首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Combination of a biodegradable three-dimensional (3D) - printed cage for mechanical support and nanofibrous membranes for sustainable release of antimicrobial agents for treating the femoral metaphyseal comminuted fracture
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Combination of a biodegradable three-dimensional (3D) - printed cage for mechanical support and nanofibrous membranes for sustainable release of antimicrobial agents for treating the femoral metaphyseal comminuted fracture

机译:用于抗菌药物可持续释放的可生物降解的三维(3D)印刷笼的组合用于治疗股骨复杂性粉碎骨折的可持续释放

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摘要

The aim of this study was to develop a biodegradable three-dimensional-printed polylactide (PLA) cage for promoting bony fixation and an antibiotics-embedded poly(D,L)-lactide-co-glycolide (PLGA) nanofibrous membrane for infectious prophylaxis during treating the comminuted metaphyseal fracture in a rabbit femoral model. The in vitro studies included measuring the mechanical properties of the 3D printed cage and determining release activities of vancomycin and ceftazidime from the nanofibers. The in vivo study included comparisons of rabbits of the femoral metaphyseal comminuted fracture treated with or without the combined biodegradable polymers. The results showed that vancomycin and ceftazidime were sustainably detected above the effective levels in the local tissue fluid around the fracture site for 3 weeks. The animal studies showed that rabbits with the 3D cage implantation possessed better cortical integrity, leg length ratio, and maximal bending strengths. The study results indicate that these combined polymers may promote fracture fixation during treating the rabbit femoral metaphyseal comminuted fracture.
机译:本研究的目的是开发一种可生物降解的三维印刷聚丙烯酰胺(PLA)笼,用于促进骨固定和抗生素 - 嵌入的聚(D,L) - 丙酰基 - 共乙酰胺(PLGA)纳米纤维(PLGA)纳米纤维膜,用于传染性预防期间在兔股模型中治疗粉碎的变形骨折。体外研究包括测量3D印刷笼的机械性能,并确定来自纳米纤维的万古霉素和头孢他啶的释放活动。体内研究包括在用或没有组合的可生物降解的聚合物的股骨复杂性粉碎骨折的兔子的比较。结果表明,在骨折部位周围的局部组织液中的有效水平以上,万古霉素和头孢他啶可持续地检测3周。动物研究表明,具有3D笼植入的兔子具有更好的皮质完整性,腿长比和最大弯曲强度。研究结果表明,这些组合的聚合物可以在治疗兔股骨质离散粉碎骨折期间促进断裂固定。

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