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Preparation of poly(lactic acid)/graphene oxide nanofiber membranes with different structures by electrospinning for drug delivery

机译:电纺丝制备不同结构聚乳酸/氧化石墨烯纳米纤维膜的研究

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Nanofiber membranes display promising potential in biomedical fields, especially as scaffolds for drug delivery and tissue engineering. The structures and components of nanofibers play crucial roles in improving the mechanical properties and drug-releasing performance of nanofiber membranes. In this work, poly(lactic acid) (PLA)/graphene oxide (GO) nanofiber membranes with different structures (single-axial and co-axial structure) were prepared by electrospinning. The morphologies, structures, and mechanical properties of the as-prepared nanofiber membranes were characterized and compared. Furthermore, the drug-releasing performance of the as-prepared nanofiber membranes with different structures was evaluated by using an organic dye (Rhodamine B, RhB) as a drug model. Results show that the addition of GO not only significantly improved the thermal stability and mechanical properties of the PLA nanofiber membranes, but also promoted the cumulative release and release rate of RhB from nanofiber membranes. At the same GO concentration, the nanofiber membrane with the co-axial structure displayed a higher tensile strength and Young's modulus, but exhibited a lower cumulative release and release rate. The formation of the co-axial structure is beneficial in suppressing the initial burst release of RhB from nanofiber membranes.
机译:纳米纤维膜在生物医学领域显示出有希望的潜力,特别是作为药物输送和组织工程的支架。纳米纤维的结构和组分在改善纳米纤维膜的机械性能和药物释放性能方面起着至关重要的作用。在这项工作中,通过电纺丝制备了具有不同结构(单轴和同轴结构)的聚乳酸(PLA)/氧化石墨烯(GO)纳米纤维膜。表征和比较了所制备的纳米纤维膜的形态,结构和力学性能。此外,通过使用有机染料(若丹明B,RhB)作为药物模型评价了所制备的具有不同结构的纳米纤维膜的药物释放性能。结果表明,GO的加入不仅显着提高了PLA纳米纤维膜的热稳定性和力学性能,而且还促进了RhB从纳米纤维膜的累积释放和释放速率。在相同的GO浓度下,具有同轴结构的纳米纤维膜显示出较高的拉伸强度和杨氏模量,但显示出较低的累积释放和释放速率。同轴结构的形成有利于抑制RhB从纳米纤维膜的初始突释。

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