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毛兰素的抗癌活性:基于网络药理学的癌症特异性靶点预测

Anticancer Activity of Erianin: Cancer-Specific Target Prediction Based on Network Pharmacology.

作者信息

Yan Lili, Zhang Zhen, Liu Yanfen, Ren Shuyi, Zhu Zhiyu, Wei Lu, Feng Jiao, Duan Ting, Sun Xueni, Xie Tian, Sui Xinbing

机构信息

School of Pharmacy, Hangzhou Normal University, Hangzhou, China.

Key Laboratory of Elemene Class Anti-Cancer Chinese Medicines, Engineering Laboratory of Development and Application of Traditional Chinese Medicines, Collaborative Innovation Center of Traditional Chinese Medicines of Zhejiang Province, Hangzhou Normal University, Hangzhou, China.

出版信息

Front Mol Biosci. 2022 Mar 17;9:862932. doi: 10.3389/fmolb.2022.862932. eCollection 2022.

Abstract

Erianin is a major bisbenzyl compound extracted from Lindl., an important traditional Chinese herb. In recent years, a growing body of evidence has proved the potential therapeutic effects of erianin on various cancers, including hepatoma, melanoma, non-small-cell lung carcinoma, myelogenous leukemia, breast cancer, and osteosarcoma. Especially, the pharmacological activities of erianin, such as antioxidant and anticancer activity, have been frequently demonstrated by plenty of studies. In this study, we firstly conducted a systematic review on reported anticancer activity of erianin. All updated valuable information regarding the underlying action mechanisms of erianin in specific cancer was recorded and summarized in this paper. Most importantly, based on the molecular structure of erianin, its potential molecular targets were analyzed and predicted by means of the SwissTargetPrediction online server (http://www.swisstargetprediction.ch). In the meantime, the potential therapeutic targets of 10 types of cancers in which erianin has been proved to have anticancer effects were also predicted the Online Mendelian Inheritance in Man (OMIM) database (http://www.ncbi.nlm.nih.gov/omim). The overlapping targets may serve as valuable target candidates through which erianin exerts its anticancer activity. The clinical value of those targets was subsequently evaluated by analyzing their prognostic role in specific cancer using Kaplan-Meier plotter (http://Kmplot.com/analysis/) and Gene Expression Profiling Interactive Analysis (GEPIA) (http://gepia.cancer-pku.cn/). To better assess and verify the binding ability of erianin with its potential targets, molecular flexible docking was performed using Discovery Studio (DS). The valuable targets obtained from the above analysis and verification were further mapped to the Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway using the Database for Annotation, Visualization and Integrated Discovery (DAVID) (http://david.abcc.ncifcrf.gov/) to explore the possible signaling pathways disturbed/regulated by erianin. Furthermore, the prediction of absorption, distribution, metabolism, excretion, and toxicity (ADMET) properties of erianin was also performed and provided in this paper. Overall, in this study, we aimed at 1) collecting all experiment-based important information regarding the anticancer effect and pharmacological mechanism of erianin, 2) providing the predicted therapeutic targets and signaling pathways that erianin might act on in cancers, and 3) especially providing ADMET properties of erianin.

摘要

毛萼乙素是从重要的传统中草药石蒜中提取的一种主要双苄基化合物。近年来,越来越多的证据证明毛萼乙素对多种癌症具有潜在治疗作用,包括肝癌、黑色素瘤、非小细胞肺癌、骨髓性白血病、乳腺癌和骨肉瘤。特别是,大量研究经常证明毛萼乙素的药理活性,如抗氧化和抗癌活性。在本研究中,我们首先对已报道的毛萼乙素抗癌活性进行了系统综述。本文记录并总结了关于毛萼乙素在特定癌症中潜在作用机制的所有最新有价值信息。最重要的是,基于毛萼乙素的分子结构,通过瑞士靶点预测在线服务器(http://www.swisstargetprediction.ch)分析并预测了其潜在分子靶点。同时,还利用在线人类孟德尔遗传数据库(OMIM)(http://www.ncbi.nlm.nih.gov/omim)预测了毛萼乙素已被证明具有抗癌作用的10种癌症的潜在治疗靶点。重叠的靶点可能是毛萼乙素发挥抗癌活性的有价值候选靶点。随后,通过使用Kaplan-Meier绘图仪(http://Kmplot.com/analysis/)和基因表达谱交互分析(GEPIA)(http://gepia.cancer-pku.cn/)分析这些靶点在特定癌症中的预后作用,评估了它们的临床价值。为了更好地评估和验证毛萼乙素与其潜在靶点的结合能力,使用发现工作室(DS)进行了分子柔性对接。从上述分析和验证中获得的有价值靶点,进一步使用注释、可视化和综合发现数据库(DAVID)(http://david.abcc.ncifcrf.gov/)映射到京都基因与基因组百科全书(KEGG)通路,以探索毛萼乙素可能干扰/调节的潜在信号通路。此外,本文还进行并提供了毛萼乙素的吸收、分布、代谢、排泄和毒性(ADMET)特性预测。总体而言,在本研究中,我们旨在:1)收集所有基于实验的关于毛萼乙素抗癌作用和药理机制的重要信息;2)提供毛萼乙素在癌症中可能作用的预测治疗靶点和信号通路;3)特别是提供毛萼乙素的ADMET特性。

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