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In vitro interactions of blood, platelet, and fibroblast with biodegradable magnesium-zinc-strontium alloys

机译:血液,血小板和成纤维细胞与可生物降解的镁锌锶合金的体外相互作用

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Magnesium (Mg) alloy is an attractive class of metallic biomaterial for cardiovascular applications due to its biodegradability and mechanical properties. In this study, we investigated the degradation in blood, thrombogenicity, and cytocompatibility of Magnesium-Zinc-Strontium (Mg-Zn-Sr) alloys, specifically four Mg-4 wt % Zn-xSr (x=0.15, 0.5, 1, and 1.5 wt %) alloys, together with pure Mg control and relevant reference materials for cardiovascular applications. Human whole blood and platelet rich plasma (PRP) were used as the incubation media to investigate the degradation behavior of the Mg-Zn-Sr alloys. The results showed that the PRP had a greater pH increase and greater concentration of Mg2+ ions when compared with whole blood after 2 h of incubation with the same respective Mg alloys, suggesting that the Mg alloys degraded faster in PRP than in whole blood. The Mg alloy with 4 wt % Zn and 0.15 wt % Sr (named as ZSr41A) was identified as the most promising alloy for cardiovascular stent applications, because it showed slower degradation and less thrombogenicity, as indicated by the lower concentrations of Mg2+ ions released and less deposition of platelets. Additionally, ZSr41 alloys were cytocompatible with fibroblasts in direct exposure culture in which the cells adhered and proliferated around the samples, with no statistical difference in cell adhesion density compared with the blank reference. Future studies on the ZSr41 alloys are necessary to investigate their direct interactions with other important cells in cardiovascular system, such as vascular endothelial cells and smooth muscle cells. (C) 2015 Wiley Periodicals, Inc.
机译:镁(Mg)合金由于其生物可降解性和机械性能而成为一类吸引人的心血管生物金属材料。在这项研究中,我们研究了镁-锌-锶(Mg-Zn-Sr)合金,特别是四种Mg-4 wt%Zn-xSr(x = 0.15、0.5、1和4)的血液降解,血栓形成和细胞相容性。 1.5 wt%)合金,以及纯Mg控制和有关心血管应用的相关参考材料。以人类全血和富含血小板的血浆(PRP)作为孵育介质,以研究Mg-Zn-Sr合金的降解行为。结果表明,与相同的各自的Mg合金一起孵育2小时后,与全血相比,PRP具有更大的pH升高和更高的Mg2 +离子浓度,这表明PRP中的Mg合金降解速度比全血中快。具有4 wt%的Zn和0.15 wt%的Sr的Mg合金(命名为ZSr41A)被认为是最有前途的心血管支架应用合金,因为它显示出较慢的降解和较低的血栓形成性,这表现为较低的Mg2 +离子释放浓度和血小板沉积少。此外,ZSr41合金在直接暴露培养中与成纤维细胞具有细胞相容性,其中细胞在样品周围粘附并增殖,与空白对照相比,细胞粘附密度无统计学差异。 ZSr41合金的未来研究对于研究其与心血管系统中其他重要细胞(如血管内皮细胞和平滑肌细胞)的直接相互作用非常必要。 (C)2015威利期刊公司

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