Liu Yingzhu, Liu Rongxu, Shi Jingbo, Zhang Rui, Tang Hongjie, Xie Cancan, Wang Fenghui, Han Jianchun, Jiang Longwei
College of Horticulture and Landscape Architecture, Northeast Agricultural University, Harbin 150030, China.
College of Food Science, Northeast Agricultural University, Harbin 150030, China.
Food Chem X. 2023 May 18;18:100714. doi: 10.1016/j.fochx.2023.100714. eCollection 2023 Jun 30.
Active films were developed based on chitosan, esterified chitin nanofibers and rose essential oil (REO). The joint effects of chitin nanofibers and REO on structure and physicochemical properties of chitosan film were investigated. Scanning electron microscopy and Fourier transform infrared spectroscopy showed that the chitin nanofibers and REO had significant effects on the morphology and chemical structure of chitosan composite films. The negatively charged esterified chitin nanofibers formed a compact network structure through intermolecular hydrogen bonding and electrostatic interactions with the positively charged chitosan matrix. Chitin nanofibers and REO synergistically enhanced the water resistance, mechanical properties and UV resistance of chitosan-based films, but the addition of REO increased the oxygen permeability. Furthermore, the addition of REO enhanced the inhibition of ABTS and DPPH free radicals and microorganisms by chitosan-based film. Therefore, chitosan/chitin nanofiber-based active films containing REO as food packaging materials can potentially provide protection to extend food shelf life.
基于壳聚糖、酯化甲壳素纳米纤维和玫瑰精油(REO)制备了活性薄膜。研究了甲壳素纳米纤维和REO对壳聚糖薄膜结构和理化性质的联合作用。扫描电子显微镜和傅里叶变换红外光谱表明,甲壳素纳米纤维和REO对壳聚糖复合薄膜的形态和化学结构有显著影响。带负电荷的酯化甲壳素纳米纤维通过分子间氢键和与带正电荷的壳聚糖基质的静电相互作用形成致密的网络结构。甲壳素纳米纤维和REO协同增强了壳聚糖基薄膜的耐水性、机械性能和抗紫外线性能,但REO的添加增加了氧气透过率。此外,REO的添加增强了壳聚糖基薄膜对ABTS和DPPH自由基及微生物的抑制作用。因此,含有REO的壳聚糖/甲壳素纳米纤维基活性薄膜作为食品包装材料有可能提供保护以延长食品保质期。