首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Elastomeric biocomposite of silver-containing mesoporous bioactive glass and poly(1,8-octanediol citrate): Physiochemistry and in vitro antibacterial capacity in tissue engineering applications
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Elastomeric biocomposite of silver-containing mesoporous bioactive glass and poly(1,8-octanediol citrate): Physiochemistry and in vitro antibacterial capacity in tissue engineering applications

机译:银含银介孔生物活性玻璃和聚(1,8-辛醇柠檬酸盐)的弹性生物复合材料:组织工程应用中的物理化学和体外抗菌能力

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摘要

A novel series of silver-doped mesoporous bioactive glass/poly(1,8-octanediol citrate) (AgMBG/POC) elastomeric biocomposite scaffolds were successfully constructed by a salt-leaching technique for the first time and the effect of inclusion of different AgMBG contents (5, 10, and 20 wt%) on physicochemical and biological properties of pure POC elastomer was evaluated. Results indicated that AgMBG particles were uniformly dispersed in the POC matrix and increasing the AgMBG concentration into POC matrix up to 20 wt% enhanced thermal behaviour, mechanical properties and water uptake ability of the composite scaffolds compared to those from POC. The 20%AgMBG/POC additionally showed higher degradation rate in Tris(hydroxymethyl)-aminomethane-HCl (Tris-HCl) compared with pure POC and lost about 26% of its initial weight after soaking for 28 days. The AgMBG phase incorporation also significantly endowed the resulting composite scaffolds with efficient antibacterial properties against Escherichia coli and Staphylococcus aureus bacteria while preserving their favorable biocompatibility with soft tissue cells (ie., human dermal fibroblast cells). Taken together, our results suggest that the synergistic effect of both AgMBG and POC make these newly designed AgMBG/POC composite scaffold an attractive candidate for soft tissue engineering applications.
机译:一种新颖的一系列银掺杂的介孔生物活性玻璃/聚(1,8-辛醇柠檬酸盐)(AGMBG / POC)弹性体生物复合支架,首次采用盐浸出技术和包含不同AGMBG含量的效果成功构建(5,10和20wt%)评价纯POC弹性体的物理化学和生物学性质。结果表明,与来自POC的那些,将AgMBG颗粒均匀地分散在POC基质中,并将AgMBG浓度增加到POC基质中的高达20wt%的热行为,机械性能和水吸收能力。与纯POC相比,20%AGMBG / POC在TRIS(羟甲基) - 氨基甲烷-HCl(Tris-HCl)中的降解速率较高,并在浸泡28天后损失其初始重量的约26%。 AGMBG相掺入还显着地赋予所得复合支架,其具有抗大肠杆菌和金黄色葡萄球菌的有效抗菌性能,同时保留其良好的生物相容性与软组织细胞(即人的皮肤成纤维细胞)。我们的结果表明,AGMBG和POC的协同效应使这些新设计的AGMBG / POC复合脚手架是软组织工程应用的有吸引力的候选者。

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