羟基磷灰石晶体纳米颗粒在Y-TZP陶瓷上的沉积:一种增强Y-TZP陶瓷键合特性的潜在解决方案。

Abbas Azari, Sakineh Nikzad Jamnani, Arash Yazdani, Faezeh Atri, Vania Rasaie, Abbas Fazel Anvari Yazdi
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摘要

目的:氧化锆陶瓷在力学和物理性能方面具有许多优点;然而,这种材料与牙齿结构和/或贴面陶瓷的结合能力一直是人们关注的问题。另一方面,羟基磷灰石(HA)具有良好的生物相容性和与牙齿结构的良好结合能力,但具有机械不稳定和脆性的特点,在临床上不适合用于高应力承载区域。本研究的主要目的是介绍两种简单实用的方法在氧化锆陶瓷上沉积结晶透明质酸纳米颗粒。材料与方法:采用热镀膜和空气研磨两种不同的沉积方法对氧化锆块进行HA处理。采用扫描电镜、能谱仪(EDS)和x射线衍射仪(XRD)对样品进行分析。结果:在两组中,所使用的沉积技术都成功完成,而衬底没有出现结构变化。热涂层组的HA结晶沉积均匀,而空气磨损组的HA呈分散的薄岛状。结论:热涂层法有可能显著改变氧化锆的表面特性。所提出的方法的简单而实用的性质可能能够改变牙科氧化锆陶瓷的键合范式。后一个问题需要在今后的调查中加以解决。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Deposition of Crystalline Hydroxyapatite Nanoparticles on Y-TZP Ceramic: A Potential Solution to Enhance Bonding Characteristics of Y-TZP Ceramics.

Objectives: Many advantages have been attributed to dental zirconia ceramics in terms of mechanical and physical properties; however, the bonding ability of this material to dental structure and/or veneering ceramics has always been a matter of concern. On the other hand, hydroxyapatite (HA) shows excellent biocompatibility and good bonding ability to tooth structure, with mechanically unstable and brittle characteristics, that make it clinically unacceptable for use in high stress bearing areas. The main purpose of this study was to introduce two simple yet practical methods to deposit the crystalline HA nanoparticles on zirconia ceramics.

Materials and methods: zirconia blocks were treated with HA via two different deposition methods namely thermal coating and air abrasion. Specimens were analyzed by scanning electron microscopy, energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD).

Results: In both groups, the deposition techniques used were successfully accomplished, while the substrate showed no structural change. However, thermal coating group showed a uniform deposition of crystalline HA but in air abrasion method, there were dispersed thin islands of HA.

Conclusions: Thermal coating method has the potential to significantly alter the surface characteristics of zirconia. The simple yet practical nature of the proposed method may be able to shift the bonding paradigm of dental zirconia ceramics. This latter subject needs to be addressed in future investigations.

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