首页> 外文期刊>Journal of nanoscience and nanotechnology >Fabrication of Sustained Release System of Electrospun Poly(acrylic acid)/Dextran Nanofibers Using Emulsion Electrospinning as Wound Dressing Applications
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Fabrication of Sustained Release System of Electrospun Poly(acrylic acid)/Dextran Nanofibers Using Emulsion Electrospinning as Wound Dressing Applications

机译:使用乳液静电纺丝作为伤口敷料应用的静脉纺聚(丙烯酸)/葡聚糖纳米纤维持续释放系统的制备

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摘要

The burst release of drug is a problem associated with the use of common blending electrospinning. This problem can be avoided via fabrication of core-shell nanofibers where drug can be coated with polymer nanofibers as a shell. Moreover, there is a need to provide wound dressing with prolonged system of sustained release to accelerate the recovery of the wound. Currently, electrospun ciprofloxacin loaded poly(acrylic acid)/Dextran (Cipro@ PAA/Dex) core-shell nanofibers can be prepared in green method using emulsion electrospinning. For comparison study, blend electrospun nanofibers (Cipro/PAA/Dex) was also prepared. The entrapment of drug into the polymeric material and the interaction between polymer blends were confirmed by FT-IR. Moreover, DSC was used to identify the type of interaction between polymeric chains. Field emission scanning electron microscope (FE-SEM) was used to study the nanofiber morphology and transmission electron microscope (TEM) and confocal laser scanning microscope (CLSM) were used to confirm the formation of core- shell structure. In vitro drug release profile was monitored by UV-Vis spectrophotometer and the results showed that Cipro@ PAA/Dex exhibited controlled release behavior whereas Cipro/PAA/Dex showed burst release behavior. Moreover, the release mechanism is kinetically followed diffusion.
机译:药物的突然释放是一个与普通混合静电纺丝有关的问题。这一问题可以通过制造核壳纳米纤维来避免,在核壳纳米纤维中,药物可以作为壳被聚合物纳米纤维包覆。此外,还需要提供具有长效缓释系统的伤口敷料,以加速伤口的恢复。目前,可以使用乳液静电纺丝的绿色方法制备负载环丙沙星的聚(丙烯酸)/葡聚糖(Cipro@PAA/Dex)核壳纳米纤维。为了进行对比研究,还制备了共混电纺纳米纤维(Cipro/PAA/Dex)。FT-IR证实了药物在聚合物材料中的包封以及聚合物共混物之间的相互作用。此外,DSC还用于确定聚合物链之间的相互作用类型。用场发射扫描电子显微镜(FE-SEM)研究了纳米纤维的形态,用透射电子显微镜(TEM)和共焦激光扫描显微镜(CLSM)证实了核壳结构的形成。通过紫外-可见分光光度计监测体外药物释放曲线,结果表明,Cipro@PAA/Dex表现出控释行为,而Cipro/PAA/Dex表现出突发释放行为。此外,释放机制在动力学上遵循扩散。

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