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Polybutylene-adipate-terephthalate and niobium-containing bioactive glasses composites: Development of barrier membranes with adjusted properties for guided bone regeneration

机译:聚丁烯 - 己二酸邻 - 对苯二甲酸丁酯和含铌的生物活性玻璃复合材料:具有调节性能的阻隔膜的开发,用于引导骨再生

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摘要

This study aimed to develop bioactive guided bone regeneration (GBR) membranes by manufacturing PBAT/ BAGNb composites as casting films. Composites were produced by melt-extrusion, and BAGNb was added at 10 wt%, 20 wt%, and 30 wt% concentration. Pure PBAT membranes were used as a control (0wt%BAGNb). FTIR and thermogravimetric analysis characterized the composites. Barrier membranes were produced by solvent casting, and their mechanical and surface properties were assessed by tensile strength test and contact angle analysis, respectively. The ion release and cell behavior were evaluated by pH, cell proliferation, and mineralization. Composites were successfully produced, and the chemical structure showed no interference of BAGNb in the PBAT structure. The addition of BAGNb increased the stiffness of the membranes and reduced the contact angle, increasing the roughness in one side of the membrane. Sustained pH increment was observed for BAGNbcontaining membranes with increased proliferation and mineralization as the concentration of BAGNb increases. The incorporation of up to 30 wt% of BAGNb into PBAT barrier membranes was able to maintain adequate chemical-mechanical properties leading to the production of materials with tailored surface properties and bioactivity. Finally, this biomaterial class showed outstanding potential and may contribute to bone formation in GBR procedures.
机译:本研究旨在通过制造PBAT / BAGNB复合材料作为浇铸膜来开发生物活性引导骨再生(GBR)膜。通过熔融挤出生产复合材料,加入10wt%,20wt%和30wt%浓度。用纯PBAT膜用作对照(0wt%BAGNB)。 FTIR和热重分析表征复合材料。通过溶剂浇铸制备阻隔膜,并分别通过拉伸强度试验和接触角分析评估其机械和表面性能。通过pH,细胞增殖和矿化评估离子释放和细胞行为。复合材料已成功生产,化学结构显示PBAT结构中BAGNB的干扰。 BAGNB的添加增加了膜的刚度并降低了接触角,增加了膜的一侧的粗糙度。由于BAGNB浓度增加,因此针对BAGNBCONTAIN膜观察到持续的pH增量,随着BAGNB的浓度增加而增多和矿化。掺入高达30wt%的八羚羊进入PBAT屏障膜,以保持足够的化学机械性能,导致具有量身定制的表面性质和生物活性的材料。最后,这种生物材料表现出突出的潜力,可能有助于GBR程序中的骨形成。

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