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Degradation Behaviors of β-TCP/PLGA Composites Prepared with Microwave Energy

机译:用微波能量制备β-TCP / PLGA复合材料的降解行为

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The β-tricaicium phosphate (β-TCP)/ poly(lactide-co-glycolide) (PLGA) composites for biodegradable scaffolds in bone tissue engineering were synthesized by in situ polymerization with microwave energy. The degradation behavior of β-TCP/PLGA composite was investigated by soaking in simulated body fluid (SBF) for 4 weeks. The molecular weight of the β-TCP/PLGA composites decreased with soaking time until week 2, whereas the loss rate of molecular weight reduced after week 2. The incubation time was needed for the degradation of the β-TCP, indicating that the β-TCP should be detached from the PLGA matrix and then degraded into SBF solution. The studies of mass loss of the composites with the soaking time revealed that the degradation behavior of PLGA would be processed with the transformation from the polymer to the oligomer followed by the degradation. Morphological changes, whisker-like, due to transformation and degradation of polymer in the composites were observed after week 2. On the basis of the results, it found that the degradation behavior of β-TCP/PLGA composites was influenced by the β-TCP content in the composite and the degradation rate of the composite could be controlled by the initial molecular weight of PLGA in the composite.
机译:通过用微波能量聚合,合成骨组织工程中可生物降解支架的β-三磷酸钙(β-TCP)/聚(Lactide-Co-乙酰乙酰酯)(PLGA)复合材料。通过在模拟体液(SBF)中浸泡4周,研究了β-TCP / PLGA复合物的降解行为。 β-TCP / PLGA复合材料的分子量随着浸泡时间而降低,而第2周后分子量的损失率降低。β-TCP的降解需要孵育时间,表明β- TCP应与PLGA矩阵分离,然后降解到SBF溶液中。具有浸泡时间的复合材料的质量损失的研究表明,PLGA的降解行为将被从聚合物转化到低聚物,然后降解。在第2周后观察到形态学变化,晶须,由于复合材料中的聚合物中的聚合物转化和降解。在结果的基础上,发现β-TCP / PLGA复合材料的降解行为受到β-TCP的影响复合材料中的含量和复合材料的降解速率可以通过复合材料中PLGA的初始分子来控制。

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