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[植物名称]丁醇部位的抗关节炎潜力:一项[具体实验类型1]、[具体实验类型2]和[具体实验类型3]评估。 (注:原文中“An,,, and ”部分信息缺失,需补充完整植物名称及具体实验类型才能准确完整翻译)

Antiarthritic potential of the butanol fraction of : An , , and evaluation.

作者信息

Sajid-Ur-Rehman Muhammad, Ishtiaq Saiqa, Aati Hanan Y, Sherif Asmaa E, Abbas Khan Mohsin, Hussain Mussadique, Sohaib Khan Muhammad, Ahmed Maqsood, Naseem Muhammad Jawad, Khan Kashif-Ur-Rehman

机构信息

Department of Pharmacognosy, Faculty of Pharmacy, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.

Department of Pharmacognosy, University of the Punjab, University College of Pharmacy, Lahore, Pakistan.

出版信息

Front Pharmacol. 2023 May 26;14:1136459. doi: 10.3389/fphar.2023.1136459. eCollection 2023.

Abstract

(Fenzl) Verdc (Aizoaceae) has been traditionally used in the treatment of inflammation, arthritis, and gout. However, its antiarthritic potential has not been evaluated scientifically. The current study was designed to assess the antiarthritic properties of the -butanol fraction of (SsBu) by phytochemical analysis, and pharmacological activities, and studies. Phytochemical analysis showed total phenolic contents (90.7 ± 3.02 mg GAE/g) and total flavonoid contents (23.7 ± 0.69 mg RE/g), and further analysis by GC-MS identified possible bioactive phytocompounds belonging to phenols, flavonoids, steroids, and fatty acids. The antioxidant potential of SsBu was assessed by DPPH (175.5 ± 7.35 mg TE/g), ABTS (391.6 ± 17.1 mg TE/g), FRAP (418.2 ± 10.8 mg TE/g), CUPRAC (884.8 ± 7.97 mg TE/g), phosphomolybdenum (5.7 ± 0.33 mmol TE/g), and metal chelating activity (9.04 ± 0.58 mg EDTAE/g). Moreover, in the studies, inhibition (%) of egg albumin and bovine serum albumin denaturation assays showed that the anti-inflammatory effect of SsBu at the dose of 800 μg/ml was comparable to that of diclofenac sodium used as a standard drug. The antiarthritic activity was assessed to determine the curative impact of SsBu against formalin-induced (dose-dependent significant ( < 0.05) effect 72.2% inhibition at 750 mg/kg compared to standard; 69.1% inhibition) and complete Freund's adjuvant-induced arthritis (40.8%; inhibition compared to standard, 42.3%). SsBu significantly controlled PGE-2 level compared to the control group ( < 0.001) and restored the hematological parameters in rheumatoid arthritis. Treatment with SsBu significantly reduced oxidative stress by reinstating superoxide dismutase, GSH, and malondialdehyde along with pro-inflammatory markers (IL-6 and TNF-α) in arthritic rats. Molecular docking revealed the antiarthritic role of major identified compounds. Kaempferol-3-rutinoside was found to be more potent for COX-1 (-9.2 kcal/mol) and COX-2 inhibition (-9.9 kcal/mol) than diclofenac sodium (COX-1, -8.0 and COX-2, -6.5 kcal/mol). Out of the 12 docked compounds, two for COX-1 and seven for COX-2 inhibition showed more potent binding than the standard drug. The results from the , , and approaches finally concluded that the -butanol fraction of had antioxidant and antiarthritic potential, which may be due to the presence of potential bioactive compounds.

摘要

(芬兹尔)Verdc(番杏科)传统上用于治疗炎症、关节炎和痛风。然而,其抗关节炎潜力尚未得到科学评估。本研究旨在通过植物化学分析、药理学活性和体内研究来评估Verdc的正丁醇馏分(SsBu)的抗关节炎特性。植物化学分析显示总酚含量(90.7±3.02毫克没食子酸当量/克)和总黄酮含量(23.7±0.69毫克芦丁当量/克),通过气相色谱 - 质谱联用进一步分析鉴定出属于酚类、黄酮类、甾体类和脂肪酸类的可能具有生物活性的植物化合物。通过DPPH(175.5±7.35毫克TE/克)、ABTS(391.6±17.1毫克TE/克)、FRAP(418.2±10.8毫克TE/克)、CUPRAC(884.8±7.97毫克TE/克)、磷钼酸(5.7±0.33毫摩尔TE/克)和金属螯合活性(9.04±0.58毫克EDTAE/克)评估了SsBu的抗氧化潜力。此外,在体内研究中,卵清蛋白和牛血清白蛋白变性试验的抑制率(%)表明,800微克/毫升剂量的SsBu的抗炎作用与作为标准药物的双氯芬酸钠相当。评估了SsBu的抗关节炎活性,以确定其对福尔马林诱导的关节炎(剂量依赖性显著(P<0.05)效应,与标准药物相比,750毫克/千克时抑制率为72.2%;69.1%抑制率)和完全弗氏佐剂诱导的关节炎(40.8%;与标准药物相比,42.3%抑制率)的治疗效果。与对照组相比,SsBu显著控制了PGE - 2水平(P<0.001)并恢复了类风湿性关节炎的血液学参数。用SsBu治疗通过恢复关节炎大鼠的超氧化物歧化酶、谷胱甘肽和丙二醛以及促炎标志物(IL - 6和TNF - α)显著降低了氧化应激。分子对接揭示了主要鉴定化合物的抗关节炎作用。发现山奈酚 - 3 - 芸香糖苷对COX - 1(-9.2千卡/摩尔)和COX - 2抑制(-9.9千卡/摩尔)比双氯芬酸钠(COX - 1,-8.0和COX - 2,-6.5千卡/摩尔)更有效。在12种对接化合物中,两种对COX - 1和七种对COX - 2抑制显示出比标准药物更强的结合力。来自植物化学、药理学和体内方法的结果最终得出结论,Verdc的正丁醇馏分具有抗氧化和抗关节炎潜力,这可能归因于潜在生物活性化合物的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9a2/10250616/a6c6d4ab2c7a/fphar-14-1136459-g001.jpg

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