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Procyanidins-Loaded Complex Coacervates for Improved Stability by Self-Crosslinking and Calcium Ions Chelation

机译:原酸盐加载的复合凝聚法,用于通过交联和钙离子螯合提高稳定性

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The purpose of this work was to develop a facile strategy based on self-crosslinking between the core and wall materials in the coacervation system for effective procyanidins (PCs) encapsulation. The coacervates were constructed through the interaction of bioactive PCs, gelatin, and sodium alginate, followed by forming cationic bridge of sodium alginate-calcium ions to improve the stability of PCs. When the concentration of PCs and calcium ions were 6.25 and 0.24 mg/mL, respectively, the PC-loaded coacervates showed spherical shape with a size about 150 nm, and the microcapsulation efficiency and yield was 81.19 +/- 1.47 and 87.86 +/- 2.67%, respectively. The photothermal stability of PCs was effectively improved by embedding them in coacervates. The decrease of mitochondrial membrane potential in PC-12 cells induced by H2O2 was significantly inhibited by PC coacervates, demonstrating an improved protection effect of PCs after being encapsulated in coacervates.
机译:这项工作的目的是在核心和墙壁材料之间的自交联,在凝聚系统中的核心和墙壁材料之间进行自交联的策略,以进行有效的原霉素(PCS)封装。 通过生物活性PC,明胶和海藻酸钠的相互作用构建凝聚层,然后形成藻酸钠 - 钙离子的阳离子桥以提高PC的稳定性。 当PC和钙离子的浓度分别为6.25和0.24mg / ml时,PC加载的凝聚酸盐显示出尺寸约为150nm的球形,并且微胶囊效率和产率为81.19 +/- 1.47和87.86 +/- 2.67%。 通过在凝聚层中嵌入它们来有效地改善了PC的光热稳定性。 通过PC凝聚酸盐凝固,通过H2O2诱导的PC-12细胞中的线粒体膜电位降低,证明在凝聚中包封后PCS的改善保护作用。

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