应用计算机技术分析番木瓜生物活性成分对银屑病的治疗作用

M. Abdul-Hammed, I. O. Adedotun, Tolulope Irapada Afolabi, Ubeydat Temitope Ismail, Praise Toluwalase Akande, Balqees Funmilayo Issa
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引用次数: 0

摘要

牛皮癣是一种持续和神秘的自身免疫性皮肤病,影响世界人口的2-3%。目前,局部治疗、光疗和全身药物是用于减轻炎症和皮肤刺激/瘙痒的三种主要治疗形式。然而,所有这些治疗方法只用于控制每次出现的疾病。因此,这项工作的主要目标是通过计算机研究,从木瓜中存在的植物化学物质库中寻找一种更安全、更有效的治疗银屑病的药物,因为它具有抗银屑病和抗炎的特性。从番木瓜中分离的植物化学物质使用PyRx对接工具进行计算模拟,并与Janus Kinase 1 (JAK1)和Tumor necrosis factor \aplha (TNF\aplha)靶受体对接。使用PyMol和Biovia 2019对获得的结果进行可视化。分析结果表明,绿原酸和香豆酰奎尼酸的对接评分分别为-8.6 kcal/mol和-7.9 kcal/mol,是JAK1受体的潜在抑制剂。所鉴定的化合物还具有良好的ADMET、药物相似性、生物活性和物质活性谱(PASS)预测性能。它们的结合模式和与靶标的分子相互作用也证实了它们的效力。与标准药物(甲氨蝶呤和环孢素)相比,绿原酸和香豆酰奎宁酸具有更好的ADMET特性、结合亲和性、药物相似性、PASS特性、生物活性、口服生物利用度、结合机制以及与靶受体活性位点的相互作用,建议进一步分析,以开发治疗和管理银屑病的新药物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Bioactive Compounds from Carica papaya in the Management of Psoriasis using Computational Techniques
Psoriasis is a persistent and mysterious autoimmune skin condition that affects 2-3% of the world’s population. Currently, topical therapies, light therapy, and systemic drugs are the three main forms of treatment used to lessen inflammation and skin irritation/itching. However, all these treatments are only used to manage the disease each time it surfaces. Therefore, the main target of this work is to search for a safer and more effective remedy for psoriasis from the reservoir of phytochemicals present in Carica papaya via in silico studies due to its anti-psoriatic and anti-inflammatory properties. Reported phytochemicals isolated from Carica papaya were subjected to computational simulations using the PyRx docking tool and were docked against Janus Kinase 1 (JAK1) and Tumor necrosis factor \aplha (TNF\aplha) target receptors. The results obtained were visualized using PyMol, and Biovia 2019. Analysis of the results identified both Chlorogenic acid and Coumaroylquinic-acid with docking scores (-8.6 kcal/mol and -7.9 kcal/mol) respectively as potential inhibitors for the JAK1 receptor. The identified compounds also possessed excellent ADMET, drug-likeness, bioactivity, and activity spectra for substances (PASS) prediction properties. Their binding mode and the molecular interactions with the targets also affirmed their potency. In comparison with the standards (Methotrexate and Cyclosporine), Chlorogenic acid and Coumaroylquinic-acid have better ADMET properties, binding affinities, drug-likeness, PASS properties, bioactivities, oral bioavailability, binding mechanism, and interactions with the active site of the target receptor and are hereby recommended for further analysis towards the development of a new therapeutic agent for psoriasis treatment and management.
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