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首页> 外文期刊>Journal of Polymer Research >Electrospinning of polylactide and polycaprolactone mixtures for preparation of materials with tunable drug release properties
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Electrospinning of polylactide and polycaprolactone mixtures for preparation of materials with tunable drug release properties

机译:聚乳酸和聚己内酯混合物的静电纺丝,用于制备具有可调药物释放特性的材料

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Electrospun microfibers with a variable ratio between polycaprolactone and polylactide homopolymers were prepared from chloroform/acetone solutions. Thermal properties of both as-processed and melt crystallized samples were studied. Time-resolved WAXD patterns were taken during heating runs in order to evaluate the initial crystallinity and changes occurred during cold crystallization. DSC and WAXD experiments clearly indicated that fiber orientation facilitated the crystallization of polylactide, especially when fibers had a high polycaprolactone content. Triclosan could be effectively loaded by electrospinning and was well mixed in the polycaprolactone and polylactide phases. SAXS patterns allowed inferring that both polymers were also well mixed in the electrospun fibers and that triclosan hindered the lamellar stacking of polycaprolactone. Thermal properties, crystallinities and fiber surface morphologies were also significantly modified by the incorporation of triclosan. The release of drug loaded samples into different mixtures of ethanol and S?rensen medium was evaluated and the different affinity between triclosan and the two studied homopolymers was demonstrated. In this way, it was possible to obtain a series of materials with tuned release behavior and tuned antibacterial effect. The biocompatibility of all triclosan loaded polymer mixtures was evaluated by studying cell adhesion and proliferation.
机译:由氯仿/丙酮溶液制备聚己内酯和聚丙交酯均聚物之间具有可变比例的电纺微纤维。研究了加工后和熔融结晶样品的热性能。为了评估初始结晶度和在冷结晶过程中发生的变化,在加热过程中采用了时间分辨的WAXD模式。 DSC和WAXD实验清楚地表明,纤维取向促进了聚丙交酯的结晶,特别是当纤维中聚己内酯含量高时。三氯生可通过静电纺丝有效负载,并在聚己内酯和聚丙交酯相中充分混合。 SAXS模式可以推断两种聚合物在电纺纤维中也充分混合,三氯生阻碍了聚己内酯的层状堆积。通过加入三氯生,热性能,结晶度和纤维表面形态也得到了显着改善。评估了载药样品在乙醇和S?rensen介质的不同混合物中的释放,并证明了三氯生与两种研究的均聚物之间的亲和力不同。以此方式,可以获得具有调节的释放行为和调节的抗菌作用的一系列材料。通过研究细胞粘附和增殖来评估所有三氯生负载的聚合物混合物的生物相容性。

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