超声辅助自组装双天然抗氧化剂负载壳聚糖-接枝-油酸胶束:抗氧化活性包装的潜在添加剂

IF 2.8 4区 工程技术 Q2 ENGINEERING, MANUFACTURING
Wenjiao Ge, Han Yu, Xiaohui Wang
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引用次数: 1

摘要

天然抗氧化剂因其抗氧化损伤的能力而成为活性包装的有益添加剂。聚合物胶束在水环境中有效地传递天然抗氧化剂。然而,单一抗氧化剂的单独封装可能不足以满足现代食品包装的需要。开发了一种双重天然抗氧化剂胶束系统(即维生素E [VE]和姜黄素[Cur]),以实现复合功能和高负载浓度。以壳聚糖-接枝油酸(CSOA)胶束为载体,采用超声辅助自组装的方法对VE和Cur进行共包封。所制备的VE和Cur共负载胶束(CSOA/VE/Cur)具有均匀的球形结构,平均粒径为210.6 nm, zeta电位为+29.5 mV。此外,与单独包封VE或Cur相比,VE和Cur的共包封在包封效率、负载能力和稳定性方面都有显著提高。此外,在相同浓度下,CSOA/VE/Cur胶束的抗氧化活性优于游离VE/Cur,这一点得到了2,2‐二苯基‐1‐picrylhydrazyl (DPPH)和铁还原抗氧化能力(FRAP)的证实。此外,利用胶束材料制备了具有抗氧化性能的再生纤维素(RC)薄膜,突出了其作为抗氧化活性包装添加剂的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dual natural antioxidant‐loaded chitosan‐graft‐oleic acid micelles by ultrasound‐assisted self‐assembly: Potential additives for antioxidant active packaging

Dual natural antioxidant‐loaded chitosan‐graft‐oleic acid micelles by ultrasound‐assisted self‐assembly: Potential additives for antioxidant active packaging
Natural antioxidants are beneficial additives for active packaging due to their ability to resist oxidative damage. Polymeric micelles are effective in delivering natural antioxidants in aqueous environments. However, individual encapsulation of a single antioxidant may not be sufficient to meet the needs of modern food packaging. A dual natural antioxidant‐loaded micellar system (i.e., vitamin E [VE] and curcumin [Cur]) was developed to achieve combined functionality and high loading concentration. Chitosan‐graft‐oleic acid (CSOA) micelles were employed as carriers to co‐encapsulate VE and Cur through a facile ultrasound‐assisted self‐assembly method. The prepared VE and Cur co‐loaded micelles (CSOA/VE/Cur) exhibited a uniform spherical structure with an average particle size of 210.6 nm and a zeta potential of +29.5 mV. Moreover, the co‐encapsulation of VE and Cur showed a significant enhancement in both entrapment efficiency, loading capacity and stability as compared to the individual encapsulation of either VE or Cur. In addition, the CSOA/VE/Cur micelles showed improved antioxidant activity than free VE/Cur at the same concentrations, as evidenced by 2,2‐diphenyl‐1‐picrylhydrazyl (DPPH) and ferric reducing antioxidant power (FRAP) assays. Moreover, the micellar materials were utilized to fabricate regenerated cellulose (RC) films with antioxidant properties, highlighting their potential as additives for antioxidant active packaging.
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来源期刊
Packaging Technology and Science
Packaging Technology and Science 工程技术-工程:制造
CiteScore
4.90
自引率
7.70%
发文量
78
审稿时长
>12 weeks
期刊介绍: Packaging Technology & Science publishes original research, applications and review papers describing significant, novel developments in its field. The Journal welcomes contributions in a wide range of areas in packaging technology and science, including: -Active packaging -Aseptic and sterile packaging -Barrier packaging -Design methodology -Environmental factors and sustainability -Ergonomics -Food packaging -Machinery and engineering for packaging -Marketing aspects of packaging -Materials -Migration -New manufacturing processes and techniques -Testing, analysis and quality control -Transport packaging
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