Fıçıcılar Bilge Bilgin, Korkmaz Koray
Fatsa Faculty of Marine Sciences, Fisheries Technologies Engineering, Ordu University, Fatsa, 52200 Ordu, Turkey.
Polymers (Basel). 2025 Jun 25;17(13):1754. doi: 10.3390/polym17131754.
This study developed edible composite films incorporating the anchovy () byproduct protein hydrolysate (ABPH) into a chitosan matrix and evaluated their physicochemical, structural, and functional properties for food packaging applications. ABPH, produced by Flavourzyme enzymatic hydrolysis, exhibited high hydrolysis (54-57%) and high protein content (80.7 ± 0.94%). Films were produced using 1%, 2%, and 3% ABPH (CH-FP1, CH-FP2, and CH-FP3) by the casting method. Characterization of the films revealed that a higher ABPH concentration increased water swelling, solubility, and opacity, while tensile strength decreased and elongation at break improved, indicating greater flexibility. FTIR analysis showed that ABPH was incorporated through enlarged amide I and II bands and broader -OH/NH regions, suggesting hydrogen bonding and protein-polysaccharide interactions. SEM images demonstrated good dispersion at low concentrations and more uniform surfaces at higher ABPH levels. This suggests that chitosan-ABPH composite films can serve as biodegradable, protein-enriched packaging materials with adjustable mechanical and barrier properties to valorize fishery waste and sustainable food packaging solutions.
本研究开发了一种可食用复合膜,将凤尾鱼()副产物蛋白水解物(ABPH)融入壳聚糖基质中,并评估了它们在食品包装应用中的物理化学、结构和功能特性。通过风味酶酶解产生的ABPH具有高水解率(54 - 57%)和高蛋白含量(80.7 ± 0.94%)。采用流延法使用1%、2%和3%的ABPH制备了薄膜(CH - FP1、CH - FP2和CH - FP3)。薄膜表征显示,较高的ABPH浓度会增加水溶胀性、溶解度和不透明度,而拉伸强度降低,断裂伸长率提高,表明柔韧性增强。傅里叶变换红外光谱(FTIR)分析表明,ABPH通过扩大的酰胺I和II带以及更宽的 - OH/NH区域掺入,表明存在氢键和蛋白质 - 多糖相互作用。扫描电子显微镜(SEM)图像显示,在低浓度下分散良好,在较高ABPH水平下表面更均匀。这表明壳聚糖 - ABPH复合膜可作为可生物降解、富含蛋白质的包装材料,具有可调节的机械性能和阻隔性能,以实现渔业废弃物的增值利用和可持续的食品包装解决方案。