Enhancing phycocyanin solubility via complexation with fucoidan or κ-carrageenan and improving phycocyanin color stability by encapsulation in alginate-pregelatinized corn starch composite gel beads

褐藻糖胶 溶解度 化学 卡拉胶 生物高聚物 多糖 淀粉 藻蓝蛋白 化学工程 色谱法 海藻酸钙 复合数 壳聚糖 聚合物 材料科学 有机化学 食品科学 蓝藻 生物 细菌 工程类 复合材料 遗传学
作者
Nasireh Alavi,Mohammad‐Taghi Golmakani,Seyed Mohammad Hashem Hosseini,Mehrdad Niakousari,Marzieh Moosavi‐Nasab
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:242: 124762-124762 被引量:4
标识
DOI:10.1016/j.ijbiomac.2023.124762
摘要

Phycocyanin (PC), as a pigment-protein complex, aggregates and precipitates in acidic environments. In this context, complex formation with anionic polysaccharides is a strategy to enhance protein solubility. Besides, acidic conditions negatively affect the inherent blue color of PC, which can be prevented by encapsulation. Thereupon, in the present study, two different biopolymer-based systems, namely complexes and hydrogel beads, were prepared to increase PC solubility and its color stability under acidic conditions, respectively. Fucoidan and κ-carrageenan (KC) were separately utilized to make a complex with PC. Calcium alginate-pregelatinized corn starch (PCS) composite gel beads were used to encapsulate PC. The prepared samples were added into model systems simulating acidic conditions and then characterized during storage at 4 and 25 °C under dark conditions. Appropriate colloidal stabilities were observed for fucoidan/PC and KC/PC model systems. The color of the samples remained stable at 4 °C. As well, the bead carriers (i.e. alginate-PCS) properly protected PC against low pH conditions over time at 4 °C. Thereupon, the blue color of the beads satisfactorily remained stable at this temperature. The findings showed that complexation with fucoidan or KC and encapsulation in mixed hydrogel beads are promising routes for improving PC solubility and its color stability, respectively.
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