Azarshah Aida, Moosavi-Nasab Marzieh, Khorram Mohammad, Babaei Sedigheh, Oliyaei Najmeh
Department of Food Science and Technology, School of Agriculture, Shiraz University, P.O. BOX: 7144113131, Shiraz, Iran.
Seafood Processing Research Center, School of Agriculture, Shiraz University, P.O. BOX: 7144113131, Shiraz, Iran.
Food Sci Biotechnol. 2022 Nov 5;32(3):329-339. doi: 10.1007/s10068-022-01197-7. eCollection 2023 Mar.
This study aims to prepare fish gelatin nanofibers extracted from fish waste by using electrospinning method and its encapsulation with fucoxanthin extracted from macroalgae . Four concentrations of gelatin and two concentrations of fucoxanthin were used under different voltage for preparing the nanofibers. The optimal conditions for producing the nanofibers were considered as 30%, 10 cm, 12 kV, and 5% for fish gelatin concentration, distance, voltage, and fucoxanthin, respectively. The average thickness of nanofibers was estimated 198 ± 0.073 nm. The FTIR results confirmed the presence of functional groups between fucoxanthin and gelatin. The loading efficiency of fucoxanthin in nanofibers and the free radical scavenging of DPPH were calculated 91% and 62%, respectively. Further, these nanofibers showed the antibacterial properties against bacteria. Based on the results, the fish gelatin nanofibers containing fucoxanthin can be proposed as a suitable coating for using in the food packaging industry.
本研究旨在通过静电纺丝法制备从鱼废料中提取的鱼明胶纳米纤维,并将其与从大型藻类中提取的岩藻黄质进行包封。在不同电压下使用四种浓度的明胶和两种浓度的岩藻黄质来制备纳米纤维。制备纳米纤维的最佳条件分别为鱼明胶浓度30%、距离10 cm、电压12 kV和岩藻黄质5%。纳米纤维的平均厚度估计为198±0.073 nm。傅里叶变换红外光谱(FTIR)结果证实了岩藻黄质和明胶之间存在官能团。计算得出纳米纤维中岩藻黄质的负载效率和对二苯基苦味酰基自由基(DPPH)的自由基清除率分别为91%和62%。此外,这些纳米纤维对细菌显示出抗菌性能。基于这些结果,含岩藻黄质的鱼明胶纳米纤维可被提议作为一种适用于食品包装行业的涂层。