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A New Bioactive Polylactide-based Composite with High Mechanical Strength

机译:具有高机械强度的新型生物活性聚丙交酯基复合材料

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摘要

A new bioresorbable polylactide/calcium phosphate composite with improved mechanical strengths and a more basic filler, tetracalcium phosphate (TTCP), was prepared by melt compounding. N-(2-aminoethyl)-3-aminoproplytrimethoxysilane (AEAPS) and pyromellitic dianhydride (PMDA) were used to improve the interfacial adhesion between TTCP and polylactide (PLA). While AEAPS improved the dispersion of TTCP in the matrix, PMDA might react with the terminal hydroxyl group of PLA and the amino group on the surface of AEAPS modified TTCP, which could further enhance the interfacial strength. The tensile strength was improved to 68.4 MPa for the PLA/TTCP-AEAPS composite from 51.5 MPa for the PLA/TTCP composite (20 wt% of TTCP). Dynamic mechanical analysis suggested that there was a 51 % improvement in storage modulus compared to that of PLA alone, when PMDA (0.2 wt% of PMDA) was incorporated into the PLA/TTCP-AEAPS composite (5 wt% of TTCP). Using this new bioresorbable PLA composite incorporated with a more basic filler for biomedical application, the inflammation and allergic effect resulted from the degraded acidic product are expected to be reduced.
机译:通过熔融混合制备了一种新的生物可吸收的聚乳酸/磷酸钙复合材料,该复合材料具有更高的机械强度和更碱性的填料,磷酸四钙(TTCP)。 N-(2-氨基乙基)-3-氨基丙三甲氧基硅烷(AEAPS)和均苯四甲酸二酐(PMDA)用于改善TTCP和聚丙交酯(PLA)之间的界面粘合力。虽然AEAPS改善了TTCP在基质中的分散性,但PMDA可能会与PLA的末端羟基和AEAPS修饰的TTCP表面的氨基发生反应,从而可以进一步增强界面强度。 PLA / TTCP-AEAPS复合材料的拉伸强度从PLA / TTCP复合材料(TTCP的20 wt%)的51.5 MPa提高到68.4 MPa。动态力学分析表明,当将PMDA(0.2 wt%的PMDA)掺入PLA / TTCP-AEAPS复合材料(TTCP的5 wt%)时,与单独使用PLA相比,储能模量提高了51%。使用这种新的可生物吸收的PLA复合材料,并结合了用于生物医学应用的更碱性的填料,可以预期由降解的酸性产品引起的炎症和过敏反应将减少。

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