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体内和计算研究布地尼定通过生化、组织病理学和分子相互作用对抗己糖胺诱导的糖尿病。

In vivo and computational investigation of butin against alloxan-induced diabetes via biochemical, histopathological, and molecular interactions.

机构信息

Department of Pathology, Faculty of Medicine, King Abdulaziz University, 21589, Jeddah, Saudi Arabia.

King Abdulaziz University Hospital, King Abdulaziz University, 21589, Jeddah, Saudi Arabia.

出版信息

Sci Rep. 2024 Sep 4;14(1):20633. doi: 10.1038/s41598-024-71577-y.

Abstract

Herbs have been used as medicines since antiquity, and it has been discovered that the human body responds well to herbal remedies. Research on the effect of butin was conducted in the current study in the alloxan-induced diabetic rat paradigm. A total of 30 Wistar rats were randomly assigned into the following groups (n = 6): I-Normal; II-Alloxan-induced (50 mg/kg); III-Alloxan + butin 25 mg/kg; IV-Alloxan + butin 50 mg/kg; V-Butin per se 50 mg/kg. Various diabetic parameters (blood glucose, insulin, HbA1c), lipid profile, inflammatory (TNF-α, IL-1β, IL-6 and NF-κB), antioxidant enzymes (CAT, SOD and GSH), oxidative stress indicators (MDA), apoptosis marker (caspase-3), hepatic markers (ALT and AST), and histopathological changes were assessed. Additionally, molecular docking and dynamics were performed to evaluate the interaction of butin with target proteins. Butin treatment, at both doses, significantly restored biochemical parameters and preserved pancreatic histopathology in diabetic rats. It effectively modulated blood parameters, lipid profiles, inflammatory markers, apoptosis, antioxidant enzyme activity, oxidative stress, and hepatic markers. Molecular docking revealed that butin binds to proteins such as caspase-3 (1NME), NF-κB (1SVC), and serum insulin (4IBM) with binding affinities of - 7.4, - 6.5, and - 8.2 kcal/mol, respectively. Molecular dynamics simulations further suggested that butin induces significant conformational changes in these proteins. Butin exhibits potential effects against alloxan-induced diabetic rats by restoring biochemical balance, reducing inflammation, and protecting pancreatic tissue. Its binding to key proteins involved in apoptosis and inflammation highlights its therapeutic potential in diabetes management.

摘要

草药自古以来就被用作药物,人们发现人体对草药疗法反应良好。本研究在链脲佐菌素诱导的糖尿病大鼠模型中对布替萘芬的作用进行了研究。将 30 只 Wistar 大鼠随机分为以下 6 组(n=6):I-正常;II-链脲佐菌素诱导(50mg/kg);III-布替萘芬 25mg/kg;IV-布替萘芬 50mg/kg;V-布替萘芬 50mg/kg。评估了各种糖尿病参数(血糖、胰岛素、HbA1c)、脂质谱、炎症(TNF-α、IL-1β、IL-6 和 NF-κB)、抗氧化酶(CAT、SOD 和 GSH)、氧化应激指标(MDA)、凋亡标志物(caspase-3)、肝标志物(ALT 和 AST)和组织病理学变化。此外,还进行了分子对接和动力学研究,以评估布替萘芬与靶蛋白的相互作用。两种剂量的布替萘芬治疗均显著恢复了糖尿病大鼠的生化参数并保留了胰腺组织病理学。它有效地调节了血液参数、脂质谱、炎症标志物、凋亡、抗氧化酶活性、氧化应激和肝标志物。分子对接显示,布替萘芬与半胱天冬酶-3(1NME)、NF-κB(1SVC)和血清胰岛素(4IBM)等蛋白结合,结合亲和力分别为-7.4、-6.5 和-8.2kcal/mol。分子动力学模拟进一步表明,布替萘芬诱导这些蛋白发生显著构象变化。布替萘芬通过恢复生化平衡、减少炎症和保护胰腺组织,对链脲佐菌素诱导的糖尿病大鼠具有潜在作用。它与参与凋亡和炎症的关键蛋白结合,突出了其在糖尿病管理中的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97b4/11374895/5589bb9f9db7/41598_2024_71577_Fig1_HTML.jpg

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