Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments

Aim and objective: To study the effect of Gupi Xiaoji Prescription (GXP) on hepatitis B virus(HBV)-related liver cancer through network pharmacology coupled with in vitro experiments and explore their related mechanisms. Materials and methods: Gupi Xiaoji Prescription’s chemical constituents and the...

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Main Authors: Shuxian Yu, Wenhui Gao, Puhua Zeng, Chenglong Chen, Zhen Zhang, Zhuo Liu, Jiyong Liu
Format: Article
Language:English
Published: Elsevier 2021-07-01
Series:Biomedicine & Pharmacotherapy
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0753332221003978
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spelling doaj-9d93d421c92c4fa390cfc8a1ea640a542021-06-03T04:55:06ZengElsevierBiomedicine & Pharmacotherapy0753-33222021-07-01139111612Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experimentsShuxian Yu0Wenhui Gao1Puhua Zeng2Chenglong Chen3Zhen Zhang4Zhuo Liu5Jiyong Liu6School of Chinese Medicine, Hunan University of Chinese Medicine, Changsha 410208, PR China; Affiliated Hospital of Hunan Academy of Traditional Chinese Medicine, Changsha 410006, PR ChinaSchool of Chinese Medicine, Hunan University of Chinese Medicine, Changsha 410208, PR ChinaAffiliated Hospital of Hunan Academy of Traditional Chinese Medicine, Changsha 410006, PR China; Corresponding author.School of Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan 250355, PR ChinaSchool of Chinese Medicine, Hunan University of Chinese Medicine, Changsha 410208, PR ChinaAffiliated Hospital of Hunan Academy of Traditional Chinese Medicine, Changsha 410006, PR ChinaSchool of Chinese Medicine, Hunan University of Chinese Medicine, Changsha 410208, PR China; Hunan Key Laboratory of TCM Diagnostics,University of Chinese Medicine, Changsha 410208, PR ChinaAim and objective: To study the effect of Gupi Xiaoji Prescription (GXP) on hepatitis B virus(HBV)-related liver cancer through network pharmacology coupled with in vitro experiments and explore their related mechanisms. Materials and methods: Gupi Xiaoji Prescription’s chemical constituents and the action targets of its six medicinal components were identified using several databases. These included the Traditional Chinese Medicine Systems Pharmacology Database (TCMSP), the Bioinformatics Analysis Tool for Molecular mechANism of TCM (BATMAN-TCM), and the Traditional Chinese Medicine Integrated Database (TCMID), while GeneCards and OMIM were used to compile relevant liver cancer disease targets. Pathway enrichment of gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG), analysis of potential targets, and analysis of the enriched pathways in literature were executed in R. The Hepatocellular carcinoma (HCC)-derived HepG2.2.15 cell line stably expresses and replicates HBV. In vitro experiments with HepG2.2.15 were used to verify GXP’s effects on HBV-related liver cancer, while the human liver cancer cell line HepG2 was used as the control. Results: 171 active ingredients and 259 potential drug targets were screened from GXP, involving 181 pathways in vitro. These assays identified Polyphyllin I as an effective GXP component. Notably, GXP inhibited cell proliferation and metastasis in a concentration-dependent manner (P < 0.01). In comparison with the vehicle group, the fluorescence intensity of each drug group was significantly weakened (P < 0.01), while the drug group Mitofusins 1(MFN1) and protein expression level of Mitofusins 2 (MFN2) increased significantly. The protein expression level of Mitochondrial fission protein 1 (FIS1) and Optic Atrophy 1 (OPA1) also showed significant decreases (P < 0.01). Molecular docking revealed Fructus saponins I‘s high affinity with FIS1, MFN1, MFN2, and OPA1. Conclusion: The network pharmacology results indicate that Gupi Xiaoji Prescription may treat liver cancer by regulating mitochondrial division and fusion of key genes to disrupt liver cancer cells’ energy metabolism. In vitro experiments also verified that GXP could inhibit the proliferation and migration of HepG2.2.15 cells by up-regulating MFN1 and MFN2, down-regulating the expression of FIS1 and OPA1 in addition to damaging mitochondria. Consistent with network pharmacology and molecular docking results, Polyphyllin I may be the most active compound of the formula’s components. It also shows that Traditional Chinese medicine (TCM) plays a significant, targeted role in the treatment of HBV-related liver cancer.http://www.sciencedirect.com/science/article/pii/S0753332221003978Hepatitis B virus-related liver cancerHepG2.2.15Network pharmacologyMolecular dockingMitochondrial fission and fusionGupi Xiaoji Prescription
