessed by scanning (SEM) and transmission electron microscope (TEM), and was added (3%, 5%, 7%-in weight) to KM (Ketac Molar EasyMix™). Analyses included: SEM; Energy-dispersive spectroscopy (EDS); Raman spectroscopy (RAMAN); Setting time with Gillmore needles (ST); Color (Co); Radiopacity (XR); Water sorption (WS); and solubility (SO). Quantitative data were submitted to ANOVA and Tukey's tests (chr = 0.05). External and internal TiO-nt diameters were 11 ± 2 nm and 6 ± 0 nm, respectively. Data analyses showed: (i) TiO-nt present into KM matrix, with a concentration-dependent increase of Ti levels into KM, (ii) physical interaction between KM and TiO-nt, (iii) longer initial ST for the 7% group compared to KM and 3% groups (p ≤ 0.01), (iv) decreased luminosity and yellowness for the 5% and 7% groups, (v) 36% greater radiopacity for the 5% group compared to enamel, dentin, and KM, and (vi) lower SO values for the 5% group, with no significant differences on WS across the groups. TiO-nt displayed physical interaction with KM matrix, and also modified SO, XR and Co, without affecting ST. This study provides information on the potential impact of TiO-nt on GIC performance. TiO-nt may be proposed to boost confidence among dental surgeons in terms of GIC's handling characteristics, success rate and differential diagnostic.

摘要

本研究对二氧化钛纳米管(TiO-nt)的超微结构和形态进行了表征,并研究了其对高粘度传统玻璃离子水门汀(GIC)的物理化学影响。采用碱性方法合成了TiO-nt(n = 3),通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)进行评估,并将其(按重量计3%、5%、7%)添加到KM(Ketac Molar EasyMix™)中。分析内容包括:SEM;能量色散光谱(EDS);拉曼光谱(RAMAN);使用吉尔摩针测定凝固时间(ST);颜色(Co);射线不透性(XR);吸水率(WS);以及溶解度(SO)。定量数据采用方差分析和Tukey检验(α = 0.05)。TiO-nt的外部和内部直径分别为11±2 nm和6±0 nm。数据分析表明:(i)TiO-nt存在于KM基质中,KM中Ti含量随浓度增加,(ii)KM与TiO-nt之间存在物理相互作用,(iii)7%组的初始ST比KM组和3%组更长(p≤0.01),(iv)5%和7%组的亮度和黄度降低,(v)5%组的射线不透性比牙釉质、牙本质和KM高36%,(vi)5%组的SO值较低,各组之间的WS无显著差异。TiO-nt与KM基质表现出物理相互作用,还改变了SO、XR和Co,而不影响ST。本研究提供了TiO-nt对GIC性能潜在影响的信息。可以提出使用TiO-nt来增强牙科医生对GIC操作特性、成功率和鉴别诊断的信心。

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