College of Food Science, Shenyang Agricultural University, National R&D Professional Center for Berry Processing, National Engineering and Technology of Research Center for Small Berry, Key Laboratory of Healthy Food Nutrition and Innovative Manufacturing, Shenyang, Liaoning 110866, China.
Zhejiang Lanmei Technology Co., Ltd., Zhuji, Zhejiang 311800, China.
Int J Biol Macromol. 2024 Oct;278(Pt 3):134928. doi: 10.1016/j.ijbiomac.2024.134928. Epub 2024 Aug 22.
Proteins have been studied and applied to improve the stability of anthocyanins (ACNs), but the changes in the pH microenvironment during the preparation of steady-state systems are often ignored, and more attention is given to the stability of the system after preparation. In this study, we propose the "anthocyanin front-end homeostasis strategy", which involves designing a system can protect anthocyanins under acidic conditions so that more anthocyanin prototypes can be loaded inside the protein. Anthocyanins are encapsulated in liposomes (Lip) at pH 3.0 and combined with casein methacrylate (CSMA) to form Anthocyanin-loaded liposomes/CSMA hydrogel (Lip@ACNs/CSMA), with good physical properties and good blood compatibility. The system increased the hydrogen peroxide scavenging capacity by 1.16 mg Vc equiv./mg ACNs and the cellular antioxidant activity by 17.55 μM quercetin/100 mg ACNs, the photo and thermal storage stability increased by 36.50 % and 30.71 %, the digestive rate increased by 17.50 %, and the biological availability increased by 0.0049 mg/mL. This study designed a liposome casein hydrogel as an efficient front-end homeostatic anthocyanin loading system and provided a new approach for improving the stability of anthocyanins.
蛋白质已被研究并应用于提高花色苷(ACNs)的稳定性,但在制备稳态系统过程中pH 微环境的变化往往被忽视,更多关注的是系统制备后的稳定性。在本研究中,我们提出了“花色苷前端内稳策略”,涉及设计一种系统可以在酸性条件下保护花色苷,以便在蛋白质内部装载更多的花色苷原型。花色苷在 pH 3.0 下包封在脂质体(Lip)中,并与酪蛋白甲基丙烯酸酯(CSMA)结合,形成负载花色苷的脂质体/CSMA 水凝胶(Lip@ACNs/CSMA),具有良好的物理性能和良好的血液相容性。该系统将过氧化氢清除能力提高了 1.16mg Vc 当量/mg ACNs,细胞抗氧化活性提高了 17.55μM 槲皮素/100mg ACNs,光和热储存稳定性提高了 36.50%和 30.71%,消化率提高了 17.50%,生物利用度提高了 0.0049mg/mL。本研究设计了一种脂质体-酪蛋白水凝胶作为一种有效的花色苷前端内稳装载系统,为提高花色苷的稳定性提供了一种新方法。