Liu Mengyao, Zou Xu, Wu Xinning, Li Xiangxin, Chen Hualei, Pan Fei, Zhang Yuan, Fang Xiaoming, Tian Wenli, Peng Wenjun
State Key Laboratory of Resource Insects, Institute of Apicultural Research, Chinese Academy of Agricultural Sciences, Beijing 100093, China.
School of plant protection, Anhui agricultural university, Hefei 230036, China.
Int J Biol Macromol. 2024 Aug;275(Pt 1):133675. doi: 10.1016/j.ijbiomac.2024.133675. Epub 2024 Jul 4.
With growing concerns about postharvest spoilage of fruits, higher requirements have been placed on high-performance and sustainable active packaging materials. In this study, we prepared curcumin-based functional composite films using chitosan (CS) and Tenebrio molitor larvae protein (TMP) as the substrates. The effects of curcumin concentration on the structural and physicochemical properties of the composite films were determined. Curcumin was equally distributed in the polymer film through physical interactions. Furthermore, the curcumin composite film with 0.3 % addition exhibited a 27.39 % increase in elongation at break (EBA), a 37.04 % increase in the water vapor barrier, and strong UV-blocking properties and antioxidant activity compared with the control film (CS/TMP). The degradation experiment of the composite film on natural soil revealed that the composite film exhibited good biodegradability and environmental protection. Furthermore, the applicability of functional composite films for preserving blueberries was investigated. Compared with the control film and polyethylene (PE) films, the prepared composite films packaging treatment reduced the decay rate and weight loss rate of blueberries during storage, delayed softening and aging, and maintained the quality of blueberries. Using sustainable protein resources (TMP) and natural polysaccharides as packaging materials provides an economically, feasible and sustainable way to achieve the functional preservation of biomass materials.
随着对水果采后腐败问题的日益关注,对高性能且可持续的活性包装材料提出了更高要求。在本研究中,我们以壳聚糖(CS)和黄粉虫幼虫蛋白(TMP)为基质制备了姜黄素基功能复合膜。测定了姜黄素浓度对复合膜结构和理化性质的影响。姜黄素通过物理相互作用均匀分布在聚合物膜中。此外,与对照膜(CS/TMP)相比,添加0.3%姜黄素的复合膜的断裂伸长率(EBA)提高了27.39%,水汽阻隔性提高了37.04%,并具有较强的紫外线阻隔性能和抗氧化活性。复合膜在天然土壤上的降解实验表明,复合膜具有良好的生物降解性和环保性。此外,还研究了功能复合膜对蓝莓保鲜的适用性。与对照膜和聚乙烯(PE)膜相比,制备的复合膜包装处理降低了蓝莓在贮藏期间的腐烂率和失重率,延缓了软化和衰老,保持了蓝莓的品质。使用可持续的蛋白质资源(TMP)和天然多糖作为包装材料,为实现生物质材料的功能保鲜提供了一种经济、可行且可持续的方法。