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电化学沉积在纳米结构钛上的掺镁或锌羟基磷灰石基涂层的体外表征

In Vitro Characterization of Hydroxyapatite-Based Coatings Doped with Mg or Zn Electrochemically Deposited on Nanostructured Titanium.

作者信息

Vranceanu Diana M, Ungureanu Elena, Ionescu Ionut C, Parau Anca C, Pruna Vasile, Titorencu Irina, Badea Mihaela, Gălbău Cristina-Ștefania, Idomir Mihaela, Dinu Mihaela, Dragomir Alina Vladescu, Cotrut Cosmin M

机构信息

Faculty of Materials Science and Engineering, National University of Science and Technology Politehnica Bucharest, 313 Splaiul Independentei, 060042 Bucharest, Romania.

National Institute of Research and Development for Optoelectronics INOE2000, 409 Atomistilor, 077125 Magurele, Romania.

出版信息

Biomimetics (Basel). 2024 Apr 18;9(4):244. doi: 10.3390/biomimetics9040244.

Abstract

Biomaterials are an important and integrated part of modern medicine, and their development and improvement are essential. The fundamental requirement of a biomaterial is found to be in its interaction with the surrounding environment, with which it must coexist. The aim of this study was to assess the biological characteristics of hydroxyapatite (HAp)-based coatings doped with Mg and Zn ions obtained by the pulsed galvanostatic electrochemical method on the surface of pure titanium (cp-Ti) functionalized with titanium dioxide nanotubes (NTs TiO) obtained by anodic oxidation. The obtained results highlighted that the addition of Zn or Mg into the HAp structure enhances the response of the cp-Ti surface functionalized with NT TiO. The contact angle and surface free energy showed that all the developed surfaces have a hydrophilic character in comparison with the cp-Ti surface. The HAp-based coatings doped with Zn registered superior values than the ones with Mg, in terms of biomineralization, electrochemical behavior, and cell interaction. Overall, it can be said that the addition of Mg or Zn can enhance the behavior of the HAp-based coatings in accordance with clinical requirements. Antibacterial tests showed that the proposed HAp-Mg coatings had no efficiency against Escherichia coli, while the HAp-Zn coatings registered the highest antibacterial efficiency.

摘要

生物材料是现代医学的重要组成部分,其发展和改进至关重要。人们发现生物材料的基本要求在于其与周围环境的相互作用,它必须与周围环境共存。本研究的目的是评估通过脉冲恒电流电化学方法在经阳极氧化获得的二氧化钛纳米管(NTs TiO)功能化的纯钛(cp-Ti)表面上制备的掺杂Mg和Zn离子的羟基磷灰石(HAp)基涂层的生物学特性。所得结果表明,向HAp结构中添加Zn或Mg可增强经NTs TiO功能化的cp-Ti表面的响应。接触角和表面自由能表明,与cp-Ti表面相比,所有制备的表面均具有亲水性。在生物矿化、电化学行为和细胞相互作用方面,掺杂Zn的HAp基涂层的性能优于掺杂Mg的涂层。总体而言,可以说添加Mg或Zn可以根据临床要求增强HAp基涂层的性能。抗菌测试表明,所提出的HAp-Mg涂层对大肠杆菌没有抗菌效果,而HAp-Zn涂层的抗菌效率最高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5ac/11047857/678559bf3d10/biomimetics-09-00244-g001.jpg

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