Oshida Yoshiki, Tuna Elif B, Aktören Oya, Gençay Koray
Department of Mechanical and Aerospace Engineering, Syracuse University, NY 13244, USA.
Int J Mol Sci. 2010 Apr 12;11(4):1580-678. doi: 10.3390/ijms11041580.
Among various dental materials and their successful applications, a dental implant is a good example of the integrated system of science and technology involved in multiple disciplines including surface chemistry and physics, biomechanics, from macro-scale to nano-scale manufacturing technologies and surface engineering. As many other dental materials and devices, there are crucial requirements taken upon on dental implants systems, since surface of dental implants is directly in contact with vital hard/soft tissue and is subjected to chemical as well as mechanical bio-environments. Such requirements should, at least, include biological compatibility, mechanical compatibility, and morphological compatibility to surrounding vital tissues. In this review, based on carefully selected about 500 published articles, these requirements plus MRI compatibility are firstly reviewed, followed by surface texturing methods in details. Normally dental implants are placed to lost tooth/teeth location(s) in adult patients whose skeleton and bony growth have already completed. However, there are some controversial issues for placing dental implants in growing patients. This point has been, in most of dental articles, overlooked. This review, therefore, throws a deliberate sight on this point. Concluding this review, we are proposing a novel implant system that integrates materials science and up-dated surface technology to improve dental implant systems exhibiting bio- and mechano-functionalities.
在各种牙科材料及其成功应用中,牙种植体是一个涉及多学科的科技集成系统的典范,这些学科包括从宏观尺度到纳米尺度的制造技术和表面工程的表面化学与物理、生物力学。与许多其他牙科材料和器械一样,牙种植体系统有一些关键要求,因为牙种植体的表面直接与重要的硬/软组织接触,并受到化学和机械生物环境的影响。这些要求至少应包括与周围重要组织的生物相容性、机械相容性和形态相容性。在本综述中,基于精心挑选的约500篇已发表文章,首先对这些要求以及磁共振成像(MRI)相容性进行综述,随后详细介绍表面纹理化方法。通常,牙种植体植入成年患者已缺失牙齿的位置,这些患者的骨骼和骨生长已经完成。然而,在生长发育期患者中植入牙种植体存在一些有争议的问题。在大多数牙科文章中,这一点都被忽视了。因此,本综述特意关注了这一点。在本综述的结尾,我们提出了一种新型种植体系统,该系统整合了材料科学和最新的表面技术,以改进具有生物和机械功能的牙种植体系统。