不同工艺制备钴铬合金的炎症反应

Maria Kassapidou, V. Stenport, C. Johansson, Anna-Karin Östberg, P. Johansson, L. Hjalmarsson
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引用次数: 2

摘要

【摘要】目的探讨不同工艺制备的钴铬合金对人外周血单个核细胞细胞因子体外表达的影响,并与4级纯钛和23级钛合金进行比较。材料与方法采集10名健康献血者外周血单个核细胞(PBMC),并将其暴露于机器研磨的硬币形:(a)钴铬(Co-Cr)标本(n = 5),采用铸造、铣削、激光熔化和预压铣削四种技术制造;(b) 4级商业纯钛;(三)23级钛合金。细胞分别培养4、24和72小时,然后使用Bio-Plex pro™检测促炎性和抗炎性细胞因子的释放。结果一般来说,与激光熔化、铣削和钛材料相比,铸态和预烧结的Co-Cr材料暴露在PBMC中产生了更多的细胞因子。在本研究的限制范围内,可能表明铸造和预烧结钴铬合金比铣削和激光熔化的钴铬合金和钛材料引起更强的炎症反应。
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Inflammatory Response to Cobalt-Chromium Alloys Fabricated With Different Techniques
ABSTRACT Objectives To explore the in vitro cytokine expression of human peripheral blood mononuclear cells exposed to cobalt-chromium alloys, manufactured with different techniques, in comparison with commercially pure titanium grade 4 and titanium alloy grade 23. Material and Methods Peripheral blood mononuclear cells (PBMC) were collected from 10 healthy blood donors and exposed to machine-ground coin-shaped: (a) cobalt-chromium (Co-Cr) specimens (n = 5) manufactured by four techniques, i.e. cast, milled, laser melted and presintered milled; (b) commercially pure titanium grade 4; and (c) titanium alloy grade 23. The cells were cultured for 4, 24 and 72 hours followed by investigations of pro- and anti-inflammatory cytokine release using Bio-Plex Pro™. Results In general, the PBMC produced significantly more cytokines when exposed to the cast and presintered milled Co-Cr materials compared to laser melted, milled Co-Cr and titanium materials. Conclusions Within the limitation of the present study, it may be suggested that cast and presintered milled cobalt-chromium alloys provoke a stronger inflammatory response compared to milled and laser melted cobalt-chromium alloys and titanium materials.
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