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Development and in vitro characterisation of novel bioresorbable and bioactive composite materials based on polylactide foams and Bioglass for tissue engineering applications.

机译:基于聚乳酸泡沫和生物玻璃的新型生物可吸收和生物活性复合材料的开发和体外表征,用于组织工程应用。

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Bioactive and bioresorbable composite materials were fabricated using macroporous poly(DL-lactide) (PDLLA) foams coated with and impregnated by bioactive glass (Bioglass) particles. Stable and homogeneous Bioglass coatings on the surface of PDLLA foams as well as infiltration of Bioglass particles throughout the porous network were achieved using a slurry-dipping technique in conjunction with pre-treatment of the foams in ethanol. The quality of the bioactive glass coatings was reproducible in terms of thickness and microstructure. Additionally, electrophoretic deposition was investigated as an alternative method for the fabrication of PDLLA foam/Bioglass composite materials. In vitro studies in simulated body fluid (SBF) were performed to study the formation of hydroxyapatite (HA) on the surface of PDLLA/Bioglass composites. SEM analysis showed that the HA layer thickness rapidly increased with increasing time in SBF. The high bioactivity of the PDLLA foam/Bioglass composites indicates the potential of the materials for use as bioactive, resorbable scaffolds in bone tissue engineering.
机译:生物活性和可生物吸收的复合材料是使用大孔聚(DL-丙交酯)(PDLLA)泡沫材料制成的,该泡沫材料涂覆有生物活性玻璃(Bioglass)颗粒并被其浸渍。使用浆液浸渍技术结合泡沫在乙醇中的预处理,可以实现PDLLA泡沫表面上稳定,均匀的生物玻璃涂层以及整个多孔网络中生物玻璃颗粒的渗透。就厚度和微观结构而言,生物活性玻璃涂层的质量是可再现的。另外,研究了电泳沉积作为制造PDLLA泡沫/生物玻璃复合材料的替代方法。在模拟体液(SBF)中进行了体外研究,以研究PDLLA /生物玻璃复合材料表面上羟基磷灰石(HA)的形成。 SEM分析表明,随着SBF时间的增加,HA层厚度迅速增加。 PDLLA泡沫/生物玻璃复合材料的高生物活性表明该材料在骨组织工程中可用作生物活性可吸收支架的潜力。

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