从 Wrightia tinctoria R.Br 中提取用于治疗银屑病关节炎的生物活性化合物的化学图谱分析和在实验室中进行预测

Bharathi Kalidass , Devibala Ravichandran , Balaji Ravichandran , MR Yogeshkumar , Malathi Mahalingam , Jeyavel Karthick P , Dinesh Kumar Lakshmanan
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引用次数: 0

摘要

银屑病关节炎(PsA)是一种自身免疫介导的炎症性皮肤病,治疗方法有限。本研究主要侧重于探索 Wrightia tinctoria R.Br(WT)治疗 PsA 的疗效。研究人员使用标准的体外生化试验对 WT 叶子进行了定量和化学分析。与其他溶剂提取物相比,WT 的乙醇提取物具有较高的酚类(24.48±0.03 mg/mL)和黄酮类(29.2±0.16 mg/mL)含量。我们还进行了一系列体外试验,包括 DPPH、一氧化氮自由基清除和蛋白质变性抑制试验,以评估 WT 提取物的整体抗氧化和抗炎能力。WT 叶提取物的气相色谱-质谱分析显示,Lup-20(29)-en-3-yl 乙酸酯、24-去甲-3,12-二烯和 3-O-甲基-D-果糖是主要的生物活性化合物。通过药代动力学和药效学分析,对筛选出的生物活性化合物进行了密度泛函理论能量最小化。此外,还从开放靶点在线数据库中筛选出 PsA 的枢纽靶点,以研究药物与靶点的相互作用。结果发现,CD4、CXCL12、KLRD1、MMP9和SERPINA1是主要靶点,它们在疾病通路中起着核心作用。然后利用 PyRx 将选定的疾病靶标与 WT 叶片中能量最小化的生物活性化合物进行对接。结果表明,从 WT 叶子中提取的乙醇叶提取物可以改变通路介质的进展,有效控制 PsA。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical profiling and in-silico prediction of bioactive compounds from Wrightia tinctoria R.Br to treat psoriatic arthritis

Psoriatic arthritis (PsA) is an autoimmune-mediated inflammatory skin condition with limited remedies. This study mainly focuses on exploring the therapeutic efficiencies of Wrightia tinctoria R.Br (WT) for the treatment of PsA. Quantification and chemical profiling for the WT leaves were tested using standard in vitro biochemical assays. The ethanol extract of WT has been found to have high amounts of phenolic (24.48±0.03 mg/mL) and flavonoid (29.2±0.16 mg/mL) contents when compared to other solvent fractions. We also conducted a series of in vitro assays, including DPPH, nitric oxide radical scavenging, and protein denaturation inhibition assays, to assess the overall antioxidant and anti-inflammatory capabilities of WT extracts. The GC-MS analysis of WT leaf extract displayed Lup-20(29)-en-3-yl acetate, 24-Norursa-3,12-diene, and 3-O-Methyl-D-fructose as major bioactive compounds. The screened bioactive compounds, via pharmacokinetic and pharmacodynamic analysis, were subjected to density functional theory for energy minimization. Further, the hub targets of PsA were filtered from the Open Target online database to study the drug-target interaction. CD4, CXCL12, KLRD1, MMP9, and SERPINA1 were found to be the primary targets, which have a central role in the disease pathway. Selected disease targets were then docked with the energy-minimized bioactive compounds from WT leaves using PyRx. The results suggest that the ethanolic leaf extract from WT leaves could alter the progression of pathway mediators and effectively manage the PsA.

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