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首页> 外文期刊>Biomaterials Science >Nanosilver-loaded PMMA bone cement doped with different bioactive glasses - evaluation of cytocompatibility, antibacterial activity, and mechanical properties
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Nanosilver-loaded PMMA bone cement doped with different bioactive glasses - evaluation of cytocompatibility, antibacterial activity, and mechanical properties

机译:纳米玻璃PMMA骨水泥掺杂有不同的生物活性玻璃 - 评价细胞偶联,抗菌活性和机械性能

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摘要

Nanosilver-loaded PMMA bone cement (BC-AgNp) is a novel cement developed as a replacement for conventional cements. Despite its favorable properties and antibacterial activity, BC-AgNp still lacks biodegradability and bioactivity. Hence, we investigated doping with bioactive glasses (BGs) to create a new bioactive BC characterized by time-varying porosity and gradual release of AgNp. The BC Cemex was used as the base material and modified simultaneously with the AgNp and BGs: melted 45S5 and 13- 93B3 glasses with various particle sizes and sol-gel derived SiO_2/CaO microparticles. The effect of BG addition was examined by microscopic analysis, an assessment of setting parameters, wettability, FTIR and UV-VIS spectroscopy, mechanical testing, and hemo- and cytocompatibility and antibacterial efficiency studies. The results show that it is possible to incorporate various BGs into BC-AgNp, which leads to different properties depending on the type and size of BGs. The smaller particles of melted BGs showed higher porosity and better antibacterial properties with the moderate deterioration of mechanical properties. The sol-gel derived BGs, however, displayed a tendency for agglomeration and random distribution in BC-AgNp. The BGs with greater solubility more efficiently improve the antibacterial properties of BC-AgNp. Besides, the unreacted MMA monomer release could negatively influence the cellular response. Despite that, cements doped with different BGs are suitable for medical applications.
机译:纳米单体加载的PMMA骨水泥(BC-AGNP)是一种像常规水泥的替代品一样开发的新型水泥。尽管其特性和抗菌活性有利,但BC-AgNP仍然缺乏生物降解性和生物活性。因此,我们研究了生物活性玻璃(BGS)掺杂,以产生新的生物活性BC,其特征在于时变孔隙率和AGNP的逐渐释放。使用BC CEMEX作为基础材料,并与AgNP和BGS同时进行改性:熔化45s5和13-93b3玻璃,具有各种颗粒尺寸和溶胶 - 凝胶衍生的SiO_2 / CaO微粒。通过微观分析检查BG添加的效果,评估设定参数,润湿性,FTIR和UV-VIS光谱,机械测试和血液和细胞组分和抗菌效率研究。结果表明,可以将各种BGS掺入BC-AGNP,这取决于BGS的类型和尺寸,导致不同的性质。较小的熔化BG颗粒显示出更高的孔隙率和更好的抗菌性能,具有适度的机械性能劣化。然而,溶胶 - 凝胶衍生的BGS显示了BC-AGNP中的聚集和随机分布的趋势。 BGS具有更大的溶解度,更有效地改善了BC-AGNP的抗菌性质。此外,未反应的MMA单体释放可能会对细胞反应产生负面影响。尽管如此,掺杂有不同BG的水泥适用于医疗应用。

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  • 来源
    《Biomaterials Science》 |2021年第8期|共15页
  • 作者单位

    Department of Biomaterials Technology Faculty of Mechanical Engineering and Ship Technology Gdansk University of Technology Gdansk Poland;

    Centre for Functional and Surface Functionalized Glass TnU AD Trencin Slovakia;

    Department of Chemistry of Biomaterials and Cosmetics Faculty of Chemistry Nicolaus Copernicus University in Torun Torun Poland;

    Faculty of Applied Physics and Mathematics Gdansk University of Technology Gdansk Poland;

    Department of Biology and Cell Imaging Institute of Zoology and Biomedical Research Faculty of Biology Jagiellonian University Krakow Poland;

    Department of Laboratory Diagnostics and Microbiology with Blood Bank Specialist Hospital in Koscierzyna Koscierzyna Poland;

    Chair of Clinical Biochemistry Department of Laboratory Medicine Medical University of Gdansk Gdansk Poland;

    Department of Biology and Cell Imaging Institute of Zoology and Biomedical Research Faculty of Biology Jagiellonian University Krakow Poland;

    Centre for Functional and Surface Functionalized Glass TnU AD Trencin Slovakia;

    Department of Biomaterials Technology Faculty of Mechanical Engineering and Ship Technology Gdansk University of Technology Gdansk Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;
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