姜黄素
化学
傅里叶变换红外光谱
乳铁蛋白
咖啡因
控制释放
色谱法
化学工程
核化学
生物化学
纳米技术
材料科学
医学
工程类
内分泌学
作者
Ana I. Bourbon,Miguel A. Cerqueira,A. A. Vicente
标识
DOI:10.1016/j.jfoodeng.2016.02.016
摘要
Curcumin and caffeine (used as lipophilic and hydrophilic model compounds, respectively) were successfully encapsulated in lactoferrin-glycomacropeptide (Lf-GMP) nanohydrogels by thermal gelation showing high encapsulation efficiencies (>90%). FTIR spectroscopy confirmed the encapsulation of bioactive compounds in Lf-GMP nanohydrogels and revealed that according to the encapsulated compound different interactions occur with the nanohydrogel matrix. The successful encapsulation of bioactive compounds in Lf-GMP nanohydrogels was also confirmed by fluorescence measurements and confocal laser scanning microscopy. TEM images showed that loaded nanohydrogels maintain their spherical shape with sizes of 112 and 126 nm for curcumin and caffeine encapsulated in Lf-GMP nanohydrogels, respectively; in both cases a polydispersity of 0.2 was obtained. The release mechanisms of bioactive compounds through Lf-GMP nanohydrogels were evaluated at pH 2 and pH 7, by fitting the Linear Superimposition Model to the experimental data. The bioactive compounds release was found to be pH-dependent: at pH 2, relaxation is the governing phenomenon for curcumin and caffeine compounds and at pH 7 Fick's diffusion is the main mechanism of caffeine release while curcumin was not released through Lf-GMP nanohydrogels.
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