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首页> 外文期刊>Journal of Materials Science >Bioactive glass containing silicone composites for left ventricular assist device drivelines: role of Bioglass 45S5 (R) particle size on mechanical properties and cytocompatibility
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Bioactive glass containing silicone composites for left ventricular assist device drivelines: role of Bioglass 45S5 (R) particle size on mechanical properties and cytocompatibility

机译:含有硅氧烷复合材料的生物活性玻璃,用于左心室辅助装置驱动:生物胶45s5(R)粒度对机械性能和细胞相容性的作用

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摘要

Aside its historical use in contact with bone and teeth, an increasing number of studies use bioactive glasses (BG) in contact with soft tissue. BG could provide solutions for various medical problems. This study presents a first evaluation, whether BG containing silicone elastomers are a suitable material for left ventricular assist device drivelines and could enhance skin biointegration thereof. Three different nano- or microparticles of BG45S5 (R) were incorporated into medical grade silicone elastomer, and thin films of the composites were manufactured. Physicochemical, mechanical and in vitro experiments using primary human dermal fibroblasts were used to evaluate the nano- and microcomposites. The incorporation of BG particles reduced the tensile strength at break and percent elongation at break of the composites and increased the stiffness of the material. Especially, the incorporation of nanosized BG decreased the percent elongation at break after immersion in SBF due to agglomerate formation and increased hydroxyapatite formation compared to commercially available microparticles. The cytocompatibility of BG containing composites increased significantly with increasing particle concentration. A clear trend regarding particle size was not observed. In general, the simple incorporation of particles into medical grade silicone elastomer allowed an easy modification of the mechanical properties and improvement in bioactivity (assessed by hydroxyapatite formation) of the material. The choice of either nano- or microparticles depends on the specific application and requirements for the material, as different particle types show different advantages and disadvantages.
机译:除了与骨骼和牙齿接触的历史用途,越来越多的研究使用与软组织接触的生物活性玻璃(BG)。 BG可以为各种医疗问题提供解决方案。本研究提出了第一次评价,是否含有硅氧烷弹性体的Bg是左心室辅助装置驱虫的合适材料,并且可以增强其皮肤生物整合。将三种不同的BG45S5(R)的不同纳米或微粒掺入医用级硅氧烷弹性体中,制造复合材料的薄膜。使用初级人类皮肤成纤维细胞的物理化学,机械和体外实验用于评价纳米和微孔复合材料。掺入BG颗粒在复合材料的断裂处的断裂和伸长率伸长率下降并增加了材料的刚度。特别是,纳米型BG的掺入由于聚集的形成和与市售微粒相比,沉浸在SBF中浸入SBF后的伸长率下降。随着颗粒浓度的增加,Bg含有复合材料的细胞偶联性显着增加。未观察到有关粒径的明显趋势。通常,将颗粒简单地掺入到医用级硅氧烷弹性体中,允许易于改变材料的机械性能和改善材料的生物活性(通过羟基磷灰石形成评估)。纳米或微粒的选择取决于材料的具体应用和要求,因为不同的粒子类型显示出不同的优缺点。

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  • 来源
    《Journal of Materials Science》 |2017年第15期|共16页
  • 作者单位

    ETH Inst Chem &

    Bioengn Dept Chem &

    Appl Biosci Vladimir Prelog Weg 1 CH-8093 Zurich Switzerland;

    ETH Inst Chem &

    Bioengn Dept Chem &

    Appl Biosci Vladimir Prelog Weg 1 CH-8093 Zurich Switzerland;

    ETH Inst Chem &

    Bioengn Dept Chem &

    Appl Biosci Vladimir Prelog Weg 1 CH-8093 Zurich Switzerland;

    ETH Inst Chem &

    Bioengn Dept Chem &

    Appl Biosci Vladimir Prelog Weg 1 CH-8093 Zurich Switzerland;

    ETH Inst Chem &

    Bioengn Dept Chem &

    Appl Biosci Vladimir Prelog Weg 1 CH-8093 Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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