醛糖还原酶
周围神经病变
醛糖还原酶抑制剂
多元醇途径
药理学
山梨醇
体内
化学
糖尿病
医学
坐骨神经
糖尿病神经病变
外围设备
内科学
内分泌学
生物化学
生物
生物技术
作者
Ruyi Jin,Jin Wang,Mingyue Li,Tian Tang,Yidong Feng,Sha Zhou,Honglei Xie,Haiyu Feng,Jianshuang Guo,Rui‐Jia Fu,Jiping Liu,Yuping Tang,Yajun Shi,Hui Guo,Yuwei Wang,Fayi Nie,Jing Li
出处
期刊:Diabetes
[American Diabetes Association]
日期:2023-12-21
卷期号:73 (3): 497-510
被引量:3
摘要
Aldose reductase 2 (ALR2), an activated enzyme in the polyol pathway by hyperglycemia, has long been recognized as one of the most promising targets for complications of diabetes, especially in diabetic peripheral neuropathy (DPN). However, many of the ALR2 inhibitors have shown serious side effects due to poor selectivity over aldehyde reductase (ALR1). Herein, we describe the discovery of a series of benzothiadiazine acetic acid derivatives as potent and selective inhibitors against ALR2 and evaluation of their anti-DPN activities in vivo. Compound 15c, carrying a carbonyl group at the 3-position of the thiadiazine ring, showed high potent inhibition against ALR2 (IC50 = 33.19 nmol/L) and ∼16,109-fold selectivity for ALR2 over ALR1. Cytotoxicity assays ensured the primary biosafety of 15c. Further pharmacokinetic assay in rats indicated that 15c had a good pharmacokinetic feature (t1/2 = 5.60 h, area under the plasma concentration time curve [AUC(0-t)] = 598.57 ± 216.5 μg/mL * h), which was superior to epalrestat (t1/2 = 2.23 h, AUC[0-t] = 20.43 ± 3.7 μg/mL * h). Finally, in a streptozotocin-induced diabetic rat model, 15c significantly increased the nerve conduction velocities of impaired sensory and motor nerves, achieved potent inhibition of d-sorbitol production in the sciatic nerves, and significantly increased the paw withdrawal mechanical threshold. By combining the above investigations, we propose that 15c might represent a promising lead compound for the discovery of an antidiabetic peripheral neuropathy drug. Article Highlights
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