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电辅助钛植入物的表面表征:一种多技术方法。

Surface Characterization of Electro-Assisted Titanium Implants: A Multi-Technique Approach.

作者信息

Cometa Stefania, Bonifacio Maria A, Ferreira Ana M, Gentile Piergiorgio, De Giglio Elvira

机构信息

Jaber Innovation s.r.l., 00144 Rome, Italy.

Department of Chemistry, University of Bari "Aldo Moro", 70126 Bari, Italy.

出版信息

Materials (Basel). 2020 Feb 5;13(3):705. doi: 10.3390/ma13030705.

Abstract

The understanding of chemical-physical, morphological, and mechanical properties of polymer coatings is a crucial preliminary step for further biological evaluation of the processes occurring on the coatings' surface. Several studies have demonstrated how surface properties play a key role in the interactions between biomolecules (e.g., proteins, cells, extracellular matrix, and biological fluids) and titanium, such as chemical composition (investigated by means of XPS, TOF-SIMS, and ATR-FTIR), morphology (SEM-EDX), roughness (AFM), thickness (Ellipsometry), wettability (CA), solution-surface interactions (QCM-D), and mechanical features (hardness, elastic modulus, adhesion, and fatigue strength). In this review, we report an overview of the main analytical and mechanical methods commonly used to characterize polymer-based coatings deposited on titanium implants by electro-assisted techniques. A description of the relevance and shortcomings of each technique is described, in order to provide suitable information for the design and characterization of advanced coatings or for the optimization of the existing ones.

摘要

了解聚合物涂层的化学物理、形态和机械性能是对涂层表面发生的过程进行进一步生物学评估的关键初步步骤。多项研究表明,表面性质在生物分子(如蛋白质、细胞、细胞外基质和生物流体)与钛之间的相互作用中起着关键作用,例如化学成分(通过XPS、TOF-SIMS和ATR-FTIR进行研究)、形态(SEM-EDX)、粗糙度(AFM)、厚度(椭偏仪)、润湿性(接触角)、溶液-表面相互作用(石英晶体微天平-耗散监测技术)以及机械特性(硬度、弹性模量、附着力和疲劳强度)。在本综述中,我们概述了常用于表征通过电辅助技术沉积在钛植入物上的聚合物基涂层的主要分析和机械方法。描述了每种技术的相关性和缺点,以便为先进涂层的设计和表征或现有涂层的优化提供合适的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02c9/7040792/a8d834bda003/materials-13-00705-g001.jpg

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