| Literature DB >> 31118961 |
Wei Hu1,2, Wanjin Fu2, Xin Wei2, Yang Yang2, Chao Lu2, Zeyuan Liu1.
Abstract
Traditional Chinese medicine has specific effect on some chronic diseases in clinic, especially in rheumatic diseases. Tripterygium wilfordii Hook (TWH) is a traditional Chinese medicine commonly used in the treatment of rheumatoid arthritis (RA); the unique therapeutic effect has been confirmed by a large number of research papers. TWH has many compounds that lead to its active compounds. However, the potential targets and pharmacological and molecular mechanism of its action treatment of rheumatic diseases are not entirely clear. Therefore, the network pharmacology approach is needed to further study and explore its treatment mechanism. We have successfully set up 10 networks, including four major networks and other networks. Four major networks include rheumatoid arthritis disease network, compound-compound target network of TWH, TWH compound target-rheumatoid arthritis disease network, and TWH-rheumatoid arthritis disease-mechanism network. Other networks consist of RA disease and TWH related targets clusters, biological processes, and pathways network. Our study successfully predicted, explained, and confirmed the TWH of RA disease molecular synergy and found the potential of RA related targets, cluster, biological process, and pathways. This study not only provides prompts to the researcher who explores pharmacological and biological molecular mechanism of TWH applying to RA disease, but also proves a feasible method for discovering potential activated compounds from Chinese herbs.Entities:
Year: 2019 PMID: 31118961 PMCID: PMC6500618 DOI: 10.1155/2019/5276865
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Figure 1TWH treatment of RA network pharmacological flow chart.
Figure 2TWH active compound AMDE screening and TWH compound-compound target network. (a) The active compound according to the OB, CACO-2, DL, HT four index values screening results. (b) The Venn diagram of the active compound according to the four index values of OB, CACO-2, DL, and HT. (c) The retrieval results of RA targets for different disease databases. (d) The Venn diagram of the retrieval results of RA targets for different disease databases. (e) TWH compound-compound target network of YHD consists of 150 compound targets and 23 compounds (red hexagonal represents compound; yellow circle represents target).
Cluster of rheumatoid arthritis disease PPI network.
| Cluster | Score | Nodes | Edges | GENES |
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| 1 | 3.375 | 31 | 54 | LTA, FGB, FGG, SYK, TLR4, TBP, TLR9, ITGB3, MYD88, ADAM17, NFKB2, PDGFRA, PLA2G4A, RELA, TNFRSF1A, CTLA4, REL, C1QA, HRG, C1QB, C1QC, JAK2, NCF1, PRKCD, F13A1, IRF1, STAT1, F2, IRF2, TNFRSF1B, LCK |
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| 2 | 2.4 | 4 | 6 | CASP8, IKBKG, TNF, TNFAIP3 |
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| 3 | 2.333 | 5 | 7 | HLA-B, HLA-C, LILRB1, HLA-H, HLA-G |
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| 4 | 2.25 | 7 | 9 | PTPRC, FCGR3A, CD4, CD3E, PTPN22, PIK3R1, CSK |
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| 5 | 2.2 | 9 | 11 | ABL1, TNFSF11, MMP7, JAK1, CCL2, SMURF1, MMP1, BTK, CCR1 |
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| 6 | 1.5 | 3 | 3 | HFE, TFR2, TF |
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| 7 | 1.5 | 3 | 3 | IL17RA, TRAF3IP2, IL17A |
Figure 3Pathway of rheumatoid arthritis disease target.
Figure 4TWH-RA disease network (green circle represents having nothing to do with the RA disease targets, star on behalf of TWH compounds, red circle represents compounds directly affect the RA targets, blue circle represents compound indirect role in RA targets of targets, purple is on behalf of TWH indirect targets, and yellow circle represents having nothing to do with the TWH targets).
Figure 5(a) TWH-RA disease network and deletions do not interact with targets and compounds (star is on behalf of TWH compounds, red circle represents compounds directly affect the RA targets, blue circle represents compound indirect role in RA targets of targets, purple is on behalf of TWH indirectly targets). (b) Cluster of compound RA disease network (A, B, C, and so on stand for clusters 1, 2, 3, and so on).
Clusters of TWH-Rheumatoid arthritis network.
| Cluster | Score | Nodes | Edges | GENES |
|---|---|---|---|---|
| 1 | 6.1 | 35 | 110 | CCR5, JAK2, IKBKG, HTT, HSP90AB1, HCK, FYN, FOS, CSF2RB, CREB1, IRF2, BTK, AR, S100A8, RELA, ITK, ESR1, AHR, FASLG, STAT3, MAPK14, CDK2, CSK, FCGR3A, CD4, PTPN22, JAK3, STAT1, SYK, PRKCA, CD3E, IL6ST, CXCR4, PGR, FN1 |
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| 2 | 3.1 | 21 | 34 | FGG, ABL1, PIK3R1, ZAP70, TP53, PRKACA, CTLA4, PDE4D, MAPK11, LRBA, ITGB3, TWIST1, BCL2, IKBKB, TRAT1, F2, LCK, PDGFRA, CAST, FGB, F13A1 |
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| 3 | 2.9 | 10 | 16 | NCOA2, TNFRSF1A, TNF, TNFAIP3, BIRC3, NR3C1, YWHAH, NFKB2, JUN, TBP |
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| 4 | 2.7 | 7 | 11 | CALM1, NCOA1, RXRA, NFKB1, ESR2, REL, PPARG |
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| 5 | 2.6 | 9 | 13 | TYMS, ADRB2, ATIC, OPRD1, ITGA4, SQSTM1, PRKCD, INSR, EEF1A1 |
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| 6 | 2.4 | 8 | 11 | LYN, CDKN1A, FCGR2B, FCGR2A, CASP3, MAPK9, MAPK8, MCL1 |
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| 7 | 2.4 | 4 | 6 | CASP8, BAX, CASP9, XIAP |
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| 8 | 2.0 | 4 | 5 | HRG, C1QC, C1QB, C1QA |
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| 9 | 2.0 | 4 | 5 | CXCR1, ADRA1A, CXCL8, CXCR2 |
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| 10 | 1.6 | 4 | 4 | HSPD1, NOS2, PSMD3, AHSA1 |
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| 11 | 1.5 | 3 | 3 | MMP7, MMP1, TNFSF11 |
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| 12 | 1.5 | 3 | 3 | TFR2, TF, HFE |
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| 13 | 1.5 | 3 | 3 | C5, C3, C2 |
Figure 6Pathway for TWH-Rheumatic Arthritis network only includes intersection targets (the yellow square represents the target action pathway, red circle represents compounds directly affect the RA targets, blue circle represents compound indirect role in RA targets of targets, purple is on behalf of TWH indirectly targets).
Figure 7The pathway of direct action target of TWH (the yellow is the compound, the magenta is the target, the green is the signaling pathway, MOL0005828 represents nobiletin compound, MOL003217 represents Isoxanthohumol compound, MOL003182 represents (+)-Medioresinol di-O-beta-D-glucopyranoside_qt compound, MOL003199 represents 5,8-Dihydroxy-7-(4-hydroxy-5-methyl-coumarin-3)-coumarin compound, MOL003187 represents triptolide compound, MOL000422 represents kaempferol compound, MOL000449 represents Stigmasterol compound, MOL000358 represents beta-sitosterol compound, MOL000296 represents hederagenin compound.)