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A Computational Study to Predict Wound Healing Agents from the Peel of the Mangosteen (Garcinia mangostana L.) Extract

机译:预测麦竹果皮(Garcinia Mangostana L.)提取物中伤口愈合剂的计算研究

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摘要

This study aimed to identify potentially active compounds from mangosteen peel extracts that heal skin burns and to evaluate their molecular mechanisms. There are about 120 compounds that have been identified in mangosteen peel by datamining, including 60 types of xanthones. The SMILE format of each compound was downloaded from the PubChem database. The compound data was then analyzed for potential anti-inflammatory, antioxidant, and antibacterial activities with PASS SERVER. To prediction mechanisms, firstly, target protein predictions were made with Swiss target prediction and HitPick. Target Protein data was then analyzed by interaction with STRING to determine its molecular mechanism. Further analysis of the shortest pathway was done with Cytoscape. The screening process of fifty compounds, which are predicted to have anti-inflammatory, antioxidant, and antibacterial activities by PASS SERVER. The four highest potency compounds were Smeaxanthone A, Garcinone E, γ-mangosteen, and Gartanin, which were types of xanthone. Based on the result of computational study these four compounds have potential targets prediction related to interleukin 6, epidermal growth factor, and transforming growth factor beta 1, that are involved in the regulation of epithelial cell proliferation which plays a role in the healing process of skin burns.
机译:该研究旨在鉴定肌果皮提取物的潜在活性化合物,该提取物治愈皮肤灼伤并评估其分子机制。通过DataMining在山竹果皮中鉴定了约120种化合物,包括60种X原酮。从Pubchem数据库下载每个化合物的微笑格式。然后分析化合物数据用于潜在的抗炎,抗氧化剂和抗菌活性与通过服务器。对于预测机制,首先,用瑞士靶预测和瞳孔进行靶蛋白预测。然后通过与串的相互作用来分析靶蛋白质数据以确定其分子机制。对最短途径的进一步分析是用Cytoscape进行的。五十化合物的筛选过程预测通过通过服务器具有抗炎,抗氧化和抗菌活性。四种最高效力化合物是氨纶蒽酮A,曲酮E,γ-山竹和甘酮,其是X吨酮的类型。基于计算研究的结果,这四种化合物具有与白细胞介素6,表皮生长因子和转化生长因子β1相关的潜在目标预测,其参与上皮细胞增殖的调节,这在皮肤的愈合过程中起作用烧伤。

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