A. Baihaqi, Hasna Siti Munifah Isman, Ganis Fitria Fauziyyah, Rismauli Ruth Natasari Hutabarat, Adi Hartono, S. Megantara
{"title":"In Silico Study of Chemical Compounds in Plantago major L. as Anti-Androgen","authors":"A. Baihaqi, Hasna Siti Munifah Isman, Ganis Fitria Fauziyyah, Rismauli Ruth Natasari Hutabarat, Adi Hartono, S. Megantara","doi":"10.14499/indonesianjcanchemoprev13iss1pp33-45","DOIUrl":null,"url":null,"abstract":"Prostate cancer is the most common type of cancer diagnosed in men worldwide and the second leading cause of death after lung cancer. Testosterone and dihydrotestosterone (DHT) have been known to play an essential role in prostate cancer. Androgen receptor (AR) binding to the ligand allows homodimerization and translocation to the nucleus, which acts as a transcription factor for androgen-responsive genes such as PSA (Prostate-specific antigen). Although many anti-androgens have been established, including Bicalutamide, Flutamide, and Abiraterone, the problem of non-specific cytotoxicity effects and cancer recurrence due to potential drug resistance remains a significant obstacle to establishing effective therapy. Plantago major L. is one of the plants that can choose anticancer therapy because, based on reports, it has anticancer activity through DNA damage in cancer cells. This study focused on the search for the potential phytochemical activity of Plantago major L. as an anti-androgen, non-cytotoxic, and had significant AR inhibitory activity. This study uses Lipinski prediction (RO5), ADMET prediction, and a structure-based approach with molecular docking techniques using the PDB ID 2AM9 receptor structure and 13 compounds from Plantago major L. as test ligands compared to known AR antagonists. From the research results, Hispidulin has the highest potential as an anti-androgen with binding energy (-9.43 kcal/mol) that is closest to natural ligands and is smaller than Flutamide as a comparison drug. This anti-androgen activity was hypothesized from the similarity of hydrogen bonds with amino acid residues 705-Asn and 711-Gln as key AR residues present in Hispidulin.Keywords: Prostate cancer, Androgen Receptor, Plantago major L., ADMET, In Silico.","PeriodicalId":32620,"journal":{"name":"ISCC Indonesian Journal of Cancer Chemoprevention","volume":"7 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-06-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ISCC Indonesian Journal of Cancer Chemoprevention","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.14499/indonesianjcanchemoprev13iss1pp33-45","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
Prostate cancer is the most common type of cancer diagnosed in men worldwide and the second leading cause of death after lung cancer. Testosterone and dihydrotestosterone (DHT) have been known to play an essential role in prostate cancer. Androgen receptor (AR) binding to the ligand allows homodimerization and translocation to the nucleus, which acts as a transcription factor for androgen-responsive genes such as PSA (Prostate-specific antigen). Although many anti-androgens have been established, including Bicalutamide, Flutamide, and Abiraterone, the problem of non-specific cytotoxicity effects and cancer recurrence due to potential drug resistance remains a significant obstacle to establishing effective therapy. Plantago major L. is one of the plants that can choose anticancer therapy because, based on reports, it has anticancer activity through DNA damage in cancer cells. This study focused on the search for the potential phytochemical activity of Plantago major L. as an anti-androgen, non-cytotoxic, and had significant AR inhibitory activity. This study uses Lipinski prediction (RO5), ADMET prediction, and a structure-based approach with molecular docking techniques using the PDB ID 2AM9 receptor structure and 13 compounds from Plantago major L. as test ligands compared to known AR antagonists. From the research results, Hispidulin has the highest potential as an anti-androgen with binding energy (-9.43 kcal/mol) that is closest to natural ligands and is smaller than Flutamide as a comparison drug. This anti-androgen activity was hypothesized from the similarity of hydrogen bonds with amino acid residues 705-Asn and 711-Gln as key AR residues present in Hispidulin.Keywords: Prostate cancer, Androgen Receptor, Plantago major L., ADMET, In Silico.
前列腺癌是全世界男性中最常见的癌症类型,也是仅次于肺癌的第二大死因。睾酮和双氢睾酮(DHT)在前列腺癌中起着至关重要的作用。雄激素受体(AR)与配体结合,允许同二聚化和易位到细胞核,作为雄激素应答基因如PSA(前列腺特异性抗原)的转录因子。虽然已经建立了许多抗雄激素,包括比卡鲁胺、氟他胺和阿比特龙,但非特异性细胞毒性效应和由于潜在耐药性引起的癌症复发问题仍然是建立有效治疗的重大障碍。车前草是一种可以选择抗癌治疗的植物,因为根据报道,它通过破坏癌细胞的DNA具有抗癌活性。本研究的重点是寻找车前草具有抗雄激素、无细胞毒性和显著AR抑制活性的潜在植物化学活性。本研究采用Lipinski预测(RO5)、ADMET预测和基于结构的方法与分子对接技术,使用PDB ID 2AM9受体结构和来自车前草(Plantago major L.)的13种化合物作为测试配体与已知AR拮抗剂进行比较。从研究结果来看,Hispidulin作为抗雄激素的潜力最大,结合能(-9.43 kcal/mol)最接近天然配体,作为比较药物比氟他胺小。这种抗雄激素活性是基于Hispidulin中与705-Asn和711-Gln氨基酸残基的氢键相似性推测的。关键词:前列腺癌;雄激素受体;车前草;