Felemban Nayef H, Ebrahim Mohamed I
Orthodontic department, Faculty of Dentistry, Taif University, Taif, Saudi Arabia.
, P.O.B. 4302, Makkah, 21955, Saudi Arabia.
BMC Oral Health. 2017 Jan 13;17(1):43. doi: 10.1186/s12903-017-0332-2.
The purpose of this in-vitro study was to examine the effect of incorporating different concentrations of Zirconium oxide-Titanium dioxide (ZrO2-TiO2) nanoparticles, which can have antibacterial properties, on the mechanical properties of an orthodontic adhesive.
ZrO2-TiO2 (Zirconium oxide, HWNANO, Hongwu International Group Ltd, China) -Titanium dioxide, Nanoshell, USA) nanopowder were incorporated into orthodontic adhesive (Transbond XT, 3 M Unitek, Monrovia, USA) with different concentrations (0.5% weight nonofiller and 1% weight nanofiller). The size of nanoparticle was 70-80 nm for ZrO2 and less than 50 nm for TiO2. For measuring the shear bond strength of the three groups of orthodontic adhesives [Transbond (control), Transbond mixed with 0.5% weight ZrO2-TiO2, and Transbond mixed with 1% weight ZrO2-TiO2], 30 freshly extracted human first premolars were used and bonded with stainless steel metal brackets (Dentaurum®, Discovery®, Deutschland), using the 3 orthodontic adhesives and 3 M Unitek; Transbond TM Plus Self-Etching Primer (10 samples in each group). The recorded values of compressive strength and tensile strength (measured separately on 10 samples of orthodontic adhesives (add the 3 D size of sample, light cured for 40 s on both sides) of each orthodontic adhesives), as well as the shear bond strength in Mega Pascal unit (MPa) were collected and exposed to one-way analysis of variance (ANOVA) and Tukey's post-hoc tests.
orthodontic adhesive with 1% weight ZrO2-TiO2 showed the highest mean compressive (73.42 ± 1.55 MPa, p: 0.003, F: 12.74), tensile strength (8.65 ± 0.74 MPa, p: 0.001, F: 68.20), and shear bond strength (20.05 ± 0.2 MPa, p: 0.001, F: 0.17).
Adding ZrO2-TiO2 nanoparticle to orthodontic adhesive increased compressive strength, tensile strength, and shear bond strength in vitro, but in vivo studies and randomized clinical trials are needed to validate the present findings.
本体外研究的目的是检验添加不同浓度具有抗菌性能的氧化锆 - 二氧化钛(ZrO₂ - TiO₂)纳米颗粒对正畸胶粘剂力学性能的影响。
将ZrO₂ - TiO₂(氧化锆,中国洪武国际集团有限公司HWNANO;二氧化钛,美国Nanoshell)纳米粉末以不同浓度(0.5%重量纳米填料和1%重量纳米填料)添加到正畸胶粘剂(Transbond XT,美国3M Unitek公司,蒙罗维亚)中。ZrO₂纳米颗粒尺寸为70 - 80nm,TiO₂纳米颗粒尺寸小于50nm。为测量三组正畸胶粘剂[Transbond(对照组)、与0.5%重量ZrO₂ - TiO₂混合的Transbond、与1%重量ZrO₂ - TiO₂混合的Transbond]的剪切粘结强度,使用30颗新鲜拔除的人类第一前磨牙,并用3种正畸胶粘剂和3M Unitek公司的Transbond TM Plus自酸蚀底漆粘结不锈钢金属托槽(德国Dentaurum® Discovery®)(每组10个样本)。记录每组正畸胶粘剂(在正畸胶粘剂的10个样本上分别测量(加上样本的三维尺寸,两侧光固化40秒))的抗压强度和抗拉强度值,以及以兆帕斯卡(MPa)为单位的剪切粘结强度,并进行单因素方差分析(ANOVA)和Tukey事后检验。
含1%重量ZrO₂ - TiO₂的正畸胶粘剂显示出最高的平均抗压强度(73.42±1.55MPa,p:0.003,F:12.74)、抗拉强度(8.65±0.74MPa,p:0.001,F:68.20)和剪切粘结强度(20.05±0.2MPa,p:0.001,F:0.17)。
在正畸胶粘剂中添加ZrO₂ - TiO₂纳米颗粒可在体外提高抗压强度、抗拉强度和剪切粘结强度,但需要进行体内研究和随机临床试验来验证本研究结果。