活性包装
花青素
多糖
化学
食物腐败
水溶液中的金属离子
食品包装
壳聚糖
抗氧化剂
聚合物
金属
食品科学
化学工程
有机化学
细菌
工程类
生物
遗传学
作者
Han-Lun Huang,I‐Lin Tsai,Chi Lin,Yu-Hao Hang,Yi‐Cheng Ho,Min‐Lang Tsai,Fwu‐Long Mi
标识
DOI:10.1016/j.carbpol.2022.120133
摘要
In this study, metalloanthocyanin-inspired, biodegradable packaging films were developed by incorporating purple cauliflower extracted (PCE) anthocyanins into alginate (AL)/carboxymethyl chitosan (CCS) hybrid polymer matrices based on complexation of metal ions with these marine polysaccharides and anthocyanins. PCE anthocyanins-incorporated AL/CCS films were further modified with fucoidan (FD) because this sulfated polysaccharide can form strong interactions with anthocyanins. Metals-involved complexation (Ca2+ and Zn2+-crosslinked films) improved the mechanical strength and water vapor permeability but reduced the swelling degree of the films. Zn2+-cross-linked films exhibited significantly higher antibacterial activity than did pristine (non-crosslinked) and Ca2+-cross-linked films. The metal ion/polysaccharide-involved complexation with anthocyanin reduced the release rate of anthocyanins, increased the storage stability and antioxidant capability, and improved the sensitivity of the colorimetric response of the indicator films for monitoring the freshness of shrimp. The anthocyanin-metal-polysaccharide complex film showed great potential as active and intelligent packaging of food products.
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