Yang Songqi, Jin Yunan, Li Feifan, Shi Jinfeng, Liang Jiahui, Mei Xiaohong
College of Food Science & Nutritional Engineering, China Agricultural University, Beijing 100083, China.
Key Laboratory of Safety Assessment of Genetically Modified Organism (Food Safety), Ministry of Agriculture and Rural Affairs of the People's Republic of China, Beijing 100083, China.
Foods. 2024 Feb 22;13(5):665. doi: 10.3390/foods13050665.
As a lipophilic flavonol, quercetin has low bioavailability, which limits its application in foods. This work aimed to prepare a hordein-based system to deliver quercetin. We constructed hordein-whey isolate protein fibril (WPIF) complexes (H-Ws) by anti-solvent precipitation method at pH 2.5. The TEM results of the complexes showed that spherical-like hordein particles were wrapped in WPIF clusters to form an interconnected network structure. FTIR spectra revealed that hydrogen bonds and hydrophobic interactions were the main driving forces for the complex formation. H-W (the mass ratio of hordein to WPIF was 1:1) with a three-phase contact angle of 70.2° was chosen to stabilize Pickering emulsions with oil volume fractions (φ) of 40-70%. CLSM images confirmed that the oil droplets were gradually embedded in the three-dimensional network structure of H-W with the increase in oil volume fraction. The emulsion with φ = 70% showed a tight gel structure. Furthermore, this emulsion exhibited high encapsulation efficiency (97.8%) and a loading capacity of 0.2%, demonstrating the potential to deliver hydrophobic bioactive substances. Compared with free quercetin, the bioaccessibility of the encapsulated quercetin (35%) was significantly improved. This study effectively promoted the application of hordein-based delivery systems in the food industry.
作为一种亲脂性黄酮醇,槲皮素的生物利用度较低,这限制了其在食品中的应用。本研究旨在制备一种基于大麦醇溶蛋白的体系来递送槲皮素。我们在pH 2.5条件下通过反溶剂沉淀法构建了大麦醇溶蛋白-乳清分离蛋白原纤维(WPIF)复合物(H-Ws)。复合物的透射电镜结果表明,球形的大麦醇溶蛋白颗粒被包裹在WPIF簇中,形成了一个相互连接的网络结构。傅里叶变换红外光谱显示,氢键和疏水相互作用是复合物形成的主要驱动力。选择三相接触角为70.2°的H-W(大麦醇溶蛋白与WPIF的质量比为1:1)来稳定油相体积分数(φ)为40-70%的Pickering乳液。共聚焦激光扫描显微镜图像证实,随着油相体积分数的增加,油滴逐渐嵌入H-W的三维网络结构中。φ = 70%的乳液呈现出紧密的凝胶结构。此外,该乳液表现出高包封率(97.8%)和0.2%的载药量,证明了其递送疏水性生物活性物质的潜力。与游离槲皮素相比,包封型槲皮素的生物可及性(35%)显著提高。本研究有效地推动了基于大麦醇溶蛋白的递送系统在食品工业中的应用。