Cheng En, Geng Zhanhui, Xiang Lubing, Zhao Xiaoying, Xiang Aimin, Tian Huafeng
School of Light Industry Science and Engineering, Beijing Technology and Business University, Beijing 100048, China.
Systems Engineering Institute, Academy of Military Science, People's Liberation Army, Beijing 100010, China.
Materials (Basel). 2024 Feb 12;17(4):861. doi: 10.3390/ma17040861.
In this study, polysaccharide-based nanofibrous fast dissolving oral films (FDOFs) were developed using pullulan (PUL) and xanthan gum (XG) via electrospinning. The edible, continuous, and bead-free nanofibers with average diameters ranging from 181.17 nm to 260.84 nm were prepared. The morphological, thermal, mechanical, and water-soluble properties of the nanofibrous FDOFs were characterized. For prospective future applications of the developed PUL/XG FDOFs, a model nutrient of vitamin C (VC) was encapsulated into the FDOFs. The success of VC encapsulation was confirmed by Fourier transform infrared spectroscopy. The encapsulation efficiency of VC was above 85% by ultraviolet-visible spectrophotometer. The amorphous structure of PUL/XG in the nanofibers film was demonstrated by X-ray diffractometer. In addition, the edible FDOFs could dissolve in water within 3 s. The nanofibers film we prepared could be used as nutrient or drug carriers and edible packaging film.
在本研究中,通过静电纺丝法,使用普鲁兰多糖(PUL)和黄原胶(XG)制备了基于多糖的纳米纤维速溶口腔膜(FDOFs)。制备出了平均直径在181.17纳米至260.84纳米之间的可食用、连续且无珠的纳米纤维。对纳米纤维FDOFs的形态、热性能、力学性能和水溶性进行了表征。为了使所开发的PUL/XG FDOFs在未来有潜在应用,将维生素C(VC)这种模型营养素封装到FDOFs中。通过傅里叶变换红外光谱证实了VC封装成功。用紫外可见分光光度计测得VC的包封率高于85%。通过X射线衍射仪证明了纳米纤维膜中PUL/XG的无定形结构。此外,这种可食用的FDOFs能在3秒内溶于水。我们制备的纳米纤维膜可用作营养或药物载体以及可食用包装膜。