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二氢杨梅素/蛋白质皮克林乳液:界面行为、流变学及生物可及性

Dihydromyricetin/Protein Pickering Emulsions: Interfacial Behavior, Rheology, and Bioaccessibility.

作者信息

Mei Shengqi, Dou Lei, Cheng Kaixuan, Hou Guangqian, Zhang Chi, An Jianhui, Tao Yexing, Deng Lingli, Shang Longchen

机构信息

College of Biological and Food Engineering, Hubei Minzu University, Enshi 445000, China.

Hubei Key Laboratory of Selenium Resource Research and Biological Application, Hubei Minzu University, Enshi 445000, China.

出版信息

Foods. 2025 Jul 18;14(14):2520. doi: 10.3390/foods14142520.

Abstract

Protein-polyphenol-based delivery vehicles are effective strategies for encapsulating bioactive compounds, thereby enhancing their solubility and bioaccessibility. In this study, dihydromyricetin/soy protein isolate (DHM/SPI) complexes were used as emulsifiers to prepare Pickering emulsions for DHM delivery. The results show that DHM and SPI form negatively charged complexes through hydrogen bonding, and the complex size decreases and stabilizes with increasing DHM addition. The size of the emulsion droplets was inversely related to the concentration of DHM addition (), particle concentration (), and ionic strength (). Conversely, the increasing oil phase concentration () was positively correlated with droplet size. The CLSM results confirmed the expected oil-in-water emulsion, while the rheological behavior of the Pickering emulsion highlighted its elastic, gel-like network structure and non-Newtonian fluid properties. Moreover, DHM effectively slowed lipid oxidation in the emulsion, and the bioaccessibility of DHM reached 33.51 ± 0.31% after simulated digestion. In conclusion, this emulsion system shows promising potential for delivering DHM and harnessing its bioactive effects.

摘要

基于蛋白质-多酚的递送载体是包封生物活性化合物的有效策略,从而提高其溶解度和生物可及性。在本研究中,二氢杨梅素/大豆分离蛋白(DHM/SPI)复合物被用作乳化剂来制备用于递送DHM的皮克林乳液。结果表明,DHM和SPI通过氢键形成带负电荷的复合物,并且随着DHM添加量的增加,复合物尺寸减小并稳定。乳液滴的尺寸与DHM添加浓度()、颗粒浓度()和离子强度()呈负相关。相反,油相浓度()的增加与液滴尺寸呈正相关。共聚焦激光扫描显微镜(CLSM)结果证实了预期的水包油乳液,而皮克林乳液的流变行为突出了其弹性、凝胶状网络结构和非牛顿流体性质。此外,DHM有效地减缓了乳液中的脂质氧化,并且在模拟消化后,DHM的生物可及性达到了33.51±0.31%。总之,这种乳液体系在递送DHM并发挥其生物活性作用方面显示出有前景的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0199/12294427/551e78a7ddd1/foods-14-02520-g005.jpg

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