达帕格列嗪
胰岛素抵抗
维尔达格利普汀
内分泌学
内科学
神经保护
医学
胰岛素
糖尿病
认知功能衰退
药理学
2型糖尿病
痴呆
疾病
作者
Piangkwan Sa‐nguanmoo,Pongpan Tanajak,Sasiwan Kerdphoo,Thidarat Jaiwongkam,Wasana Pratchayasakul,Nipon Chattipakorn,Siriporn C. Chattipakorn
标识
DOI:10.1016/j.taap.2017.08.005
摘要
Dipeptidyl peptidase-4 inhibitor (vildagliptin) has been shown to exert beneficial effects on insulin sensitivity and neuroprotection in obese-insulin resistance. Recent studies demonstrated the neuroprotection of the sodium-glucose co-transporter 2 inhibitor (dapagliflozin) in diabetes. However, the comparative effects of both drugs and a combination of two drugs on metabolic dysfunction and brain dysfunction impaired by the obese-insulin resistance have never been investigated. Forty male Wistar rats were divided into two groups, and received either a normal-diet (ND, n = 8) or a high-fat diet (HFD, n = 32) for 16 weeks. At week 13, the HFD-fed rats were divided into four subgroups (n = 8/subgroup) to receive either a vehicle, vildagliptin (3 mg/kg/day) dapagliflozin (1 mg/kg/day) or combined drugs for four weeks. ND rats were given a vehicle for four weeks. Metabolic parameters and brain function were investigated. The results demonstrated that HFD rats developed obese-insulin resistance and cognitive decline. Dapagliflozin had greater efficacy on improved peripheral insulin sensitivity and reduced weight gain than vildagliptin. Single therapy resulted in equally improved brain mitochondrial function, insulin signaling, apoptosis and prevented cognitive decline. However, only dapagliflozin improved hippocampal synaptic plasticity. A combination of the drugs had greater efficacy in improving brain insulin sensitivity and reducing brain oxidative stress than the single drug therapy. These findings suggested that dapagliflozin and vildagliptin equally prevented cognitive decline in the obese-insulin resistance, possibly through some similar mechanisms. Dapagliflozin had greater efficacy than vildagliptin for preserving synaptic plasticity, thus combined drugs could be the best therapeutic approach for neuroprotection in the obese-insulin resistance.
科研通智能强力驱动
Strongly Powered by AbleSci AI