The soybean lecithin-cyclodextrin-vitamin E complex nanoparticles stabilized Pickering emulsions for the delivery of 8-carotene: Physicochemical properties and in vitro digestion
文献类型: 外文期刊
第一作者: Hao, Lei
作者: Hao, Lei;Zheng, Lei;Shi, Jie;Li, Junjiao;Mao, Jin;Zhou, Qi;Deng, Qianchun;Chai, Zhaofei
作者机构:
关键词: 8-Cyclodextrin; Soybean lecithin; Vitamin E; Pickering emulsion; Physical stability; Biological accessibility
期刊名称:INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES ( 影响因子:8.2; 五年影响因子:7.8 )
ISSN: 0141-8130
年卷期: 2024 年 265 卷
页码:
收录情况: SCI
摘要: In this work, soybean lecithin (LC) was used to modify 8-cyclodextrin (8-CD) with hydrophobic fat chains to become amphiphilic (LC-CD), and vitamin E (VE) was encapsulated in former modified 8-CD complexes (LC-CDVE), the new Pickering emulsions stabilized by LC-CD-VE and LC-CD complexes for the delivery of 8-carotene (BC) were created. The surface tension, contact angle, zeta potential, and particle size were used to assess the changes in complexes nanoparticles at various pH values. Furthermore, LC-CD-VE has more promise as Pickering emulsion stabilizer than LC-CD because of the smaller particle size (271.11 nm), proper contact angle (58.02 degrees), and lower surface tension (42.49 mN/m). The interactions between 8-cyclodextrin, soybean lecithin, and vitamin E were confirmed using Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), nuclear magnetic resonance (NMR), and thermogravimetric analysis (TGA). The durability of Pickering emulsions was examined at various volume fractions of the oil phase and concentrations of nanoparticles. Compared to the emulsion stabilized by LC-CD, the one stabilized by LC-CD-VE showed superior storage stability. Moreover, for the delivery of BC, Pickering emulsions stabilized by LC-CD and LC-CD-VE can outperform bulk oil and Tween 80 stabilized emulsions in terms of UV light stability, storage stability, and bioaccessibility. This work could offer fresh perspectives on stabilizer alternatives for Pickering emulsion delivery systems.
分类号:
- 相关文献
作者其他论文 更多>>
-
Flaxseed protein isolates-stabilized oil-water interface: Role of globulin and albumin
作者:Yang, Jing;Shao, Jiaqi;Peng, Dengfeng;Deng, Qianchun;Yang, Jing;Shao, Jiaqi;Peng, Dengfeng;Deng, Qianchun;Yang, Jing;Li, Dapeng;Duan, Yuqing;Zhang, Haihui;Ashokkumar, Muthupandian
关键词:Flaxseed protein fractions; Structure properties; Interfacial behavior; Oil-water interface
-
Identification of potential aroma indicators in light and strong intensity flaxseed oil by molecular sensory science technology
作者:Yuan, Binhong;Zheng, Chang;Yue, Yang;Zhou, Qi;Yuan, Binhong;Zhou, Qi
关键词:Sensory intensity; Flaxseed oil; Aroma dilution analysis; Odor activity values; Aroma recombination and omission; Key aroma compounds
-
Chromosome-level genome assembly of a critically endangered species Leuciscus chuanchicus
作者:Wang, Qi;Zhou, Qi;Liu, Hongyan;Li, Jiongtang;Jiang, Yanliang
关键词:
-
Mof-derived hollow-open hierarchically porous carbon spheres for enzyme encapsulation and biocatalysis
作者:Zhao, Baozhu;Yang, Haowen;Shi, Jie;Mao, Jin
关键词:Metal-organic frameworks; Hollow hierarchical porous; ZIF-8 derived carbon; Immobilized enzymes; Biocatalysis
-
Identification of a key peptide cyclase for novel cyclic peptide discovery in Pseudostellaria heterophylla
作者:Qin, Xianjin;Wang, Fengjiao;Xie, Dejin;Zhou, Qi;Li, Wei;Lin, Sheng;Lin, Wenxiong;Li, Wei
关键词:orbitides; tailoring gene; RiPPs; VIGS; synthetic biology; Pseudostellaria heterophylla; heterologous expression
-
A promising perspective to boost the utilizability of oil bodies: Moderate regulation and modification of interface
作者:Zhang, Shan;Zheng, Ruofan;Yu, Xiao;Chen, Yashu;Deng, Qianchun;Mcclements, David Julian;Yu, Xiao;Zhang, Shan;Sun, Zhida;Xie, Bijun
关键词:gastrointestinal tract; interfacial structure; oil body; physicochemical stability
-
Harnessing Genetic Resistance in Maize and Integrated Rust Management Strategies to Combat Southern Corn Rust
作者:Chang, Jiaying;Shi, Jie;Wei, Shizhi;Liu, Yueyang;Zhao, Zhiquan
关键词:southern corn rust; maize;
Puccinia polysora ; resistance genes; molecular interactions