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基于网络药理学的 Piper longum L. 乙醇根提取物中 Piperlonguminine 的抗结直肠癌活性

Network pharmacology-based anti-colorectal cancer activity of piperlonguminine in the ethanolic root extract of Piper longum L.

机构信息

Department of Biotechnology, Faculty of Engineering and Technology, Rama University, G.T. Road, Mandhana, Kanpur, Uttar Pradesh, 209217, India.

Department of Biotechnology, Parul Institute of Applied Science, Parul University, Vadodara, Gujarat, 391760, India.

出版信息

Med Oncol. 2023 Oct 5;40(11):320. doi: 10.1007/s12032-023-02185-5.

Abstract

Colorectal cancer (CRC) has the second highest incidence and fatality rates of any malignancy, at 10.2 and 9.2%, respectively. Plants and plants-based products for thousands of years have been utilized to treat cancer along with other associated health issues. Alkaloids are a valuable class of chemical compounds with great potential as new medicine possibilities. Piper longum Linn contains various types of alkaloids. In this research, the ethanolic root extract of P. longum (EREPL) is the subject of study based on network pharmacology. Two alkaloids were chosen from the gas chromatography mass spectrometry (GC-MS) analysis. However, only piperlonguminine received preference because it adhered to Lipinski's rule and depicted no toxicity. Web tools which are available online, like, Swiss ADME, pkCSMand ProTox-II were used to evaluate the pharmacokinetics and physiochemical properties of piperlonguminine. The database that SwissTargetPrediction and TCMSP maintain contains the targets for piperlonguminine. Using DisGeNET, GeneCards and Open Targets Platform databases, we were able to identify targets of CRC. The top four hub genes identified by Cytoscape are SRC, MTOR, EZH2, and MAPK3. The participation of hub genes in colorectal cancer-related pathways was examined using the Kyoto Encyclopaedia of Genes and Genomes (KEGG) database. The colorectal cancer pathway, the ErbB signaling pathway and the mTOR signaling pathway emerged to be important. Our findings show that the hub genes are involved in the aforementioned pathways for tumor growth, which calls for their downregulation. Additionally, piperlonguminine has the potential to become a successful medicine in the future for the treatment of CRC.

摘要

结直肠癌(CRC)的发病率和死亡率分别位居所有恶性肿瘤的第二位和第三位,分别为 10.2%和 9.2%。千百年来,植物及其制品一直被用于治疗癌症和其他相关健康问题。生物碱是一类具有很大潜力的有价值的化合物,有成为新药的可能。荜茇含有多种类型的生物碱。本研究以网络药理学为基础,对荜茇的乙醇根提取物(EREPL)进行研究。从气相色谱-质谱(GC-MS)分析中选择了两种生物碱。然而,由于只有胡椒堿符合 Lipinski 规则且没有毒性,因此更倾向于选择胡椒堿。我们使用了在线可用的网络工具,如 Swiss ADME、pkCSM 和 ProTox-II,来评估胡椒堿的药代动力学和物理化学性质。SwissTargetPrediction 和 TCMSP 维护的数据库包含胡椒堿的靶点。通过 DisGeNET、GeneCards 和 Open Targets Platform 数据库,我们能够鉴定 CRC 的靶点。Cytoscape 鉴定的前四个枢纽基因是 SRC、MTOR、EZH2 和 MAPK3。使用京都基因与基因组百科全书(KEGG)数据库研究枢纽基因在结直肠癌相关途径中的参与情况。结直肠癌途径、ErbB 信号通路和 mTOR 信号通路被认为是重要的通路。我们的研究结果表明,枢纽基因参与了上述与肿瘤生长相关的通路,需要下调这些基因的表达。此外,胡椒堿有可能成为未来治疗 CRC 的成功药物。

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