School of Basic Sciences, Department of Chemistry, Rani Channamma University, Vidyasangama, P-B, NH-4, Belagavi 591156, Karnataka, India.
School of Basic Sciences, Department of Chemistry, Rani Channamma University, Vidyasangama, P-B, NH-4, Belagavi 591156, Karnataka, India.
Int J Biol Macromol. 2022 Oct 1;218:799-815. doi: 10.1016/j.ijbiomac.2022.07.174. Epub 2022 Jul 26.
The present work describes the natural anthocyanin from Jacaranda cuspidifolia (JC) flower immobilized within a biopolymer matrix composed of chitosan (CS) and polyvinyl alcohol (PVA) gave novel intelligent/active packaging films (CPC). We introduced microwave irradiation to prepare polymeric composite films noticed faster mixing of the polymers and extract take place than the conventional method. The prepared composite films are characterized by various analytical and spectroscopic techniques. The smooth SEM images demonstrated CS/PVA matrix miscibility and compatibility with anthocyanin for the film formation. The addition of anthocyanin to the CS/PVA films significantly reduced UV-Vis light transmission, while causing a slight decrease in the films transparency. An increased anthocyanin concentration on polymer films showed improved oxygen permeability (77.09 %), moisture retention capacity (11.64 %), and water vapor transmission rate (43.10 %) substantially. Additionally, the prepared CPC smart films exhibited strong antioxidant (97.92 %) as well as antibacterial activities against common foodborne pathogens such as S. aureus, and E. coli. Furthermore, the prepared smart films demonstrated pink color in acidic, while grey to yellowish in basic solvent. Further, the color response of the freshness label was consistent with the spoilage Total Volatile Basic-Nitrogen (TVB-N) content determined in the fish samples with varied time period. The CPC smart films also showed promising application in terms of monitoring freshness of the fish fillets at room temperature. The obtained results suggested that, the prepared CPC smart films have potential to be used as quality indicator in the marine food packaging system.
本工作描述了固定在壳聚糖 (CS) 和聚乙烯醇 (PVA) 组成的生物聚合物基质中的 Jacaranda cuspidifolia (JC) 花天然花色苷,形成了新型智能/活性包装膜 (CPC)。我们引入微波辐射来制备聚合复合材料膜,发现与传统方法相比,聚合物的混合和提取更快。通过各种分析和光谱技术对制备的复合膜进行了表征。光滑的 SEM 图像表明 CS/PVA 基质与花色苷具有良好的混溶性和相容性,有利于成膜。花色苷的加入显著降低了 CS/PVA 薄膜的紫外可见光透过率,同时略微降低了薄膜的透明度。聚合物薄膜上花色苷浓度的增加显著提高了氧气渗透率 (77.09%)、水分保持能力 (11.64%) 和水蒸气透过率 (43.10%)。此外,所制备的 CPC 智能薄膜表现出很强的抗氧化活性 (97.92%) 和对常见食源性致病菌(如金黄色葡萄球菌和大肠杆菌)的抗菌活性。此外,所制备的智能薄膜在酸性溶剂中呈现粉红色,在碱性溶剂中呈现灰色到黄棕色。此外,新鲜度标签的颜色响应与在不同时间段测定的鱼样中总挥发性碱性氮 (TVB-N) 含量的变质一致。CPC 智能薄膜在监测室温下鱼片的新鲜度方面也显示出良好的应用前景。研究结果表明,所制备的 CPC 智能薄膜具有在海洋食品包装系统中用作质量指示剂的潜力。