食品科学 ›› 2022, Vol. 43 ›› Issue (18): 38-46.doi: 10.7506/spkx1002-6630-20211112-159

• 食品化学 • 上一篇    

淀粉样纤维-阿魏酸水凝胶的制备及其性质

佘明汉,郑丽丽,艾斌凌,杨旸,郑晓燕,校导,蒋志国,盛占武   

  1. (1.海南大学食品科学与工程学院,海南 海口 570228;2.中国热带农业科学院海口实验站,海口市香蕉生物学实验室,海南 海口 571101)
  • 发布日期:2022-09-28
  • 基金资助:
    海南省自然科学基金创新研究团队项目(320CXTU440);国家自然科学基金面上项目(31772096); 中国热带农业科学院基本科研业务费专项(1630092019001)

Preparation and Properties of Ferulic Acid-Loaded Hydrogel Based on Amyloid Fibrils

SHE Minghan, ZHENG Lili, AI Binling, YANG Yang, ZHENG Xiaoyan, XIAO Dao, JIANG Zhiguo, SHENG Zhanwu   

  1. (1. College of Food Science and Technology, Hainan University, Haikou 570228, China; 2. Haikou Banana Biology Laboratory, Haikou Experimental Station, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China)
  • Published:2022-09-28

摘要: 为提高阿魏酸的负载率和稳定性,将蛋白质在酸性条件下热处理形成淀粉样纤维作为载体,与阿魏酸自组装形成水凝胶,考察不同淀粉样纤维质量浓度、阿魏酸添加量及pH值对阿魏酸负载率的影响,优化水凝胶制备条件。利用红外光谱、内源荧光光谱、X射线衍射、扫描电镜、流变仪等探究蛋白质结构变化、水凝胶的微观结构、凝胶特性等,考察多酚添加量对水凝胶结构和性质的影响。利用超高效液相色谱测试不同环境中水凝胶中阿魏酸的光热稳定性,采用体外模拟消化系统考察阿魏酸的缓释能力。结果表明,当淀粉样纤维质量浓度70 g/L、阿魏酸添加量0.6%、pH 5条件下水凝胶体系中阿魏酸负载率最佳达6.99%,且水凝胶可有效减少阿魏酸在光热环境下的降解速率,提升其光热稳定性。蛋白纤维化形成淀粉样纤维其二级结构α-螺旋和β-折叠占比显著升高,三级结构形成聚集前体状态,更利于结合多酚形成结构稳定的水凝胶。当阿魏酸添加量为0.6%时,阿魏酸-淀粉样纤维水凝胶凝胶性最佳、分子间结构最紧密、储能模量最高(1 655.5 Pa)、溶胀度最低(160%),此时样品在体外模拟消化系统表现出最佳的缓释性能。

关键词: 淀粉样纤维;阿魏酸;自组装;水凝胶;负载率;稳定性

Abstract: To improve the loading rate and stability of ferulic acid, ferulic acid-loaded hydrogel based on amyloid fibrils, formed by heat treatment of hen egg white lysozyme under acidic conditions, was prepared by self assembly. The effects of amyloid fibril concentration, polyphenol addition, and pH on the loading rate of ferulic acid were investigated to optimize the hydrogel preparation conditions. The structural changes of the protein and the microstructure and gel properties of the hydrogel were explored by infrared (IR) spectroscopy, endogenous fluorescence spectroscopy, X-ray diffraction (XRD), scanning electron microscopy (SEM) and rheometry, and the effects of polyphenol addition on the structure and properties of the hydrogel were evaluated. Ultra-high performance liquid chromatography (UPLC) was used to test the stability of ferulic acid loaded in the hydrogel under thermal and light conditions. A simulated digestion system was established to investigate the in vitro slow release profile of ferulic acid from the hydrogel network. The results indicated that the optimum preparation conditions that provided maximum ferulic acid loading of 6.99% were determined as 70 g/L, 0.6% and pH 5 for concentration of amylose fibril, addition of ferulic acid and pH, respectively. Moreover, the hydrogel could effectively reduce the degradation of ferulic acid under different thermal and light conditions. Compared with lysozyme, the proportion of α-helix and β-sheet in the amyloid fibril increased and the tertiary structure formed an aggregation precursor state, which was more favorable for binding to polyphenols to form structurally stable hydrogels. The amyloid fibril-based hydrogel loaded with 0.6% ferulic acid had the gelation performance, tightest intermolecular structure, highest storage modulus (1 655.5 Pa), and lowest swelling rate (160%), and best slow-release performance in vitro.

Key words: amyloid fibrils; ferulic acid; self assembly; hydrogel; loading rate; stability

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