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Degradation Behavior In Vitro of Carbon Nanotubes (CNTs)/Poly(lactic acid) (PLA) Composite Suture

机译:碳纳米管(CNTs)/聚乳酸(PLA)复合缝合线的体外降解行为

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摘要

Poly(lactic acid) (PLA) suture can be absorbed by the human body, and so have wide applications in modern surgery operations. The degradation period of PLA suture is expected to meet with the healing time of different types of wounds. In order to control the degradation period of the PLA suture, the carbon nanotubes (CNTs) were composited with PLA suture, and the degradation experiment in vitro was performed on sutures. The structure and properties of sutures during degradation, such as surface morphology, breaking strength, elongation, mass and chemical structure, were tracked and analyzed. The results indicated that the degradation brought about surface defects and resulted in 13.5 weeks for the strength valid time of the original PLA suture. By contrast, the strength valid time of the CNTs/PLA suture was increased to 26.6 weeks. Whilst the toughness of both the pure PLA and CNTs/PLA sutures decreased rapidly and almost disappeared after 3 to 4 weeks of degradation. The mass loss demonstrated that the time required for complete degradation of the two sutures was obviously different, the pure PLA suture 49 weeks, while CNTs/PLA sutures 63 to 73 weeks. The research proved that CNTs delayed PLA degradation and prolonged its strength valid time in degradation.
机译:聚乳酸(PLA)缝合线可被人体吸收,因此在现代外科手术中具有广泛的应用。 PLA缝合线的降解期有望与不同类型伤口的愈合时间相吻合。为了控制PLA缝线的降解时间,将碳纳米管与PLA缝线复合,并对缝线进行体外降解实验。跟踪并分析了降解过程中缝线的结构和性质,例如表面形态,断裂强度,伸长率,质量和化学结构。结果表明,降解导致表面缺陷,导致原始PLA缝合线的强度有效时间为13.5周。相比之下,CNTs / PLA缝线的强度有效时间增加到26.6周。纯PLA和CNTs / PLA缝线的韧性均迅速下降,降解3-4周后几乎消失。质量损失表明,两种缝合线完全降解所需的时间明显不同,纯PLA缝合线49周,而CNTs / PLA缝合线63至73周。研究证明,碳纳米管延缓了聚乳酸的降解,并延长了其降解的强度有效时间。

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