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Melt processed polymer blends for potential regenerative medicine applications

机译:熔融加工的聚合物共混物用于潜在的再生药物应用

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There is an urgent and unmet requirement for biocompatible and biodegradable implants that gradually resorb when implanted in vivo. This study examines the potential of melt extruded thermoplastics polyethylene oxide (PEO) and polycaprolactone (PCL) in the area of regenerative medicine. Various ratios of PEO and PCL were melt blended and analysed in order to obtain an optimised breakdown rate. Subsequently the effect of varying the molecular weight of PCL using a constant molecular weight PEO was also examined. Samples were characterised using melt flow index (MFI), differential scanning calorimetry (DSC) and breakdown analysis. It was found that by altering both the concentrations of PEO/PCL and the molecular weight of PCL, melt viscosity, breakdown rate and thermal properties could be modulated to produce potential implant materials with a tailored breakdown rate.
机译:对于生物相容性和可生物降解的植入物存在紧急和未满足的要求,该植入物在植入体内逐渐远离。本研究研究了再生医学区域中熔融挤出的热塑性聚环氧丙烷(PEO)和聚己内酯(PCL)的潜力。为了获得优化的分解速率,将各种PEO和PCL熔融和分析。随后,还检查了不同分子量PEO改变PCL的分子量的效果。使用熔体流量指数(MFI),差示扫描量热法(DSC)和击穿分析来表征样品。发现通过改变PCO / PCL的浓度和PCL的分子量,可以调节熔体粘度,分解速率和热性质,以产生具有定制析出率的潜在植入材料。

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