Dewi Ratih Tirto Sari, Gabriella Chandrakirana Krisnamurti, Y. Bare
{"title":"Virtual Mapping of Secondary Metabolite Activities Containing in Caesalpinia sappan L. Heartwood through In Silico Study","authors":"Dewi Ratih Tirto Sari, Gabriella Chandrakirana Krisnamurti, Y. Bare","doi":"10.53342/pharmasci.v7i1.274","DOIUrl":null,"url":null,"abstract":"Caesalpinia sappan L heartwood is a leguminoceae plant that grow in Indonesia landscape, uses as traditional herbal medicine and natural textile dye. Caesalpinia sappan heartwood also contains homoisoflavonoids as natural pigment and bioactive compound, promotes several human health benefits. This study provide biological function prediction and mapping through in silico approach. The compounds from Caesalpinia sappan were listed and downloaded from Knapsack webserver. PubChem NCBI was used to retrieve the canonical smiles of Caesalpinia sappan compounds. Biological activity of Caesalpinia were predicted by Online PASS Two Way drug website and performed in heatmap. Structure activity relationship (SAR) of quercetin-3,7-Di-O-Methyl Ether 3'-O-Methylbrazilin, 2'-Methoxyisoliquiritigenin, Isoliquiritigenin 2'-Methy Ether and Quercetin-3′,4′-Di-O-Methyl Ether revealed antioxidant, nitric oxide scavenger, antimycobacterial, antibacterial, antiinflammation, and act as lipoxygenase inhibitor agent. Furthermore, Quercetin-3′,4′-Di-O-Methyl Ether (17) proved higher antivirus activity than other compounds. 2'-Methoxyisoliquiritigenin (20) and Isoliquiritigenin 2'-Methy Ether (27) performed higher neuroprotective effect than others. Molecular docking and dynamis are required for further investigation.","PeriodicalId":17631,"journal":{"name":"Journal Pharmasci (Journal of Pharmacy and Science)","volume":"45 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-01-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal Pharmasci (Journal of Pharmacy and Science)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.53342/pharmasci.v7i1.274","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Caesalpinia sappan L heartwood is a leguminoceae plant that grow in Indonesia landscape, uses as traditional herbal medicine and natural textile dye. Caesalpinia sappan heartwood also contains homoisoflavonoids as natural pigment and bioactive compound, promotes several human health benefits. This study provide biological function prediction and mapping through in silico approach. The compounds from Caesalpinia sappan were listed and downloaded from Knapsack webserver. PubChem NCBI was used to retrieve the canonical smiles of Caesalpinia sappan compounds. Biological activity of Caesalpinia were predicted by Online PASS Two Way drug website and performed in heatmap. Structure activity relationship (SAR) of quercetin-3,7-Di-O-Methyl Ether 3'-O-Methylbrazilin, 2'-Methoxyisoliquiritigenin, Isoliquiritigenin 2'-Methy Ether and Quercetin-3′,4′-Di-O-Methyl Ether revealed antioxidant, nitric oxide scavenger, antimycobacterial, antibacterial, antiinflammation, and act as lipoxygenase inhibitor agent. Furthermore, Quercetin-3′,4′-Di-O-Methyl Ether (17) proved higher antivirus activity than other compounds. 2'-Methoxyisoliquiritigenin (20) and Isoliquiritigenin 2'-Methy Ether (27) performed higher neuroprotective effect than others. Molecular docking and dynamis are required for further investigation.
木心是一种豆科植物,生长在印度尼西亚的景观中,用作传统草药和天然纺织染料。杉木心材还含有同型异黄酮作为天然色素和生物活性化合物,对人体健康有多种促进作用。本研究为生物功能的预测和定位提供了计算机方法。从backpack网站上下载了该植物的化合物。PubChem NCBI被用于检索Caesalpinia sapappan化合物的典型微笑。通过在线PASS双向药物网站预测该药物的生物活性并绘制热图。槲皮素-3,7-二- o -甲基醚3′- o -甲基巴西酮、2′-甲氧基异异黄酮原素、异异黄酮原素2′-甲基醚和槲皮素-3′,4′-二- o -甲基醚的构效关系(SAR)显示槲皮素-3′,4′-二- o -甲基醚具有抗氧化、一氧化氮清除、抑菌、抗菌、抗炎和脂氧合酶抑制剂的作用。槲皮素-3′,4′-二o -甲基醚(17)具有较强的抗病毒活性。2′-甲氧基异基尿酸素(20)和2′-甲醚异基尿酸素(27)表现出较好的神经保护作用。分子对接和动力学有待进一步研究。