Microcapsule Preparation and Properties of Flavonoid Extract from Immature Citrus reticulata 'Chachiensis' Peel
文献类型: 外文期刊
作者: Zhang, Xinyi 1 ; Li, Qili 2 ; Wu, Sisi 1 ; Liu, Yan 1 ; Chen, Jiaxu 3 ; Li, Tao 2 ; Su, Donglin 1 ;
作者机构: 1.Hunan Univ, Longping Branch, Grad Sch, Changsha 410125, Peoples R China
2.Hunan Acad Agr Sci, Hunan Agr Prod Proc Inst, Changsha 410125, Peoples R China
3.China Agr Univ, Coll Food Sci & Nutr Engn, Beijing 100083, Peoples R China
关键词: Citrus reticulata 'Chachiensis'; plant-based protein; encapsulation; microcapsule
期刊名称:FOODS ( 影响因子:5.1; 五年影响因子:5.6 )
ISSN:
年卷期: 2024 年 13 卷 19 期
页码:
收录情况: SCI
摘要: Citrus reticulata 'Chachiensis' is a citrus cultivar in the Rutaceae family, and its peel is commonly utilized as a raw material for Guangchenpi. This study used flavonoid extract from the peel of immature Citrus reticulata 'Chachiensis' (CCE) as the raw material to investigate the encapsulation ability of different wall materials (plant-based proteins, including soybean protein isolation (SPI), pea protein (PP), and zein; carbohydrates, including maltodextrin (MD), Momordica charantia polysaccharide (MCP), and gum acacia (GA); and composite wall materials of both types) on CCE. The wall material with the highest encapsulation rate was selected for the preparation of CCE microcapsules. Furthermore, the physicochemical characteristics, antioxidant capacity, bioavailability, and storage stability of the CCE microcapsules were explored. The results indicated that among all wall materials, the composite wall material PPMD had the highest encapsulation rate, which was 84.44 +/- 0.34%. After encapsulation, the microcapsules tended to have a yellow color and exhibited characteristics such as system stability, low moisture content, and low hygroscopicity. In vitro antioxidant assays revealed that the encapsulation of CCE significantly increased the scavenging rates of DPPH and ABTS free radicals. In vitro gastrointestinal digestion experiments indicated that the release rate of PPMD-CCE in intestinal fluid was significantly greater than that of free CCE, ultimately reaching 85.89 +/- 1.53%. Storage experiments demonstrated that after 45 days under various temperature and light conditions, the retention rate of CCE in the microcapsules was significantly greater than that of free CCE. The above findings provide new possibilities for the application of PP and plant proteins and lay a foundation for the future industrial application of CCE.
- 相关文献
作者其他论文 更多>>
-
Microbes: Drivers of Chenpi manufacturing, biotransformation, and physiological effects
作者:Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Gao, Zhipeng
关键词:Chenpi; Manufacturing; Biotransformation; Physiological effects; Microbiome; Applications
-
Facile and green synthesis of nanocarriers from chondroitin sulfate-based and whey protein isolate with improved stability and biocompatibility for anthocyanins protection
作者:Li, Zixuan;Su, Donglin;Su, Zhipeng;Fu, Yanjiao;Fu, Fuhua;Li, Gaoyang;Guo, Jiajing;Shan, Yang;Li, Zixuan;Su, Donglin;Su, Zhipeng;Fu, Yanjiao;Xiao, Wenbin;Fu, Fuhua;Li, Gaoyang;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Gao, Zhipeng;Xiao, Wenbin
关键词:Anthocyanin; Chondroitin sulfate; Whey protein isolate; Encapsulation efficiency; Stability
-
Citrus aurantium 'Changshan-huyou' physiological premature fruit drop: A promising prebiotic to tackle obesity
作者:Wang, Chao;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Wang, Chao;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Wang, Chao;Peng, Mingfang;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Gao, Zhipeng
关键词:Citrus aurantium 'Changshan-huyou'; Functional food; Transcriptome; Microbiome; Fecal microbiota transplantation; AMPK
-
Effects of ferulic acid and its esterified derivatives on Botryosphaeria dothidea and postharvest kiwifruit quality
作者:Wu, Sisi;Zhang, Xinyi;Liu, Yan;Li, Gaoyang;Zhu, Xiangrong;Wu, Sisi;Cheng, Xiaomei;Zhang, Xinyi;Liu, Yan;Li, Gaoyang;Zhu, Xiangrong;Chen, Shuangping
关键词:Botryosphaeria dothidea; esterified derivatives; ferulic acid; kiwifruit; soft rot
-
Decoding the role of Bacillus: Unraveling the transformation of bioactive compounds during the aging of Pericarpium Citri Reticulatae
作者:Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Li, Zixuan;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Li, Zixuan;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Li, Zixuan;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Fu, Yanjiao;Wang, Chao;Liao, Yanfang;Li, Zixuan;Fu, Fuhua;Li, Gaoyang;Su, Donglin;Huang, Lvhong;Guo, Jiajing;Shan, Yang;Gao, Zhipeng;He, Mingwang;Xiao, Wenbin;Wang, Yuwen
关键词:Pericarpium Citri Reticulatae; Bacillus; Fermentation; Flavor profiles; Untargeted metabolomics; Bioactivity
-
Sustained Green Manure-Rice Rotations Can Mitigate Methane Emissions by Enhancing Microbial Methane Oxidation in Southern China
作者:Liang, Hao;Fu, Jin;Feng, Jiguang;Zhu, Qiuan;Zhou, Feng;Zhou, Guopeng;Zhou, Guopeng;Cao, Weidong;Smith, Pete;Gabrielle, Benoit;Li, Tao;Schmidt, Susanne;Xu, Changxu;Liu, Jia;Nie, Jun;Wu, Ji;Geng, Mingjian;Wang, Fei;Liang, Yuting;Zhou, Feng
关键词:paddy soil; methane; green manure; rotation year; process-based modeling
-
Targeted/untargeted metabolomics and antioxidant properties distinguish Citrus reticulata 'Chachi' from Citrus reticulata Blanco
作者:Wang, Xue;Su, Zhipeng;Li, Xiang;Chen, Jiaxu;Li, Gaoyang;Shan, Yang;Pan, Zhaoping;Fu, Fuhua;Wang, Xue;Su, Zhipeng;Chen, Jiaxu;Li, Gaoyang;Shan, Yang;Fu, Fuhua
关键词:Citrus reticulata 'Chachi' (CZG); Citrus reticulata Blanco (CRB); Untargeted/target metabolomic; Phenolic compounds; Antioxidant capacity



