Oxymatrine ameliorates myocardial injury by inhibiting oxidative stress and apoptosis via the Nrf2/HO-1 and JAK/STAT pathways in type 2 diabetic rats

被引:0
作者
Yongpan Huang
Bin He
Chong Song
Xian Long
Jianbin He
Yansong Huang
Lijing Liu
机构
[1] Medicine School,Department of Respiratory and Critical Care Medicine, The First People’s Hospital of Huaihua
[2] Changsha Social Work College,undefined
[3] School of Nursing,undefined
[4] Hunan University of Medicine,undefined
[5] affiliated to University of South China,undefined
来源
BMC Complementary Medicine and Therapies | / 23卷
关键词
Oxymatrine; Diabetes; Oxidative stress; Apoptosis; Myocardial injury; Inflammation;
D O I
暂无
中图分类号
学科分类号
摘要
The necessity of increasing the efficiency of organ preservation has encouraged researchers to explore the mechanisms underlying diabetes-related myocardial injuries. This study intended to evaluate the protective effects of oxymatrine (OMT) in myocardial injury caused by type 2 diabetes mellitus. A model of diabetic rats was established to simulate type 2 diabetes mellitus using an intraperitoneal injection of a single dose of 65 mg/kg streptozotocin with a high-fat and high-cholesterol diet, and diabetic rats were subsequently treated with OMT (60, 120 mg/kg) by gavage for 8 weeks. Thereafter, diabetic rats demonstrated notable decreases in left ventricular systolic pressure (LVSP), ±dp/dtmax, and in the activities of glutathione peroxidase, superoxide dismutase, and catalase. Moreover, we found notable increases in left ventricular end-diastolic pressure, fasting blood glucose, and malondialdehyde, as well as changes in cell apoptosis and decreased expression levels of Nrf2, HO-1, tyrosine protein kinase JAK (JAK), and signal transducer and transcription activator (STAT). Treatment with OMT alleviated all of the measured parameters. Collectively, these findings suggest that activation of the Nrf2/HO-1 and inhibition of the JAK/STAT signaling are involved in mediating the cardioprotective effects of OMT and also highlight the benefits of OMT in ameliorating myocardial injury in diabetic rats.
引用
收藏
相关论文
共 312 条
[1]  
Dillmann WH(2019)Diabetic cardiomyopathy Circ Res 124 1160-1162
[2]  
Jia G(2018)Diabetic cardiomyopathy: a hyperglycaemia- and insulin-resistance-induced heart disease Diabetologia 61 21-28
[3]  
Whaley-Connell A(2020)Hyperglycemia acutely increases cytosolic reactive oxygen species via O-linked GlcNAcylation and CaMKII activation in mouse ventricular myocytes Circ Res 126 e80-e96
[4]  
Sowers JR(2020)Induction of caveolin-3/eNOS complex by nitroxyl (HNO) ameliorates diabetic cardiomyopathy Redox Biol 32 101493-1773
[5]  
Lu S(2021)The triterpene, methyl-3beta-hydroxylanosta-9,24-dien-21-oate (RA3), attenuates high glucose-induced oxidative damage and apoptosis by improving energy metabolism Phytomedicine 85 153546-736
[6]  
Liao Z(2020)Allopurinol reduces oxidative stress and activates Nrf2/p62 to attenuate diabetic cardiomyopathy in rats J Cell Mol Med 24 1760-7332
[7]  
Lu X(2020)The role of microRNAs in metabolic syndrome-related oxidative stress Int J Mol Sci 21 6902-110
[8]  
Katschinski DM(2016)Overexpression of DJ-1 reduces oxidative stress and attenuates hypoxia/reoxygenation injury in NRK-52E cells exposed to high glucose Int J Mol Med 38 729-894
[9]  
Mercola M(2020)Bakuchiol alleviates hyperglycemia-induced diabetic cardiomyopathy by reducing myocardial oxidative stress via activating the SIRT1/Nrf2 signaling pathway Oxidative Med Cell Longev 2020 3732718-6052
[10]  
Chen J(2018)Oxymatrine exhibits anti-tumor activity in gastric cancer through inhibition of IL-21R-mediated JAK2/STAT3 pathway Int J Immunopathol Pharmacol 32 2058738418781634-10934