Preparation, Physicochemical Properties and Stability of Anthocyanin Nanoliposomes Before and After Double-Layer Modification Using Synanthrin and Pea Protein Isolate
文献类型: 外文期刊
作者: Zhang, Lianlian 1 ; Aniya, Shengping 1 ; Xing, Shengping 2 ; Li, Jing 2 ; Liu, Ying 2 ; Li, Chaozhi 2 ; Zhu, Jianhang 2 ; Li, Yan 1 ; Fu, Xiaoji 2 ;
作者机构: 1.Nanchang Univ, Natl Key Lab Food Sci & Resource Min, Nanchang 330077, Peoples R China
2.Jiangxi Acad Agr Sci, Inst Agr Prod Proc, Nanchang 330200, Peoples R China
关键词: anthocyanin; pea protein isolate; synanthrin; nano-liposome; in vitro digestion; storage stability
期刊名称:MOLECULES ( 影响因子:4.6; 五年影响因子:5.0 )
ISSN:
年卷期: 2025 年 30 卷 14 期
页码:
收录情况: SCI
摘要: Anthocyanins (ACNs), characterized by their polyhydroxy structures, exhibit high susceptibility to external environmental factors, which significantly limits their application in the food and industrial sectors. To enhance the stability of anthocyanins, anthocyanin nanoliposomes (ACN-NLs) were developed, with encapsulation efficiency, particle size and zeta potential serving as key evaluation parameters. Furthermore, through layer-by-layer self-assembly and electrostatic interactions, ACN-NLs were modified using synanthrin (SY) and pea protein isolate (PPI). Consequently, PPI-modified ACN-NLs (PPI-ACN-NLs) and SY-PPI-modified ACN-NLs (SY-PPI-ACN-NLs) were successfully synthesized. In this study, the structural characteristics of liposomes were investigated using X-ray diffraction (XRD), their in vitro digestibility was evaluated, and their stability under different temperatures, light conditions, and simulated food system conditions was assessed. The results demonstrated that when the mass ratio of soybean lecithin to cholesterol, soybean lecithin to anhydrous ethanol, and drug-to-lipid ratio were set at 5:1, 3:100, and 3:10, respectively, with an ACN concentration of 4 mg/mL, a pea protein solution with pH 3.0, a PPI concentration of 10 mg/mL, and an SY concentration of 8 mg/mL, the prepared ACN-NLs, PPI-ACN-NLs, and SY-PPI-ACN-NLs exhibited optimal performance. Their respective encapsulation efficiencies were 52.59 +/- 0.24%, 83.80 +/- 0.43%, and 90.38 +/- 0.24%; average particle sizes were 134.60 +/- 0.76 nm, 213.20 +/- 0.41 nm, and 246.60 +/- 0.24 nm zeta potentials were -32.4 +/- 0.75 mV, -27.46 +/- 0.69 mV, and -16.93 +/- 0.31 mV. The changes in peak shape observed via X-ray diffraction (XRD), in vitro digestion profiles, and alterations in anthocyanin release rates under different conditions collectively indicated that the modification of ACN-NLs using SY and PPI enhanced the protective effect on the ACNs, improving their biological activity, and providing a robust foundation for the practical application of ACNs.
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