黄檀
化学
DPPH
刺槐豆胶
辣木
喷雾干燥
阿布茨
多酚
羧甲基纤维素
麦芽糊精
粒径
类黄酮
多糖
食品科学
抗氧化剂
核化学
色谱法
材料科学
有机化学
钠
流变学
黄原胶
物理化学
复合材料
作者
Cecilia Castro-López,Carlos Espinoza‐González,Rodolfo Ramos‐González,Daniel Boone,Miguel Á. Aguilar-González,Guillermo Cristian Guadalupe Martínez-Ávila,Cristóbal N. Aguilar,Janeth M. Ventura-Sobrevilla
标识
DOI:10.1016/j.foodres.2021.110291
摘要
In this work, polyphenols from Moringa oleifera (Mor) leaves were extracted by microwave-assisted extraction (MAE) and encapsulated by spray-drying (SD). Particularly, we explored the influence of tragacanth gum (TG), locust bean gum (LBG), and carboxymethyl-cellulose (CMC) as wall-materials on the physicochemical behavior of encapsulated Mor. Single or combined wall-material treatments (100:00 and 50:50 ratios, and total solid content 1%) were tested. The results showed the wall-material had a significant effect on the process yield (55.7–68.3%), encapsulation efficiency (24.28–35.74%), color (yellow or pale-yellow), total phenolic content (25.17–27.49 mg GAE g−1 of particles), total flavonoid content (23.20–26.87 mg QE g−1 of particles), antioxidant activity (DPPH• = 5.96–6.95 mg GAE g−1; ABTS•+ = 5.61–6.18 mg TE g−1 of particles), and particle size distribution (D50 = 112–1946 nm) of the encapsulated Mor. On the other hand, SEM analysis showed smooth and spherical particles, while TGA and DSC analyses confirmed the encapsulation of bioactive compounds based on the changes in thermal peaks. Finally, XRD analysis showed that the particles have an amorphous behavior. The encapsulated Mor produced with individual TG or CMC demonstrated better properties than those obtained from mixed gums. Thus, TG or CMC might be feasible wall materials for manufacturing encapsulated Mor that conserve the phenolic content and antioxidant activity.
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