文献类型: 外文期刊
作者: Li, Song 1 ; Yan, Jing 2 ; Zhu, Qiangqiang 2 ; Liu, Xinxiang 2 ; Li, Senlin 1 ; Wang, Shenhou 1 ; Wang, Xuanjun 1 ; Sheng, Jun 2 ;
作者机构: 1.Yunnan Agr Univ, Coll Sci, Kunming 650201, Yunnan, Peoples R China
2.Yunnan Agr Univ, Key Lab Puer Tea Sciencs, Minist Educ YNAU, Kunming 650201, Yunnan, Peoples R China
3.Yunnan Acad Agr Sci, Agroprod Proc Res Inst, Kunming 650201, Yunnan, Peoples R China
关键词: EGCG; MOF; wound healing; diabetes
期刊名称:MOLECULES ( 影响因子:4.927; 五年影响因子:5.11 )
ISSN:
年卷期: 2022 年 27 卷 17 期
页码:
收录情况: SCI
摘要: Tea contains high levels of the compound epigallocatechin gallate (EGCG). It is considered an important functional component in tea and has anti-cancer, antioxidant, and anti-inflammatory effects. The eight phenolic hydroxyl groups in EGCG's chemical structure are the basis for EGCG's multiple biological effects. At the same time, it also leads to poor chemical stability, rendering EGCG prone to oxidation and isomerization reactions that change its original structure and biological activity. Learning how to maintain the activity of EGCG has become an important goal in understanding the biological activity of EGCG and the research and development of tea-related products. Metal-organic frameworks (MOFs) are porous materials with a three-dimensional network structure that are composed of inorganic metals or metal clusters together with organic complexes. MOFs exploit the porous nature of the material itself. When a drug is an appropriate size, it can be wrapped into the pores by physical or chemical methods; this allows the drug to be released slowly, and MOFs can also reduce drug toxicity. In this study, we used MOF Zn(BTC)(4) materials to load EGCG and investigated the sustained release effect of EGCG@MOF Zn(BTC)(4) and the biological effects on wound healing in a diabetic mouse model.
- 相关文献
作者其他论文 更多>>
-
Low Concentrations of Caffeine and Its Analogs Extend the Lifespan of Caenorhabditis elegans by Modulating IGF-1-Like Pathway
作者:Du, Xiaocui;Guan, Yun;Huang, Qin;Lv, Ming;He, Xiaofang;Fang, Chongye;Wang, Xuanjun;Sheng, Jun;Du, Xiaocui;Guan, Yun;Huang, Qin;Lv, Ming;He, Xiaofang;Fang, Chongye;Wang, Xuanjun;Sheng, Jun;Du, Xiaocui;Guan, Yun;Huang, Qin;Lv, Ming;He, Xiaofang;Yan, Liang;Hayashi, Shuhei;Hayashi, Shuhei;Fang, Chongye;Wang, Xuanjun;Sheng, Jun;Fang, Chongye;Fang, Chongye;Wang, Xuanjun;Sheng, Jun;Wang, Xuanjun
关键词:caffeine; C. elegans; lifespan; IGF-1 pathway; daf-2
-
The Tea Tree Genome Provides Insights into Tea Flavor and Independent Evolution of Caffeine Biosynthesis
作者:Zhang, Hai-Bin;Li, Kui;Zhang, Qun-Jie;Zhang, Yun;Liu, Yuan;Zhu, Ting;Li, Wei;Huang, Hui;Tong, Yan;Nan, Hong;Shi, Cong;Shi, Chao;Jiang, Jian-Jun;Mao, Shu-Yan;Jiao, Jun-Ying;Zhang, Dan;Zhao, You-Jie;Zhang, Li-Ping;Liu, Yun-Long;Gao, Li-Zhi;Xia, En-Hua;Zhang, Hai-Bin;Li, Kui;Liu, Yuan;Li, Wei;Huang, Hui;Shi, Chao;Jiang, Jian-Jun;Zhang, Dan;Gao, Li-Zhi;Xia, En-Hua;Nan, Hong;Shi, Cong;Sheng, Jun;Zhao, Yuan;Zhang, Qun-Jie;Kim, Changhoon;Yu, Yue;Zhu, Ting;Liu, Ben-Ying;Shao, Sheng-Fu;Ni, De-Jiang;Eichler, Evan E.
关键词:Tea tree genome;Comparative genomics;Tea flavor;Tea-proccessing suitability;Global adaptation;Caffeine biosynthesis