消化(炼金术)
结晶
动力学
乳状液
化学
化学工程
滞后时间
脂类消化
降级(电信)
色谱法
脂肪酶
有机化学
酶
工程类
物理
生物
生物系统
电信
量子力学
计算机科学
作者
Wan‐Tong Li,Wenbo Wang,Yong Cao,Yaqi Lan,Qingrong Huang,Jie Xiao
标识
DOI:10.1021/acs.jafc.1c07987
摘要
Double emulsions (DEs) are promising delivery vehicles for the protective and programmed release of bioactive compounds. Herein, DEs with monoglycerides crystallized at the internal- or external interface or oil phase were fabricated. The results suggested that the crystallization site of monoglycerides exerts a significant role in retarding the structural degradation and lipid digestion of DEs by affecting the available contact area of lipase. At the initial stage of intestinal digestion, compared with noncrystalline DEs (82.1%, 3.7 min), the burst release of internal markers in the internal interface crystallized emulsions was decreased by 42.4% and the lag time of free fatty acid (FFA) release was delayed by 5.8 min in the external interface crystallized emulsions. The structural integrity and digestion kinetics of the external interface crystallized DEs were synchronized with the retention time of the interfacial crystals. Therefore, crystallizable emulsifiers exhibit unique and fine regulatory effects on the digestive properties of emulsions.
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