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Preparation Characterization and Properties of Porous PLA/PEG/Curcumin Composite Nanofibers for Antibacterial Application

机译:抗菌用多孔PLA / PEG /姜黄素复合纳米纤维的制备表征与性能

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摘要

Polylactide/polyethylene glycol/curcumin (PLA/PEG/Cur) composite nanofibers (CNFs) with varying ratios of PEG were successfully fabricated by electrospinning. Characterizations of the samples, such as the porous structure, crystalline structure, pore size, wetting property and Cur release property were investigated by a combination of scanning electron microscopy (SEM), Fourier-transform infrared (FTIR) spectroscopy, X-ray diffraction (XRD) and UV spectrophotometer. The antibacterial properties of the prepared porous CNFs against Escherichia coli bacteria were studied. The results showed that with the decrease of PEG in the CNFs, there appeared an evident porous structure on the CNF surface, and the porous structure could enhance the release properties of Cur from the CNFs. When the weight ratio (PEG:PLA) was 1:9, the pore structure of the nanofiber surface became most evident and the amount of Cur released was highest. However, the antibacterial effect of nonporous CNFs was better due to burst release over a short period of time. That meant that the porous structure of the CNFs could reduce the burst release and provide better control over the drug release.
机译:通过电纺成功地制备了不同比例的PEG的聚丙交酯/聚乙二醇/姜黄素(PLA / PEG / Cur)复合纳米纤维(CNF)。通过扫描电子显微镜(SEM),傅里叶变换红外(FTIR)光谱,X射线衍射(X射线衍射)的组合研究了样品的表征,例如多孔结构,晶体结构,孔径,润湿性和Cur释放性XRD)和紫外分光光度计。研究了所制备的多孔CNF对大肠杆菌的抗菌性能。结果表明,随着CNFs中PEG的减少,CNF表面出现明显的多孔结构,该多孔结构可以增强Cur从CNFs中的释放性能。当重量比(PEG∶PLA)为1∶9时,纳米纤维表面的孔结构变得最明显,并且Cur的释放量最高。但是,无孔CNF的抗菌效果更好,这是由于在短时间内突然释放所致。这意味着CNF的多孔结构可以减少突发释放并更好地控制药物释放。

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