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Comparative evaluation of shear bond strength of nano-hydroxyapatite incorporated glass ionomer cement and conventional glass ionomer cement on dense synthetic hydroxyapatite disk: An in vitro study

机译:纳米羟基磷灰石凝结强度的对比评价纳米 - 离聚物水泥和常规玻璃离聚物水泥对致密合成羟基磷灰石盘:体外研究

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Aim: The aim was to evaluate and compare the shear bond strength of nano-hydroxyapatite (Nano-HAp) incorporated and conventional glass ionomer cement (GIC). Materials and Methods: Nano-HAp GIC was prepared by replacing 8 wt% of GIC powder with nano-HAp powder. Twenty-six HAp disks were used as substrate for bonding and divided into two equal groups. Before bonding the HAp disk was prepared by silicon carbide (no. 2500) followed by 10% polyacrylic acid conditioning. The standardized samples were prepared using split teflon mold on customized bonding jig so as to adhere testing materials to pretreated HAp disk. These samples were stored in distilled water for 24 h at 37°C before bond strength testing. Results: The descriptive statistical analysis and independent samples t-test were used. The nano-HAp incorporated and conventional GIC had the mean shear bond strength of 3.28 ± 0.89 MPa and 5.25 ± 0.88 MPa, respectively. Nano-HAp incorporated GIC had lower shear bond strength with very high level of significance (P Conclusion: The lower shear bond strength of nano-HAp incorporate GIC revealed that the addition of nano-HAp interfered with the bonding ability of GIC to the substrate interface, but the mixed type of failure in nano-HAp incorporated GIC suggests that it increases the strength of the matrix. However, the role of nano-size particles on the micro-size particles of GIC for the bonding mechanism and the ratio and proportions of nano-HAp to the GIC needs further elucidation.
机译:目的:目的是评估并比较纳米羟基磷灰石(纳米HAP)掺入的剪切粘合强度和常规玻璃离聚物水泥(GIC)。材料和方法:通过用纳米Hap粉末替换8wt%的GIC粉末来制备纳米Hap GIC。二十六个HAP盘用作衬底,用于粘合并分为两个相等的组。在粘合之前,通过碳化硅(NO.2500)制备HAP盘,然后进行10%的聚丙烯酸条件。使用分割的Teflon模具在定制的粘合夹具上制备标准化样品,以便将测试材料粘附到预处理的HAP盘中。将这些样品在粘合强度试验之前在37℃下储存在蒸馏水中24小时。结果:使用描述性统计分析和独立样品T检验。纳米Hap掺入和常规的GIC的平均剪切粘合强度分别为3.28±0.89MPa和5.25±0.88MPa。 Nano-Hap Incorporated GIC具有较低的剪切粘合强度,具有非常高的显着性(P结论:纳米Hap的较低剪切粘合强度掺入GIC,揭示了纳米HAP干扰GIC对基板界面的粘合能力但是纳米Hap掺入的GIC中的混合类型的失败表明它增加了基质的强度。然而,纳米尺寸颗粒在粘合机构的微尺寸粒子上的作用和粘合机构的比例和比例纳米HAP对GIC需要进一步阐明。

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