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Investigating composite systems based on poly L-lactide and poly L-lactide/triclosan nanoparticles for tissue engineering and medical applications

机译:研究基于聚L-丙交酯和聚L-丙交酯/三氯生纳米颗粒的复合系统,用于组织工程和医学应用

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In this study, the encapsulated triclosan with a low molecular weight PLLA (LATC30) is dispersed into a PLLA having higher molecular weight via melt blending to increase the overall properties and particularly antibacterial activity of the system. The proposed method results in a completely homogenous composite as 5% LATC30 improved mechanical properties. For instance, the elongation at break was increased ca. 3%. The mechanical properties of the fabricated composites were also affected by the plasticizing role of LATC30. The kinetics of hydrolytic degradation in an accelerated condition was obtained using a novel method by the Beer-Lambert equation. It was found that the incorporation of LATC30 into the composite increases the rate of hydrolytic degradation. The cal-orimetry showed a reduction in crystallinity upon addition of LATC30. Moreover, the degradation of the composites was studied and fully described the kinetic analysis by the Flynn-Wall-Ozawa (FWO) method. From which, it was found that the activation energy of the system was decreased. As the LATC30 content of the composite was increased, the hydrophilicity of the composite was increased. The fabricated scaffolds with 5% LATC30 demonstrated a good osteoblast cell attachment and mineralization on the composite scaffolds. This composite is a suitable antibacterial candidate for the bone tissue engineering and medical applications since the real dosage of triclosan stays at ca. 15%.
机译:在这项研究中,通过熔融共混将具有低分子量PLLA(LATC30)的封装三氯生分散到具有更高分子量的PLLA中,以提高系统的总体性能,尤其是抗菌活性。所提出的方法产生了完全均匀的复合材料,因为5%的LATC30改善了机械性能。例如,断裂伸长率大约增加。 3%。制备的复合材料的机械性能还受到LATC30塑化作用的影响。通过Beer-Lambert方程使用一种新方法获得了加速条件下的水解降解动力学。已经发现,将LATC 30掺入复合材料中可提高水解降解速率。量热法显示在加入LATC 30后结晶度降低。此外,研究了复合材料的降解,并充分描述了用Flynn-Wall-Ozawa(FWO)方法进行的动力学分析。由此发现,系统的活化能降低了。随着复合材料中LATC30含量的增加,复合材料的亲水性也随之提高。含5%LATC30的预制支架在复合支架上显示出良好的成骨细胞附着和矿化作用。这种复合材料是骨组织工程和医学应用的合适候选抗菌剂,因为三氯生的实际剂量保持在约200℃。 15%。

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