Department of Organic Colorants, Institute for Color Science and Technology, Tehran 16765-654, Iran.
Department of Organic Colorants, Institute for Color Science and Technology, Tehran 16765-654, Iran; Center of Excellence for Color Science and Technology, Institute for Color Science and Technology, Tehran 16765-654, Iran.
Int J Biol Macromol. 2020 Dec 1;164:3349-3360. doi: 10.1016/j.ijbiomac.2020.08.218. Epub 2020 Aug 31.
This study aimed to characterize novel complex coacervates based on Zedo gum and cress seed gum as natural polysaccharides with gelatin (type-A and type-B) as potential wall materials for encapsulation of anthocyanins. The coacervates were prepared under optimum conditions (pH and gum to gelatin ratio), freeze-dried, and the resulted powders were analyzed in terms of thermal stability, morphology, and molecular interactions. The thermogravimetric analysis revealed that molecular interaction between polysaccharides and gelatins led to enhance the thermal stability of gums. The morphology of coacervates showed that while ZG-gelatin and CSG-gelatin coacervates resulted in cubic and irregular particles, freeze-drying severely changed the morphology of coacervates. Moreover, SEM images at lower magnification showed big voids for lyophilized coacervates, while SEM images confirmed a compact and dense microstructure of coacervates at higher magnification and BET method. Also, the molecular interaction of polysaccharides and gelatin in aqueous media was assessed using Raman spectroscopy. Furthermore, findings showed that the type-A of gelatin is a more suitable protein to form coacervates with polysaccharides. In the next step, natural anthocyanins from barberry were encapsulated by proposed coacervates as wall material. The encapsulated extract had elevated thermal stability and showed a lower degradation rate.
本研究旨在以獐芽菜胶和獐牙菜聚糖为天然多糖,以明胶(A 型和 B 型)为潜在壁材,制备新型复合凝聚物,用于包封花色苷。在最佳条件(pH 值和胶与明胶的比例)下制备凝聚物,冷冻干燥,并对所得粉末进行热稳定性、形态和分子相互作用分析。热重分析表明,多糖与明胶之间的分子相互作用提高了胶的热稳定性。凝聚物的形态表明,ZG-明胶和 CSG-明胶凝聚物形成立方和不规则颗粒,而冷冻干燥严重改变了凝聚物的形态。此外,低倍扫描电镜图像显示冻干凝聚物存在大空隙,而高倍扫描电镜图像和 BET 法证实了凝聚物的紧密和致密的微观结构。此外,还使用拉曼光谱评估了多糖和明胶在水介质中的分子相互作用。此外,研究结果表明,A 型明胶是与多糖形成凝聚物更合适的蛋白质。下一步,用所提出的凝聚物作为壁材包封小檗中的天然花色苷。包封提取物具有更高的热稳定性,降解速度更低。