collection DOAJ
language English
format Article
sources DOAJ
author Shuxian Yu
Wenhui Gao
Puhua Zeng
Chenglong Chen
Zhen Zhang
Zhuo Liu
Jiyong Liu
spellingShingle Shuxian Yu
Wenhui Gao
Puhua Zeng
Chenglong Chen
Zhen Zhang
Zhuo Liu
Jiyong Liu
Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
Biomedicine & Pharmacotherapy
Hepatitis B virus-related liver cancer
HepG2.2.15
Network pharmacology
Molecular docking
Mitochondrial fission and fusion
Gupi Xiaoji Prescription
author_facet Shuxian Yu
Wenhui Gao
Puhua Zeng
Chenglong Chen
Zhen Zhang
Zhuo Liu
Jiyong Liu
author_sort Shuxian Yu
title Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
title_short Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
title_full Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
title_fullStr Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
title_full_unstemmed Exploring the effect of Gupi Xiaoji Prescription on hepatitis B virus-related liver cancer through network pharmacology and in vitro experiments
title_sort exploring the effect of gupi xiaoji prescription on hepatitis b virus-related liver cancer through network pharmacology and in vitro experiments
publisher Elsevier
series Biomedicine & Pharmacotherapy
issn 0753-3322
publishDate 2021-07-01
description Aim and objective: To study the effect of Gupi Xiaoji Prescription (GXP) on hepatitis B virus(HBV)-related liver cancer through network pharmacology coupled with in vitro experiments and explore their related mechanisms. Materials and methods: Gupi Xiaoji Prescription’s chemical constituents and the action targets of its six medicinal components were identified using several databases. These included the Traditional Chinese Medicine Systems Pharmacology Database (TCMSP), the Bioinformatics Analysis Tool for Molecular mechANism of TCM (BATMAN-TCM), and the Traditional Chinese Medicine Integrated Database (TCMID), while GeneCards and OMIM were used to compile relevant liver cancer disease targets. Pathway enrichment of gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG), analysis of potential targets, and analysis of the enriched pathways in literature were executed in R. The Hepatocellular carcinoma (HCC)-derived HepG2.2.15 cell line stably expresses and replicates HBV. In vitro experiments with HepG2.2.15 were used to verify GXP’s effects on HBV-related liver cancer, while the human liver cancer cell line HepG2 was used as the control. Results: 171 active ingredients and 259 potential drug targets were screened from GXP, involving 181 pathways in vitro. These assays identified Polyphyllin I as an effective GXP component. Notably, GXP inhibited cell proliferation and metastasis in a concentration-dependent manner (P < 0.01). In comparison with the vehicle group, the fluorescence intensity of each drug group was significantly weakened (P < 0.01), while the drug group Mitofusins 1(MFN1) and protein expression level of Mitofusins 2 (MFN2) increased significantly. The protein expression level of Mitochondrial fission protein 1 (FIS1) and Optic Atrophy 1 (OPA1) also showed significant decreases (P < 0.01). Molecular docking revealed Fructus saponins I‘s high affinity with FIS1, MFN1, MFN2, and OPA1. Conclusion: The network pharmacology results indicate that Gupi Xiaoji Prescription may treat liver cancer by regulating mitochondrial division and fusion of key genes to disrupt liver cancer cells’ energy metabolism. In vitro experiments also verified that GXP could inhibit the proliferation and migration of HepG2.2.15 cells by up-regulating MFN1 and MFN2, down-regulating the expression of FIS1 and OPA1 in addition to damaging mitochondria. Consistent with network pharmacology and molecular docking results, Polyphyllin I may be the most active compound of the formula’s components. It also shows that Traditional Chinese medicine (TCM) plays a significant, targeted role in the treatment of HBV-related liver cancer.
topic Hepatitis B virus-related liver cancer
HepG2.2.15
Network pharmacology
Molecular docking
Mitochondrial fission and fusion
Gupi Xiaoji Prescription
url http://www.sciencedirect.com/science/article/pii/S0753332221003978
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