The Effect of Material Surface Microstructure on the Enhancement of Bone-Bonding Ability of a Hydroxyapatite-Implant by Low-Intensity Pulsed Ultrasound (LIPUS)

M. Kobayashi
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Abstract

Excellent firm bonding between the biomaterials and bone tissue (osseointegration and osteo-conductivity) has been desired for the stability in vivo of dental implants and artificial joints. Much has been learned about this concept, which has led to significant improvements in the design and surface modification of implants in the field of implant dentistry, orthopedic surgery. We have already reported that low-intensity pulsed ultrasound (LIPUS) irradiation can accelerate the bone bonding ability of the bio-conductive materials such as bioactive titanium and hydroxyapatite implant. However, it is still unclear whether the LIPUS could have same effect to different types of the bioactive-materials. Therefore, in this study, the differences of bone-like hydroxyapatite formation on some kind of hydroxyapatite surface in simulated body fluid (SBF) under the LIPUS irradiation were investigated. Two kinds of hydroxyapatite samples immersed in SBF was exposed to ultrasound waves, the bone-like apatite on the surface was analyzed by Scanning electron microscopy and X-ray diffraction. As a result, the enhancement of hydroxyapatite formation on the surface by LIPUS was confirmed, the initial epitaxial nucleation and crystal growth of apatite depended on crystal structure of the surface of matrix materials.
材料表面微结构对低强度脉冲超声(LIPUS)增强羟基磷灰石植入体骨结合能力的影响
生物材料和骨组织之间的良好牢固结合(骨整合和骨传导性)已被期望用于牙科植入物和人工关节的体内稳定性。关于这一概念,人们已经了解了很多,这导致了植入物牙科、整形外科领域植入物的设计和表面改性的显著改进。我们已经报道了低强度脉冲超声(LIPUS)照射可以加速生物活性钛和羟基磷灰石植入物等生物导电材料的骨结合能力。然而,目前尚不清楚LIPUS是否对不同类型的生物活性材料具有相同的效果。因此,在本研究中,研究了LIPUS照射下模拟体液(SBF)中某些羟基磷灰石表面形成骨状羟基磷灰石的差异。将两种浸泡在SBF中的羟基磷灰石样品暴露于超声波中,通过扫描电子显微镜和X射线衍射对表面的骨状磷灰石进行分析。结果证实,LIPUS增强了羟基磷灰石在表面的形成,磷灰石的初始外延成核和晶体生长取决于基体材料表面的晶体结构。
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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