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羟基磷灰石纳米棒作为新型填充剂改善牙科胶粘剂性能的研究:合成与应用。

Hydroxyapatite nanorods as novel fillers for improving the properties of dental adhesives: Synthesis and application.

机构信息

Iran Polymer and Petrochemical Institute, Tehran, Iran.

出版信息

Dent Mater. 2010 May;26(5):471-82. doi: 10.1016/j.dental.2010.01.005. Epub 2010 Feb 13.

Abstract

OBJECTIVES

This study evaluates the hypothesis that the incorporation of fibrous hydroxyapatite nanoparticles with high crystallinity and high aspect ratio, synthesized by hydrothermal method, into an experimental ethanol-based one-bottle dentin adhesive, improves the mechanical properties of the adhesive layer, and accordingly increases the bond strength to dentin.

METHODS

Hydroxyapatite nanorods were synthesized using a simple hydrothermal procedure. First, the HPO(4)(2)-containing solution was added drop-wise into the Ca(2+)-containing solution while the molar ratio of Ca/P was adjusted at 1.67. The HAp precursor was then treated hydrothermally at 200 degrees C for 60h. The resulting powder was characterized using XRD, FTIR, SEM, TEM, and EDXA. The synthesized HAp nanorods were added to an experimental one-bottle dentin adhesive followed by the characterization of the filled adhesive. The diametral tensile strength, flexural strength, flexural modulus, and the microshear bond strength to the dentin of human premolars of seven adhesive systems containing different nanorod contents were evaluated. The distribution of the filler was determined using EDX-mapping. The depth of cure was also evaluated using scraping technique. Moreover, after microshear testing, the fracture cross-section was observed using SEM to determine the mode of failure involved. The colloidal stability was studied using a separation analyzer and also zeta potential measurement. Data were analyzed using one-way analysis of variance followed by the Tukey test.

RESULTS

The results confirmed the high purity, high crystallinity, and high aspect ratio of synthesized HAp nanorods. The diametral tensile strength of nanorod containing adhesive system appeared to increase when 0.2-0.5wt.% HAp nanorods were incorporated (p<0.05). A similar trend was observed in the flexural test providing higher flexural strength at filler contents of 0.2-0.5wt.% while flexural modulus remained unchanged. The highest microshear bond strength was also obtained at 0.2wt.% filler content (p<0.05). The improved properties of the new adhesive system might be due to the high crystallinity and high aspect ratio of the nanorods. SEM observation of debonded surfaces revealed that most specimens showed an adhesive failure from the adhesive-dentin interface. Energy dispersive X-ray (EDX) mapping confirmed the uniform distribution of nanorods in the adhesive matrix. The colloidal stability studies indicated that synthesized hydroxyapatite nanorods have high colloidal stability in the dental adhesive solution. Indeed, the nanorods are well dispersed and protected from aggregation by their high surface charge confirmed by zeta potential measurement.

SIGNIFICANCE

Hydroxyapatite-based composites have shown promising bioactivity. However, the knowledge about the influence of the nano-sized HAp on the properties of the dental materials, especially dentin bonding adhesives, is yet insufficient. The nanorod containing adhesive system presented here might be considered to have practical applications in dental clinics.

摘要

目的

本研究旨在验证以下假设,即将通过水热法合成的具有高结晶度和高纵横比的纤维状羟基磷灰石纳米粒子掺入到实验性乙醇基单瓶牙本质粘结剂中,可以改善粘结层的机械性能,从而提高对牙本质的粘结强度。

方法

通过简单的水热法合成羟基磷灰石纳米棒。首先,将含有 HPO(4)(2)-的溶液逐滴加入含有 Ca(2+)-的溶液中,同时调整 Ca/P 的摩尔比为 1.67。然后将 HAp 前体在 200°C 下进行水热处理 60 小时。使用 XRD、FTIR、SEM、TEM 和 EDXA 对所得粉末进行表征。将合成的 HAp 纳米棒添加到实验性的单瓶牙本质粘结剂中,然后对填充的粘结剂进行表征。评估了含有不同纳米棒含量的七种粘结剂系统的直径拉伸强度、弯曲强度、弯曲模量和对人前磨牙牙本质的微剪切粘结强度。使用 EDX 映射确定填料的分布。还使用刮削技术评估了固化深度。此外,在微剪切测试后,使用 SEM 观察断裂横截面以确定涉及的失效模式。使用分离分析仪和zeta 电位测量研究胶体稳定性。使用单向方差分析和 Tukey 检验对数据进行分析。

结果

结果证实了合成 HAp 纳米棒的高纯度、高结晶度和高纵横比。当掺入 0.2-0.5wt.% HAp 纳米棒时,含有纳米棒的粘结剂系统的直径拉伸强度似乎增加(p<0.05)。在弯曲试验中也观察到类似的趋势,在 0.2-0.5wt.% 的填料含量下提供了更高的弯曲强度,而弯曲模量保持不变。在 0.2wt.% 填料含量时也获得了最高的微剪切粘结强度(p<0.05)。新粘结剂系统性能的提高可能归因于纳米棒的高结晶度和高纵横比。对脱粘表面的 SEM 观察表明,大多数试样显示出从粘结剂-牙本质界面开始的粘结失效。能量色散 X 射线(EDX)映射证实了纳米棒在粘结剂基质中的均匀分布。胶体稳定性研究表明,在牙本质粘结剂溶液中,合成的羟基磷灰石纳米棒具有高胶体稳定性。实际上,纳米棒通过其高表面电荷得到很好的分散并受到保护,zeta 电位测量证实了其高表面电荷。

意义

基于羟基磷灰石的复合材料已显示出有前景的生物活性。然而,关于纳米级 HAp 对牙科材料(尤其是牙本质粘结剂)性能的影响的知识还不够充分。这里提出的含纳米棒的粘结剂系统可能被认为具有实际的临床应用价值。

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