Phloretin and its methylglyoxal adduct: Implications against advanced glycation end products-induced inflammation in endothelial cells

被引:39
作者
Zhou, Qian [1 ]
Gong, Jun [2 ]
Wang, Mingfu [1 ]
机构
[1] Univ Hong Kong, Sch Biol Sci, Hong Kong, Peoples R China
[2] Univ Macau, Fac Hlth Sci, Macau, Peoples R China
关键词
Phloretin-methylglyoxal adduct; Advanced glycation end products; Methylglyoxal; Inflammation; KAPPA-B; STRESS; POLYPHENOLS; PHLORHIZIN; ACTIVATION; GLYOXALASE; APOPTOSIS; GALLATE;
D O I
10.1016/j.fct.2019.05.004
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Methylglyoxal (MGO), a cytotoxic factor, reacts irreversibly with the side chains of lysine, cysteine, and arginine residues in proteins to form advanced glycation end products (AGEs) which might be a major pathological factor associated with diabetic complications. Thus, it is necessary to prevent or alleviate such diseases through inhibiting the formation of AGEs or lowering these AGEs-induced cellular damages. Based on our previous work, it was known that phloretin, an apple polyphenol, can inhibit the formation of AGEs under simulated physiological conditions. In this study, we found that phloretin prevented the formation of AGEs through trapping MGO in human umbilical endothelial cells (HUVECs). The phloretin-MGO adducts were analyzed in PBS and HUVECs. Surprisingly, only 1 MGO-phloretin adduct was detected in HUVECs, which was formed within 0.5 h and metabolized eventually within 24 h. The specific phloretin-MGO adduct was synthesized and identified by MS and NMR analysis. Its anti-inflammatory effect against AGEs was further investigated together with the parent compound, phloretin, which was proved to be through RAGE/p38 MAPK/NF-kappa B signaling pathway. Taken together, our data indicated the positive role of phloretin-MGO adduct on phloretin's protective effects, which might offer a new insight into the action mechanism of polyphenols against AGEs-induced damages.
引用
收藏
页码:291 / 300
页数:10
相关论文
共 50 条
[41]   Calycosin Rebalances Advanced Glycation End Products-Induced Glucose Uptake Dysfunction of Hepatocyte In Vitro [J].
Xu, Youhua ;
Xiong, Jianfeng ;
Zhao, Yonghua ;
He, Bao ;
Zheng, Zhaoguang ;
Chu, Gejin ;
Zhu, Quan .
AMERICAN JOURNAL OF CHINESE MEDICINE, 2015, 43 (06) :1191-1210
[42]   Ciprofloxacin inhibits advanced glycation end products-induced adhesion molecule expression on human monocytes [J].
Mori, S. ;
Takahashi, H. K. ;
Liu, K. ;
Wake, H. ;
Zhang, J. ;
Liu, R. ;
Yoshino, T. ;
Nishibori, M. .
BRITISH JOURNAL OF PHARMACOLOGY, 2010, 161 (01) :229-240
[43]   Effect of dietary advanced glycation end products on postprandial appetite, inflammation, and endothelial activation in healthy overweight individuals [J].
Poulsen, Malene W. ;
Bak, Monika J. ;
Andersen, Jeanette M. ;
Monosik, Rastislav ;
Giraudi-Futin, Anne C. ;
Holst, Jens J. ;
Nielsen, John ;
Lauritzen, Lotte ;
Larsen, Lesli H. ;
Bugel, Susanne ;
Dragsted, Lars O. .
EUROPEAN JOURNAL OF NUTRITION, 2014, 53 (02) :661-672
[44]   Advanced glycation end products and diabetic nephropathy: a comparative study using diabetic and normal rats with methylglyoxal-induced glycation [J].
Rodrigues, Lisa ;
Matafome, Paulo ;
Crisostomo, Joana ;
Santos-Silva, Daniela ;
Sena, Cristina ;
Pereira, Paulo ;
Seica, Raquel .
JOURNAL OF PHYSIOLOGY AND BIOCHEMISTRY, 2014, 70 (01) :173-184
[45]   Effects of Nitric Oxide and Antioxidants on Advanced Glycation End Products-Induced Hypertrophic Growth in Human Renal Tubular Cells [J].
Huang, Jau-Shyang ;
Chuang, Lea-Yea ;
Guh, Jinn-Yuh ;
Huang, Yann-Jia .
TOXICOLOGICAL SCIENCES, 2009, 111 (01) :109-119
[46]   Effect of osthole on advanced glycation end products-induced renal tubular hypertrophy and role of klotho in its mechanism of action [J].
Kan, Wei-Chih ;
Hwang, Jean-Yu ;
Chuang, Lea-Yea ;
Guh, Jinn-Yuh ;
Ye, Yi-Ling ;
Yang, Yu-Lin ;
Huang, Jau-Shyang .
PHYTOMEDICINE, 2019, 53 :205-212
[47]   Advanced glycation end products and diabetic nephropathy: a comparative study using diabetic and normal rats with methylglyoxal-induced glycation [J].
Lisa Rodrigues ;
Paulo Matafome ;
Joana Crisóstomo ;
Daniela Santos-Silva ;
Cristina Sena ;
Paulo Pereira ;
Raquel Seiça .
Journal of Physiology and Biochemistry, 2014, 70 :173-184
[48]   Role of moesin in the effect of glucagon-like peptide-1 on advanced glycation end products-induced endothelial barrier dysfunction [J].
Liu, Yan ;
Chen, Zhenzhen ;
Liu, Lei ;
Tang, Haitao ;
Zhu, Huaqing ;
Tang, Songtao .
CELLULAR SIGNALLING, 2022, 90
[49]   Role of Protein Kinase C in Advanced Glycation End Products-induced Epithelial-Mesenchymal Transition in Renal Proximal Tubular Epithelial Cells [J].
Ge, Shuwang ;
Zeng, Rui ;
Luo, Yun ;
Liu, Lin ;
Wei, Honglan ;
Zhang, Juan ;
Zhou, Huan ;
Xu, Gang .
JOURNAL OF HUAZHONG UNIVERSITY OF SCIENCE AND TECHNOLOGY-MEDICAL SCIENCES, 2009, 29 (03) :281-285
[50]   Glucagon-like peptide-1 (GLP-1) protects vascular endothelial cells against advanced glycation end products (AGEs) - induced apoptosis [J].
Zhan, Yi ;
Sun, Hui-lin ;
Chen, Hong ;
Zhang, Hua ;
Sun, Jia ;
Zhang, Zhen ;
Cai, De-hong .
MEDICAL SCIENCE MONITOR, 2012, 18 (07) :BR286-BR291