Salmas Constantinos E, Giannakas Aris E, Baikousi Maria, Kollia Eleni, Tsigkou Vasiliki, Proestos Charalampos
Department of Material Science and Engineering, University of Ioannina, 45110 Ioannina, Greece.
Department of Food Science and Technology, University of Patras, 30100 Agrinio, Greece.
Foods. 2021 Dec 7;10(12):3038. doi: 10.3390/foods10123038.
In this study, CuMt and TiMt montmorillonites were produced via an ion-exchange process with Cu and Ti ions. These nanostructured materials were characterized with X-ray diffraction (XRD) and fourier transform infrared spectroscopy (FTIR) measurements and added as nanoreinforcements and active agents in chitosan (CS)/poly-vinyl-alcohol (PVOH)-based packaging films. The developed films were characterized by XRD and FTIR measurements. The antimicrobial, tensile, and oxygen/water-barrier measurements for the evaluation of the packaging performance were carried out to the obtained CS/PVOH/CuMt and CS/PVOH/TiMt films. The results of this study indicated that CS/PVOH/CuMt film is a stronger intercalated nanocomposite structure compared to the CS/PVOH/TiMt film. This fact reflected higher tensile strength and water/oxygen-barrier properties. The antibacterial activity of these films was tested against four food pathogenic bacteria: , , and . Results showed that in most cases, the antibacterial activity was generated by the CuMt and TiMt nanostructures. Thus, both CS/PVOH/CuMt and CS/PVOH/TiMt films are nanocomposite candidates with very good perspectives for future applications on food edible active packaging.
在本研究中,通过与铜离子和钛离子进行离子交换过程制备了铜蒙脱石(CuMt)和钛蒙脱石(TiMt)。这些纳米结构材料通过X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)测量进行表征,并作为纳米增强剂和活性剂添加到壳聚糖(CS)/聚乙烯醇(PVOH)基包装薄膜中。通过XRD和FTIR测量对所制备的薄膜进行表征。对所得的CS/PVOH/CuMt和CS/PVOH/TiMt薄膜进行了抗菌、拉伸以及氧气/水汽阻隔性能测量,以评估包装性能。本研究结果表明,与CS/PVOH/TiMt薄膜相比,CS/PVOH/CuMt薄膜是一种更强的插层纳米复合结构。这一事实反映出其具有更高的拉伸强度和水汽/氧气阻隔性能。测试了这些薄膜对四种食源致病菌的抗菌活性。结果表明,在大多数情况下,抗菌活性是由CuMt和TiMt纳米结构产生的。因此,CS/PVOH/CuMt和CS/PVOH/TiMt薄膜都是具有很好前景的纳米复合材料,有望用于未来的食品可食用活性包装。