Rupp Frank, Gittens Rolando A, Scheideler Lutz, Marmur Abraham, Boyan Barbara D, Schwartz Zvi, Geis-Gerstorfer Jürgen
Department of Prosthetic Dentistry, Section Medical Materials and Technology, University Hospital Tübingen, Tübingen, Germany.
Center for Biodiversity & Drug Discovery, Institute for Scientific Research and High Technology Services (INDICASAT-AIP), Panama, Panama.
Acta Biomater. 2014 Jul;10(7):2894-906. doi: 10.1016/j.actbio.2014.02.040. Epub 2014 Feb 28.
The surface wettability of biomaterials determines the biological cascade of events at the biomaterial/host interface. Wettability is modulated by surface characteristics, such as surface chemistry and surface topography. However, the design of current implant surfaces focuses mainly on specific micro- and nanotopographical features, and is still far from predicting the concomitant wetting behavior. There is an increasing interest in understanding the wetting mechanisms of implant surfaces and the role of wettability in the biological response at the implant/bone or implant/soft tissue interface. Fundamental knowledge related to the influence of surface roughness (i.e. a quantification of surface topography) on titanium and titanium alloy surface wettability, and the different associated wetting regimes, can improve our understanding of the role of wettability of rough implant surfaces on the biological outcome. Such an approach has been applied to biomaterial surfaces only in a limited way. Focusing on titanium dental and orthopaedic implants, the present study reviews the current knowledge on the wettability of biomaterial surfaces, encompassing basic and applied aspects that include measurement techniques, thermodynamic aspects of wetting and models predicting topographical and roughness effects on the wetting behavior.
生物材料的表面润湿性决定了生物材料/宿主界面处的生物事件级联反应。润湿性由表面特性调节,如表面化学和表面形貌。然而,当前植入物表面的设计主要集中在特定的微观和纳米拓扑特征上,距离预测随之而来的润湿行为仍有很大差距。人们越来越关注理解植入物表面的润湿机制以及润湿性在植入物/骨或植入物/软组织界面处生物反应中的作用。与表面粗糙度(即表面形貌的量化)对钛及钛合金表面润湿性的影响以及不同相关润湿状态相关的基础知识,可以增进我们对粗糙植入物表面润湿性在生物学结果中作用的理解。这种方法仅在有限程度上应用于生物材料表面。本研究聚焦于牙科和骨科用钛植入物,回顾了生物材料表面润湿性的现有知识,涵盖了包括测量技术、润湿的热力学方面以及预测形貌和粗糙度对润湿行为影响的模型等基础和应用方面。