Quercetin has various biological activities, but its poor water solubility and stability limit its applications. In this study, β-cyclodextrin was used as the host and quercetin was encapsulated in its cavity to prepare an inclusion compound. Then, a nanofilm was formed using electrospinning. Fourier transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), scanning electron microscopy (SEM), and thermogravimetric differential scanning calorimetry (TG-DSC) were used to characterize the properties of the inclusion compound nanofilms. SEM images showed that the nanofilm prepared by optimizing the electrospinning process parameters had a good nanofiber structure. XRD, FTIR and TG/DSC characterization of the nanofilm showed that quercetin was encapsulated in the cavity of β-cyclodextrin and was present in the nanofilm. The quercetin was slowly released from the nanofilm and still had good bacteriostatic effects on Staphylococcus aureus and Escherichia coli, indicating that the process of embedding and electrospinning did not affect the antibacterial activity of quercetin.

译文

:槲皮素具有多种生物活性,但水溶性和稳定性差,限制了其应用。在这项研究中,β-环糊精被用作宿主,槲皮素被包裹在其腔中以制备包合物。然后,使用静电纺丝形成纳米膜。傅里叶变换红外光谱(FT-IR),X射线衍射(XRD),扫描电子显微镜(SEM)和热重差示扫描量热法(TG-DSC)用于表征包合物纳米薄膜的性能。 SEM图像表明,通过优化静电纺丝工艺参数制备的纳米膜具有良好的纳米纤维结构。纳米膜的XRD,FTIR和TG / DSC表征表明槲皮素被包裹在β-环糊精的空腔中,并存在于纳米膜中。槲皮素从纳米膜上缓慢释放,对金黄色葡萄球菌和大肠杆菌仍具有良好的抑菌作用,表明包埋和静电纺丝过程不影响槲皮素的抗菌活性。

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