Khan Aftab Ahmed, Bari Ahmed, Abdullah Al-Kheraif Abdulaziz, Alsunbul Hanan, Alhaidry Hind, Alharthi Rasha, Aldegheishem Alhanoof
Dental Biomaterials Research Chair, Dental Health Department, College of Applied Medical Sciences, King Saud University, Riyadh 11451, Saudi Arabia.
Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Polymers (Basel). 2023 Jun 14;15(12):2679. doi: 10.3390/polym15122679.
This laboratory investigation aimed to synthesize and characterize micron-sized Gum Arabic (GA) powder and incorporate it in commercially available GIC luting formulation for enhanced physical and mechanical properties of GIC composite. Oxidation of GA was performed and GA-reinforced GIC in 0.5, 1.0, 2.0, 4.0 & 8.0 wt.% formulations were prepared in disc-shaped using two commercially available GIC luting materials (Medicem and Ketac Cem Radiopaque). While the control groups of both materials were prepared as such. The effect of reinforcement was evaluated in terms of nano hardness, elastic modulus, diametral tensile strength (DTS), compressive strength (CS), water solubility and sorption. Two-way ANOVA and post hoc tests were used to analyze data for statistical significance ( < 0.05). FTIR spectrum confirmed the formation of acid groups in the backbone of polysaccharide chain of GA while XRD peaks confirmed that crystallinity of oxidized GA. The experimental group with 0.5 wt.% GA in GIC enhanced the nano hardness while 0.5 wt.% and 1.0 wt.% GA in GIC increased the elastic modulus compared to the control. The CS of 0.5 wt.% GA in GIC and DTS of 0.5 wt.% and 1.0 wt.% GA in GIC demonstrated elevation. In contrast, the water solubility and sorption of all the experimental groups increased compared to the control groups. The incorporation of lower weight ratios of oxidized GA powder in GIC formulation helps in enhancing the mechanical properties with a slight increase in water solubility and sorption parameters. The addition of micron-sized oxidized GA in GIC formulation is promising and needs further research for improved performance of GIC luting composition.
本实验室研究旨在合成并表征微米级阿拉伯树胶(GA)粉末,并将其掺入市售玻璃离子水门汀(GIC)粘结配方中,以增强GIC复合材料的物理和机械性能。对GA进行了氧化处理,并使用两种市售GIC粘结材料(Medicem和Ketac Cem Radiopaque),以盘状制备了0.5、1.0、2.0、4.0和8.0 wt.%配方的GA增强GIC。同时按原样制备了两种材料的对照组。从纳米硬度、弹性模量、径向拉伸强度(DTS)、抗压强度(CS)、水溶性和吸附性方面评估增强效果。使用双向方差分析和事后检验分析数据的统计学显著性(<0.05)。傅里叶变换红外光谱(FTIR)证实了GA多糖链主链中酸性基团的形成,而X射线衍射(XRD)峰证实了氧化GA的结晶度。与对照组相比,GIC中含0.5 wt.% GA的实验组提高了纳米硬度,GIC中含0.5 wt.%和1.0 wt.% GA的实验组提高了弹性模量。GIC中含0.5 wt.% GA的CS以及GIC中含0.5 wt.%和1.0 wt.% GA的DTS均有所提高。相比之下,所有实验组的水溶性和吸附性均高于对照组。在GIC配方中加入较低重量比的氧化GA粉末有助于提高机械性能,同时水溶性和吸附参数略有增加。在GIC配方中添加微米级氧化GA很有前景,需要进一步研究以改善GIC粘结组合物的性能。