Pyrroloquinoline Quinone Inhibits Oxidative Stress in Rats with Diabetic Nephropathy

吡咯喹啉醌 糖尿病肾病 氧化应激 血尿素氮 内分泌学 SOD2 内科学 肌酐 化学 肾功能 免疫印迹 肾病 活性氧 热休克蛋白70 糖尿病 超氧化物歧化酶 医学 生物化学 热休克蛋白 辅因子 基因
作者
Min Zhang,Jiangzhao Zhang,Yan Xiong,Jiaqing Peng,Xiaoyan Wu
出处
期刊:Medical Science Monitor [International Scientific Information Inc.]
卷期号:26 被引量:11
标识
DOI:10.12659/msm.924372
摘要

BACKGROUND:Diabetic nephropathy (DN) is one of the chronic microvascular complications of diabetes. This study focused on the protective effects of pyrroloquinoline quinone (PQQ) on oxidative stress (OS) in DN. MATERIAL AND METHODS:Thirty Sprague Dawley rats were randomly selected for this study; 10 rats were randomly selected as the control group. The other 20 rats were established for the DN model. After establishment of the successful model, the DN model rats were randomly divided into a DN group and a PQQ group. The PQQ group was fed with a PQQ diet. Blood urea nitrogen (BUN), serum creatinine (SCr), and blood glucose levels were measured in each group, and OS-related protein expression and AMPK pathway were detected by western blot and quantitative real-time polymerase chain reaction (qRT-PCR). At the same time, we constructed a DN model by culturing NRK-52E cells with high glucose to detect the molecular mechanisms. RESULTS:The kidney function of the DN group was significantly decreased, SCr and BUN levels were significantly increased, and the renal structure under the microscope was disordered, and interstitial edema was obvious. The expression of SOD1, SOD2, GPX1, and GPX3 were significantly decreased, and the level of reactive oxygen species (ROS) was significantly increased. PQQ treatment can effectively alleviate renal function, improve structural damage, and inhibit OS. In vivo, PQQ can effectively inhibit high glucose-induced OS damage and activate the AMPK/FOXO3a signaling pathway. CONCLUSIONS:PQQ improves renal structural damage and functional damage, and protects kidney cells in DN by inhibiting OS, which may be related to activating the AMPK/FOXO3a pathway.

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