首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Enhancing the mechanical and in vitro performance of robocast bioglass scaffolds by polymeric coatings: Effect of polymer composition
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Enhancing the mechanical and in vitro performance of robocast bioglass scaffolds by polymeric coatings: Effect of polymer composition

机译:通过聚合物涂层提高Robocast Bioglass支架的机械和体外性能:聚合物组合物的作用

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The effect of different polymeric coatings, including natural and synthetic compositions, on the mechanical performance of 45S5 bioglass robocast scaffolds is systematically analyzed in this work. Fully amorphous 45S5 bioglass robocast scaffolds sintered at 550 degrees C were impregnated with natural (gelatin, alginate, and chitosan) and synthetic (polycaprolactone, PCL and poly-lactic acid, PLA) polymers through a dip-coating process. Mechanical enhancement provided by these coatings in terms of both compressive strength and strain energy density was evaluated. Natural polymers, in general, and chitosan, in particular, were found to produce the greater reinforcement. The effect of these coatings on the in vitro bioactivity and degradation behavior of 45S5 bioglass robocast scaffolds was also investigated through immersion tests in simulated body fluid (SBF). Coatings from natural polymers, especially chitosan, are shown to have a positive effect on the bioactivity of 45S5 bioglass, accelerating the formation of an apatite-like layer. Besides, most coating compositions reduced the degradation (weight loss) rate of the scaffold, which has a positive impact on the evolution of their mechanical properties.
机译:在这项工作中系统地分析了不同聚合物涂层,包括天然和合成组合物的不同聚合物涂层的效果,对45℃的生物胶卷robocast支架的机械性能进行了系统地分析。通过浸涂方法将以550℃烧结的完全无晶体45S5生物胶质robocast支架用天然(明胶,海藻酸盐和壳聚糖)和合成(聚己内酯,PCL和多乳酸,PLA)聚合物浸渍。根据抗压强度和应变能密度来提供这些涂层提供的机械增强。特别是天然聚合物,特别是壳聚糖,特别是壳聚糖产生更大的增强。通过模拟体液(SBF)中的浸渍试验,还研究了这些涂层对体外生物活性和降解行为的影响。从天然聚合物,尤其是壳聚糖的涂层,显示对45s5生物制剂的生物活性产生阳性作用,加速了磷灰石状层的形成。此外,大多数涂料组合物降低了支架的降解(体重减轻)速率,这对其机械性能的演变具有积极的影响。

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