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Developing Tricalcium Phosphate/Polyhydroxybutyrate Composite as a New Biodegradable Material for Clinical Applications

机译:将磷酸钙/聚羟丁酸酯复合材料作为临床应用的新可生物降解材料

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Two biodegradable materials, namely, tricalcium phosphate (TCP) and polyhydroxybutyrate (PHB), were used to produce a new composite material for tissue replacement/regeneration. Commercially available TCP and PHB were used, with both materials being in the form of fine powders. They were characterised prior to composite production. TCP/PHB composite containing up to 30vol percent of TCP was produced. Manufacture of the composite consisted of compounding, milling, drying and compression moulding. During the manufacturing process, the temperature and time for maintaining PHB in the molten state were carefully controlled as PHB is very heat-sensitive. Thermogravimetric analysis (TGA) of the composite indicated that intended compositions for the composite had been achieved. Examinations using a scanning electron microscope (SEM) revealed that TCP particles were well distributed in compounded and compression moulded materials. Differential scanning calorimetry (DSC) analysis showed that an increase in the TCP content resulted in decreases in both the melting temperature and the crystallinity of PHB. An ascending trend of microhardness was observed for TCP/PHB with an increase in the TCP volume percentage. Dynamic mechanical analysis (DMA) showed that the storage modulus increased from 2.76GPa for the unfilled PHB to 4.80GPa for the composite containing 20vol percent of TCP.
机译:使用两种可生物降解的材料,即磷酸三钙(TCP)和多羟基丁酸酯(PHB),用于制备用于组织替代/再生的新型复合材料。使用市售的TCP和PHB,两种材料以细粉末的形式。它们在复合生产之前被描述。产生高达30Vol%TCP的TCP / PHB复合材料。复合材料的制造包括配混,研磨,干燥和压缩成型。在制造过程中,仔细控制在熔融状态下维持pHB的温度和时间,因为PHB是非常热敏的。复合材料的热重量分析(TGA)表明已经达到了复合材料的预期组合物。使用扫描电子显微镜(SEM)的检查显示,TCP颗粒在配混和压缩模塑材料中分布得很好。差分扫描量热法(DSC)分析表明,TCP含量的增加导致熔化温度和PHB的结晶度降低。对于TCP / PHB,观察到微硬度的升序趋势,随着TCP体积百分比增加。动态机械分析(DMA)显示储存模量从未填充的PHB的2.76gPA增加到4.80gPa,用于含有20Vol%的TCP的复合材料。

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