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Using Taguchi method for the optimization of processing variables to prepare porous scaffolds by combined melt mixing/particulate leaching

机译:使用Taguchi方法优化工艺变量以通过熔体混合/颗粒浸出的组合制备多孔支架

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Synthetic biopolymers have made significant inroads into the development of devices for tissue regeneration. In this context, a challenge is the achievement of appropriate properties mimicking the natural extracellular matrix by fabricating scaffolds presenting mechanical properties, specific surface, porosity and pore interconnection adequate for the final application. This study involved a systematic procedure based on Taguchi method for parameters optimization of melt mixing/particulate leaching combined processes aiming to enhance the performance of the scaffolds. In particular, it was evaluated the effect of time and temperature of melt mixing of the poly(lactic acid) matrix with two water-soluble inorganic porogen agents (i.e. NaCl or CaCl2) with two different pore size and poly(ethylene glycol). Thereafter, the blends were compression molded and water-leached for different time and at different pH. By adopting L-8 Taguchi orthogonal array, seven control factors, each at two levels, were tested, and ANOVA was applied to find the statistically significant factors and the combination of their optimal levels. The results revealed that the mixing temperature had the highest effect on mechanical properties. Moreover, the internal architecture of the scaffolds was studied by morphological analysis, finding that it is affected by the kind of porogen salt and by mixing time. (C) 2017 Elsevier Ltd. All rights reserved.
机译:合成的生物聚合物已大大推动了组织再生装置的开发。在此背景下,挑战是通过制造表现出足以适合最终应用的机械性能,比表面,孔隙率和孔互连的支架来模仿天然的细胞外基质来获得合适的性能。这项研究涉及基于Taguchi方法的系统程序,以优化熔体混合/颗粒浸出联合工艺的参数,旨在增强脚手架的性能。特别地,评估了聚乳酸基质与两种具有两种不同孔径的水溶性无机成孔剂(即NaCl或CaCl 2)和聚乙二醇的熔融混合的时间和温度的影响。此后,将共混物压制成型并在不同的时间和不同的pH下水浸。通过采用L-8 Taguchi正交阵列,测试了两个水平的七个控制因子,并使用ANOVA来找到具有统计意义的因子及其最佳水平的组合。结果表明,混合温度对机械性能的影响最大。此外,通过形态分析研究了支架的内部结构,发现其受成孔剂盐的种类和混合时间的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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