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从胀果甘草67种化合物库中筛选生物活性天然产物。

Screening for bioactive natural products from a 67-compound library of Glycyrrhiza inflata.

作者信息

Lin Yan, Kuang Yi, Li Kai, Wang Shuang, Song Wei, Qiao Xue, Sabir Gulnar, Ye Min

机构信息

State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, 38 Xueyuan Road, Beijing 100191, People's Republic of China.

Xinjiang Institute of Chinese Materia Medica and Ethica, Urumqi 830002, People's Republic of China.

出版信息

Bioorg Med Chem. 2017 Jul 15;25(14):3706-3713. doi: 10.1016/j.bmc.2017.05.009. Epub 2017 May 6.

Abstract

Licorice shows a variety of pharmacological activities. This work aims to discover bioactive natural products from one botanical source of licorice, Glycyrrhiza inflata. A total of 67 free phenolics were isolated to form a compound library. Based on the bioactivities of licorice, these compounds were screened using cell- or enzyme-based bioassay methods. A total of 11 compounds exhibited potent cytotoxic activities against three human cancer cell lines (HepG2, SW480 and MCF7), while showed little toxicity on human normal cell lines LO2 and HEK293T. A number of chalcones showed remarkable anti-inflammatory activities. Among them, 2 (licochalcone B, IC 8.78μM), 10 (licoagrochalcone C, IC 9.35μM) and 13 (licochalcone E, IC 9.09μM) exhibited the most potent inhibitory activities on LPS-induced NO production, whereas 1, 8, 10, 12 and 13 (IC 13.9, 7.27, 2.44, 6.67 and 3.83μM) showed potent inhibitory activities on NF-κB transcription. Nine prenylated phenolics were found to be PTP1B inhibitors. Particularly, licoagrochalcone A (4), kanzonol C (7), 2'-hydroxyisolupalbigenin (35), gancaonin Q (45), glisoflavanone (50) and glabrol (53) showed IC values of 0.31-0.97μM. Compounds 24 (semilicoisoflavone B, IC 0.25μM), 26 (allolicoisoflavone B, IC 0.80μM) and 64 (glabridin, IC 0.10μM) showed noticeable tyrosinase inhibitory activities. Most of the above bioactive compounds were reported for the first time.

摘要

甘草具有多种药理活性。本研究旨在从胀果甘草这一植物来源中发现生物活性天然产物。共分离出67种游离酚类化合物,形成一个化合物库。基于甘草的生物活性,使用基于细胞或酶的生物测定方法对这些化合物进行筛选。共有11种化合物对三种人类癌细胞系(HepG2、SW480和MCF7)表现出强大的细胞毒性活性,而对人类正常细胞系LO2和HEK293T几乎没有毒性。一些查耳酮表现出显著的抗炎活性。其中,2号化合物(光甘草定B,IC 8.78μM)、10号化合物(光果甘草查耳酮C,IC 9.35μM)和13号化合物(光甘草定E,IC 9.09μM)对脂多糖诱导的一氧化氮产生表现出最强大的抑制活性,而1、8、10、12和13号化合物(IC 13.9、7.27、2.44、6.67和3.83μM)对核因子κB转录表现出强大的抑制活性。发现9种异戊烯基化酚类化合物是蛋白酪氨酸磷酸酶1B(PTP1B)抑制剂。特别是,光果甘草查耳酮A(4号)、甘松新酮C(7号)、2'-羟基异甘草素(35号)、甘草黄酮Q(45号)、光甘草酮(50号)和光甘草醇(53号)的IC值为0.31 - 0.97μM。24号化合物(半光甘草素B,IC 0.25μM)、26号化合物(异光甘草素B,IC 0.80μM)和64号化合物(光甘草定,IC 0.10μM)表现出显著的酪氨酸酶抑制活性。上述大多数生物活性化合物均为首次报道。

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