Yoo Kyong Han, Le Ba Vinh, Mi-hyun Nam, Ki Yong Lee
{"title":"Identification of compounds using HPLC-QTOF-MS online antioxidant activity mapping from aerial parts of Ligularia stenocephala","authors":"Yoo Kyong Han, Le Ba Vinh, Mi-hyun Nam, Ki Yong Lee","doi":"10.1186/s13765-023-00814-1","DOIUrl":null,"url":null,"abstract":"<div><p>Inflammation, diabetes, and even malignancies are pharmacological effects connected by antioxidant capacity and free radicals. Many antioxidants scavenge free radicals originating from dietary sources such as fruits, vegetables, and teas. To identify the bioactive components of <i>Ligularia stenocephala</i>, an effective method combining HPLC-QTOF-MS and bioactivity evaluation was investigated for the first time. Antioxidant agents were isolated from <i>L. stenocephala</i>, a folk medicine used for edema and scrofula in Korea, Japan, and China. The phytochemical investigation of the aerial parts of <i>L. stenocephala</i> resulted in the separation and determination of six compounds (<b>1</b>–<b>6</b>). In particular, the chemical structures were identified as hyperoside (<b>1</b>), 3,5-dicaffeoylquinic acid (<b>2</b>), 3,5-dicaffeoylquinic acid methyl ester (<b>3</b>), trifolin (<b>4</b>), rutin (<b>5</b>), and 3,4-dicaffeoylquinic acid (<b>6</b>). Their structures were identified using 1D and 2D NMR spectroscopy and high-resolution electrospray ionization mass spectrometry (HR-ESI-MS) data analysis. The results showed that phenolic components were responsible for the antioxidant inhibitory activity of <i>L. stenocephala</i>. Additionally, to understand the mechanisms of the antioxidant inhibitory activity of <i>L. stenocephala</i>, a docking simulation study was performed to support the in vitro results. Taken together, this new method is rapid, inexpensive, and can be applied to identify the active components of medicinal herbs without separation.</p></div>","PeriodicalId":467,"journal":{"name":"Applied Biological Chemistry","volume":"66 1","pages":""},"PeriodicalIF":2.3000,"publicationDate":"2023-08-24","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://applbiolchem.springeropen.com/counter/pdf/10.1186/s13765-023-00814-1","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Applied Biological Chemistry","FirstCategoryId":"97","ListUrlMain":"https://link.springer.com/article/10.1186/s13765-023-00814-1","RegionNum":3,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"FOOD SCIENCE & TECHNOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Inflammation, diabetes, and even malignancies are pharmacological effects connected by antioxidant capacity and free radicals. Many antioxidants scavenge free radicals originating from dietary sources such as fruits, vegetables, and teas. To identify the bioactive components of Ligularia stenocephala, an effective method combining HPLC-QTOF-MS and bioactivity evaluation was investigated for the first time. Antioxidant agents were isolated from L. stenocephala, a folk medicine used for edema and scrofula in Korea, Japan, and China. The phytochemical investigation of the aerial parts of L. stenocephala resulted in the separation and determination of six compounds (1–6). In particular, the chemical structures were identified as hyperoside (1), 3,5-dicaffeoylquinic acid (2), 3,5-dicaffeoylquinic acid methyl ester (3), trifolin (4), rutin (5), and 3,4-dicaffeoylquinic acid (6). Their structures were identified using 1D and 2D NMR spectroscopy and high-resolution electrospray ionization mass spectrometry (HR-ESI-MS) data analysis. The results showed that phenolic components were responsible for the antioxidant inhibitory activity of L. stenocephala. Additionally, to understand the mechanisms of the antioxidant inhibitory activity of L. stenocephala, a docking simulation study was performed to support the in vitro results. Taken together, this new method is rapid, inexpensive, and can be applied to identify the active components of medicinal herbs without separation.
炎症、糖尿病甚至恶性肿瘤都是与抗氧化能力和自由基有关的药理作用。许多抗氧化剂清除来自饮食来源的自由基,如水果、蔬菜和茶。本文首次建立了一种将HPLC-QTOF-MS与生物活性评价相结合的高效液相色谱-质谱联用方法。从韩国、日本和中国用于治疗水肿和坏血病的民间药物窄头草中分离得到抗氧化剂。对小头草地上部分进行了植物化学研究,分离并测定了6个化合物(1-6)。化学结构分别为金丝桃苷(1)、3,5-二咖啡酰基奎宁酸(2)、3,5-二咖啡酰基奎宁酸甲酯(3)、三叶草碱(4)、芦丁(5)和3,4-二咖啡酰基奎宁酸(6)。利用一维和二维核磁共振波谱和高分辨率电喷雾质谱(ir - esi - ms)数据分析对其结构进行了鉴定。结果表明,小头草的抗氧化抑制活性与酚类成分有关。此外,为了了解小头草抗氧化抑制活性的机制,我们进行了对接模拟研究,以支持体外实验结果。综上所述,该方法快速、廉价,可在不分离的情况下用于鉴定药材的有效成分。
期刊介绍:
Applied Biological Chemistry aims to promote the interchange and dissemination of scientific data among researchers in the field of agricultural and biological chemistry. The journal covers biochemistry and molecular biology, medical and biomaterial science, food science, and environmental science as applied to multidisciplinary agriculture.