Preparation of soluble ferrous complex with high alkaline stability by reducing iron nanoparticle in Maillard reaction
文献类型: 外文期刊
作者: Yang, Yu-Zhang 1 ; Li, Min-Ji 1 ; Li, Xing-Liang 1 ; Zhou, Bei-Bei 1 ; Wei, Qin-Ping 1 ; Zhang, Jun-Ke 1 ;
作者机构: 1.Beijing Acad Forestry & Pomol Sci, Key Lab Biol & Genet Improvement Hort Crops North, Minist Agr & Rural Affairs, Beijing Engn Res Ctr Deciduous Fruit Trees, Beijing 100093, Peoples R China
关键词: Ferrous complex; Iron nanoparticle; Maillard reaction; Quadratic regression orthogonal design; Alkaline stability
期刊名称:CHEMICAL PAPERS ( 影响因子:2.097; 五年影响因子:1.831 )
ISSN: 2585-7290
年卷期: 2021 年 75 卷 7 期
页码:
收录情况: SCI
摘要: Ferrous (Fe(II)) is readily oxidized and precipitated in alkaline conditions. The development of a highly efficient, eco-friendly and alkali-tolerant ferrous complex has been one of the most important and challenging goals in application of iron. In this study, a facile method of synthesis antioxidative ferrous complex by introducing iron nanoparticles into Maillard reaction was conducted. The complex was constructed by taking advantage of reduction reaction and chelating interaction of Maillard reaction. The relationship between iron content and synthetic conditions was studied by quadratic regression orthogonal design. Both of the products made from inorganic iron (M-FS) and iron hydroxide (M-IH) could prevent ferrous from oxidation, but exhibited different structural characteristics and stabilities. The results revealed that M-IH could interact with Maillard reaction products (MRPs) more closely based on constructing more Fe-N bonds, which improved its stability and made it survive in the strong alkaline environment for long-term periods. Furthermore, unlike the precipitation in M-FS, the iron ions in M-IH were driven to coordinate with the polymerized fraction of MRPs to turn low binding affinity to high binding affinity under strong alkaline conditions. This work provides a new way to prepare antioxidative ferrous complex and potential applications in agrochemicals.
- 相关文献
作者其他论文 更多>>
-
Exogenous application of salicylic acid improves eradication of apple stem grooving virus and apple chlorotic leaf spot virus in apple
作者:Ma, Xiao-Yan;Li, Min-Ji;Ma, Xiao-Yan;Li, Jin-Wei;Li, Qing;Yan, Zi-Han;Cheng, Xi;Bao, Lu;Zhang, Dong;Wang, Min-Rui;Hamborg, Zhibo
关键词:Viral diseases; Thermotherapy; Cryotherapy; Shoot tip culture
-
The transcription factor MhZAT10 enhances antioxidant capacity by directly activating the antioxidant genes MhMSD1, MhAPX3a and MhCAT1 in apple rootstock SH6 (Malus honanensis x M. domestica)
作者:Yang, Qian;Liu, Yan;Zhou, Jia;Li, Min-Ji;Yang, Yu-Zhang;Wei, Qin-Ping;Zhang, Jun-Ke;Li, Xing-Liang
关键词:antioxidation; apple; osmotic stress; signal transduction; transcription factor
-
Transcription factors MhDREB2A/MhZAT10 play a role in drought and cold stress response crosstalk in apple
作者:Li, Xing-Liang;Meng, Dong;Li, Min-Ji;Zhou, Jia;Yang, Yu-Zhang;Zhou, Bei-Bei;Wei, Qin-Ping;Zhang, Jun-Ke
关键词:
-
Nano-Sized Antioxidative Trimetallic Complex Based on Maillard Reaction Improves the Mineral Nutrients of Apple (Malus domestica Borkh.)
作者:Yang, Yu-zhang;Wei, Qin-ping;Zhou, Jia;Li, Min-ji;Zhang, Qiang;Li, Xing-liang;Zhou, Bei-bei;Zhang, Jun-ke
关键词:trimetallic complex; Maillard reaction; antioxidative activity; fruit quality; mineral nutrients
-
Synthesis, characterization, and evaluation of bioactivity of novel Fe(II) nano-complexes based on sucrose, glucose, and fructose
作者:Yang, Yu-Zhang;Li, Min-Ji;Zhou, Bei-Bei;Zhang, Qiang;Li, Xing-Liang;Zhang, Jun-Ke;Wei, Qin-Ping
关键词:Fe(II) complex; Saccharide-based ligand; Nano-complex; Stability; Iron supply
-
Identification and Characterization of ATP/ADP Isopentenyltransferases (ATP/ADP PpIPTs) Genes in Peach
作者:Li, Min-ji;Wei, Qin-ping;Peng, Fu-tian;Yu, Wen;Luo, Jing-jing;Zhao, Yong-fei
关键词:ATP; ADP PpIPTs; Peach (Prunus persica); Fruit; Tissue-specific expression; Plant hormone; Nitrate
-
Genome-wide analysis of antioxidant enzyme gene families involved in drop it and low-temperature responses in Apple (Malus domestica)
作者:Li, Xing-Liang;Zhang, Jun-Ke;Li, Min-Ji;Zhou, Bei-Bei;Zhang, Qiang;Wei, Qin-Ping;Li, Xing-Liang;Zhang, Jun-Ke;Li, Min-Ji;Zhou, Bei-Bei;Zhang, Qiang;Wei, Qin-Ping;Li, Xing-Liang;Zhang, Jun-Ke;Li, Min-Ji;Zhou, Bei-Bei;Zhang, Qiang;Wei, Qin-Ping
关键词:Apple; antioxidant enzyme gene; drought stress; low-temperature stress; gene expression