首页> 外文期刊>Biochemistry and Biophysics Reports >Functional relevance of Gedunin as a bona fide ligand of NADPH oxidase 5 and ROS scavenger: An in silico and in vitro assessment in a hyperglycemic RBC model
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Functional relevance of Gedunin as a bona fide ligand of NADPH oxidase 5 and ROS scavenger: An in silico and in vitro assessment in a hyperglycemic RBC model

机译:GeDunin作为NADPH氧化酶5和ROS Scavenger的真绒配体的功能性相关性:An 在硅中的斜体>斜体>和在体外斜体>斜血糖RBC中的斜体>评估 模型

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Clinical evidence suggests that type 2 diabetes therapy can greatly benefit from the suppression of reactive oxygen species generation and the activation or restoration of cellular antioxidant mechanisms. In human, NADPH oxidase (NOX) is the main producer of reactive oxygen species (ROS) that supress the activity of endogenous antioxidant enzymes. In the present study, the antioxidant potential of Gedunin was studied.In silicofindings reveal its strong binding affinity with NOX5 C terminal HSP90 binding site that disrupts NOX5 stability and its ability to generate ROS, leading to restoration antioxidant enzymes activities. It was found that Gedunin suppressed hyperglycaemia induced oxidative stress in anin vitroRBC model and markedly reversed glucose induced changes including haemoglobin glycosylation and lipid peroxidation. A significant restoration of activities of cellular antioxidant enzymes; superoxide dismutase, catalase and glutathione peroxidase in the presence of Gedunin revealed its ability to reduce oxidative stress. These results substantiated Gedunin as a bona fide inhibitor of human NOX5 and a ROS scavenging antioxidant with promising therapeutic attributes including its natural origin and inhibition of multiple diabetic targets.
机译:临床证据表明,2型糖尿病治疗可以极大地受益于反应性氧物种产生和细胞抗氧化机制的活化或恢复。在人中,NADPH氧化酶(NOx)是抑制内源性抗氧化酶活性的活性氧物质(ROS)的主要生产商。在本研究中,研究了甘宁蛋白的抗氧化潜力。硅脉突揭示了其与NOX5 C末端HSP90结合位点的强粘合剂,扰乱了NOX5稳定性及其产生ROS的能力,导致恢复抗氧化酶活性。结果发现,甘宁蛋白抑制了血管血管模型中的高血糖诱导的氧化应激,并明显逆转葡萄糖诱导的变化,包括血红蛋白糖基化和脂质过氧化。细胞抗氧化酶活性的重大恢复;在Gedunin存在下,超氧化物歧化酶,过氧化氢酶和谷胱甘肽过氧化物酶显示出降低氧化应激的能力。这些结果证实了GeDunin作为人NOX5的真绒抑制剂和ROS清除抗氧化剂,其具有有前途的治疗属性,包括其天然来源和对多种糖尿病靶标的抑制作用。

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