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用于医疗应用的纳米结构钛-10重量% 45S5生物玻璃-银复合泡沫材料。

Nanostructured Titanium-10 wt% 45S5 Bioglass-Ag Composite Foams for Medical Applications.

作者信息

Jurczyk Karolina, Adamek Grzegorz, Kubicka Marcelina M, Jakubowicz Jaroslaw, Jurczyk Mieczyslaw

机构信息

Department of Conservative Dentistry and Periodontology, Poznan University of Medical Sciences, Bukowska 70 St., 60-812 Poznan, Poland.

Institute of Materials Science and Engineering, Poznan University of Technology, Jana Pawla II 24 St., 61-138 Poznan, Poland.

出版信息

Materials (Basel). 2015 Mar 25;8(4):1398-1412. doi: 10.3390/ma8041398.

Abstract

The article presents an investigation on the effectiveness of nanostructured titanium-10 wt% 45S5 Bioglass-1 wt% Ag composite foams as a novel class of antibacterial materials for medical applications. The Ti-based composite foams were prepared by the combination of mechanical alloying and a "space-holder" sintering process. In the first step, the Ti-10 wt% 45S5 Bioglass-1 wt% Ag powder synthesized by mechanical alloying and annealing mixed with 1.0 mm diameter of saccharose crystals was finally compacted in the form of pellets. In the next step, the saccharose crystals were dissolved in water, leaving open spaces surrounded by metallic-bioceramic scaffold. The sintering of the scaffold leads to foam formation. It was found that 1:1 Ti-10 wt% 45S5 Bioglass-1 wt% Ag/sugar ratio leads to porosities of about 70% with pore diameter of about 0.3-1.1 mm. The microstructure, corrosion resistance in Ringer's solution of the produced foams were investigated. The value of the compression strength for the Ti-10 wt% 45S5 Bioglass-1 wt% Ag foam with 70% porosity was 1.5 MPa and the Young's modulus was 34 MPa. Silver modified Ti-10 wt% 45S5 Bioglass composites possess excellent antibacterial activities against . Porous Ti-10 wt% 45S5 Bioglass-1 wt% foam could be a possible candidate for medical implants applications.

摘要

本文介绍了一种纳米结构的钛-10 wt% 45S5生物玻璃-1 wt%银复合泡沫作为一类新型医用抗菌材料有效性的研究。通过机械合金化和“空间保持器”烧结工艺相结合制备了钛基复合泡沫。第一步,将通过机械合金化和退火合成的钛-10 wt% 45S5生物玻璃-1 wt%银粉末与直径1.0毫米的蔗糖晶体混合,最终压制成颗粒形式。第二步,蔗糖晶体溶解于水中,留下由金属-生物陶瓷支架包围的开放空间。支架烧结导致泡沫形成。发现钛-10 wt% 45S5生物玻璃-1 wt%银/糖比例为1:1时,孔隙率约为70%,孔径约为0.3 - 1.1毫米。研究了所制备泡沫的微观结构及其在林格氏溶液中的耐腐蚀性。孔隙率为70%的钛-10 wt% 45S5生物玻璃-1 wt%银泡沫的抗压强度值为1.5兆帕,杨氏模量为34兆帕。银改性的钛-10 wt% 45S5生物玻璃复合材料对……具有优异的抗菌活性。多孔钛-10 wt% 45S5生物玻璃-1 wt%泡沫可能是医用植入物应用的一个候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdac/5507049/d387865b1045/materials-08-01398-g001.jpg

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