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生物素与羟基磷灰石对复合涂层生物学性能的比较研究

Comparative Study of Biotin and Hydroxyapatite on Biological Properties of Composite Coating.

作者信息

Hamad Qahtan A, Al-Hasani Fatimah J, Faheed Noor K

机构信息

Materials Engineering Department, University of Technology, Baghdad, Iraq.

Department of Petroleum Engineering, University of Misan, College of Engineering, Misan, Iraq.

出版信息

Int J Biomater. 2022 Sep 26;2022:8802111. doi: 10.1155/2022/8802111. eCollection 2022.

Abstract

The ultimate goal of using biomaterials is to improve human health by restoring the function of natural living tissues and organs in the body. The present work aims to modify the composite coating layer properties by using two different types of bioactive reinforcing materials (biotin and hydroxyapatite) particles in different percentages (5% and 10%). Coatings were applied onto commercially pure Ti, SS 316 L, and SS 304 substrates by the dip-coating method. Characterization of samples includes microstructure observation by field emission scanning electron microscopy (FE-SEM), contact angle measurement (wettability), and MTT. The results show the addition of metallic particles (bioparticles) (hydroxyapatite particles, biotin) at 5 Vol. % improved the whole properties of composite materials. Using different particles' scale size aids to enhance the combinations in the alginate matrix producing a dual effect on composite film properties. In addition, the inclusion of metallic particles has to increase the wettability by reducing the contact angle. At the same time, MTT graphs revealed that after 3 days of exposure in MG-63 cells, 316 L SS alloys' surface following pack adhesion became more active.

摘要

使用生物材料的最终目标是通过恢复体内天然活组织和器官的功能来改善人类健康。目前的工作旨在通过使用两种不同类型的生物活性增强材料(生物素和羟基磷灰石)颗粒,以不同百分比(5%和10%)来改变复合涂层的性能。通过浸涂法将涂层施加到商业纯钛、316L不锈钢和304不锈钢基材上。样品表征包括通过场发射扫描电子显微镜(FE-SEM)进行微观结构观察、接触角测量(润湿性)和MTT。结果表明,添加5体积%的金属颗粒(生物颗粒)(羟基磷灰石颗粒、生物素)可改善复合材料的整体性能。使用不同颗粒的尺寸有助于增强藻酸盐基质中的组合,对复合膜性能产生双重影响。此外,金属颗粒的加入通过减小接触角增加了润湿性。同时,MTT图显示,在MG-63细胞中暴露3天后,316L不锈钢合金表面在细胞附着后变得更加活跃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/366a/9529522/fc3b51262d88/IJBM2022-8802111.001.jpg

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