Process Optimisation, Structural Characterisation and Stability Analysis of Soybean Isolate Protein-curcumin Nanoparticle Preparation

被引:0
|
作者
Ren, Jie [1 ]
Lu, Zhihao [1 ]
Wu, Hanshuo [1 ]
Jiao, Xinru [2 ]
Liu, Wenying [3 ]
Li, Guoming [1 ]
机构
[1] Beijing Protein Functional Peptide Engineering and Technology Research Centre, China National Institute of Food and Fermentation Industry, Beijing,100015, China
[2] School of Food Science and Engineering, Beijing Agricultural College, Beijing,100096, China
[3] College of Engineering, China Agricultural University, Beijing,100083, China
关键词
Fourier transform infrared spectroscopy;
D O I
10.16429/j.1009-7848.2024.09.024
中图分类号
学科分类号
摘要
The application of curcumin in the food industry is limited due to its poor water dispersibility and instability. To overcome this limitation, in this study, a pH-driven method was used to construct soybean isolate protein-curcumin nanoparticles (SPI-Cur) using soybean isolate protein as the packaging material (SPI), and the loading rate was used as the evaluation index, and the three major factors affecting the loading rate of soybean isolate protein-curcumin nanoparticles (protein concentration, curcumin addition concentration, and pH-driven combinations) were respectively subjected to one-factor experimental analysis and response surface condition optimization, the optimal preparation process for SPI-Cur nanoparticles was determined to be: protein amount concentration of 50 mg/mL, curcumin addition mass concentration of 0.4 mg/mL, and pH-driven combination of pH value adjusted back from 13.0 to 7.0. By the optimal process obtained SPI-Cur nanoparticles were evaluated in terms of the particle size, ζ-potential, PDI dispersibility index, appearance and morphology,Fourier infrared spectroscopy (FTIR) and x-ray diffraction, it was concluded that curcumin was successfully loaded into the SPI nanocomplexes and was captured in an amorphous form in the soybean isolate protein matrix. In addition, the stability analysis results concluded that SPI could effectively improve the thermal and gastrointestinal stability of curcumin, and had a better protective effect on curcumin. This study provides an optimal process for the preparation of SPI-Cur nanoparticles by pH-driven method and also shows that SPI can be used as a delivery matrix for hydrophobic bioactives. © 2024 Chinese Institute of Food Science and Technology. All rights reserved.
引用
收藏
页码:256 / 267
相关论文
共 35 条
  • [31] Insight on the interaction between soybean protein isolate and ionic/ non-ionic polysaccharides: Structural analysis, oil-water interface properties investigation and double emulsion formation
    Li, Lijia
    Geng, Mengjie
    Tan, Xiangyun
    Teng, Fei
    Li, Yang
    FOOD HYDROCOLLOIDS, 2024, 150
  • [32] Preparation process optimization, structural characterization and in vitro digestion stability analysis of Antarctic krill (Euphausia superba) peptides-zinc chelate
    Sun, Runan
    Liu, Xiaofang
    Yu, Yuan
    Miao, Junkui
    Leng, Kailiang
    Gao, Hua
    FOOD CHEMISTRY, 2021, 340
  • [33] Preparation of Calcium-Binding Peptides Derived from Mackerel (Scomber japonicus) Protein and Structural Characterization and Stability Analysis of Its Calcium Complexes
    Cui, Pengbo
    Liang, Jianqin
    Cheng, Tianyu
    Zhang, Jianyou
    FOODS, 2024, 13 (11)
  • [34] Preparation process optimization of pig bone collagen peptide-calcium chelate using response surface methodology and its structural characterization and stability analysis
    Wu, Wenmin
    He, Lichao
    Liang, Yanhui
    Yue, Lili
    Peng, Weiming
    Jin, Guofeng
    Ma, Meihu
    FOOD CHEMISTRY, 2019, 284 : 80 - 89
  • [35] Microencapsulation of Acer truncatum seed oil using chickpea protein isolate-low/high-methoxy citrus pectin complex coacervates: Preparation, stability analysis, and application in milk
    Chen, Mo
    Zhang, Bo
    Wang, Min
    Sun, Jin-yue
    Wang, Mu-xuan
    Zhang, Meng-qi
    Chen, Ying-ying
    Ren, Qi-dong
    Sun, Shu-tao
    Farag, Mohamed A.
    Guo, Xu
    Liu, Chao
    FOOD HYDROCOLLOIDS, 2025, 166