甲基乙二醛
糖基化
糖基化终产物
糖尿病肾病
化学
乳糖谷胱甘肽裂解酶
肾病
糖尿病
体内
药理学
内科学
内分泌学
生物化学
受体
医学
生物
酶
生物技术
作者
Shijun Yan,Lei Wang,Zhi Li,Dina Zhu,Shao-Chen Guo,Wenfeng Xin,Yanfang Yang,Xiao Cong,Tao Ma,Pei-Ping Shen,Jun Sheng,Wensheng Zhang
摘要
Accumulation of advanced glycation end products (AGEs) has been implicated in the development of diabetic nephropathy. We investigated the effects of Pu-erh tea on AGE accumulation associated with diabetic nephropathy. Although it did not affect blood glucose levels and insulin sensitivy, Pu-erh tea treatment for 8 weeks attenuated the increases in urinary albumin, serum creatinine, and mesangial matrix in db/db mice. We found that Pu-erh tea prevented diabetes-induced accumulation of AGEs and led to a decreased level of receptor for AGE expression in glomeruli. Both production and clearance of carbonyl compounds, the main precursor of AGE formation, were probably attenuated by Pu-erh tea in vivo independent of glyoxalase I expression. In vitro, HPLC assay demonstrated Pu-erh tea could trap methylglyoxal in a dose-dependent manner. Our study raises the possibility that inhibition of AGE formation by carbonyl trapping is a promising approach to prevent or arrest the progression of diabetic complications.
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