| Literature DB >> 32908565 |
Wei Liu1, Yihua Fan1,2, Chunying Tian2, Yue Jin1, Shaopeng Du1, Ping Zeng2,3, Aihua Wang1.
Abstract
BACKGROUND: Huangqi Guizhi Wuwu Decoction (HGWD) has been applied in the treatment of joint pain for more than 1000 years in China. Currently, most physicians use HGWD to treat rheumatoid arthritis (RA), and it has proved to have high efficacy. Therefore, it is necessary to explore the potential mechanism of action of HGWD in RA treatment based on network pharmacology and molecular docking methods.Entities:
Year: 2020 PMID: 32908565 PMCID: PMC7471805 DOI: 10.1155/2020/7151634
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Figure 1The flow diagram of network pharmacology analysis.
Basic information of the active compounds in the HGWD formula.
| Molecule ID | Name | OB | DL | Source |
|---|---|---|---|---|
| MOL000211 | Mairin | 55.38 | 0.78 | Huangqi, Baishao, Dazao |
| MOL000239 | Jaranol | 50.83 | 0.29 | Huangqi |
| MOL000296 | Hederagenin | 36.91 | 0.75 | Huangqi |
| MOL000033 | (3S,8S,9S,10R,13R,14S,17R)-10,13-Dimethyl-17-[(2R,5S)-5-propan-2-yloctan-2-yl]-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol | 36.23 | 0.78 | Huangqi |
| MOL000354 | Isorhamnetin | 49.6 | 0.31 | Huangqi |
| MOL000371 | 3,9-Di-O-methylnissolin | 53.74 | 0.48 | Huangqi |
| MOL000374 | 5′-Hydroxyiso-muronulatol-2′,5′-di-O-glucoside | 41.72 | 0.69 | Huangqi |
| MOL000378 | 7-O-Methylisomucronulatol | 74.69 | 0.3 | Huangqi |
| MOL000379 | 9,10-Dimethoxypterocarpan-3-O- | 36.74 | 0.92 | Huangqi |
| MOL000380 | (6aR,11aR)-9,10-Dimethoxy-6a,11a-dihydro-6H-benzofuro[3,2-c]chromen-3-ol | 64.26 | 0.42 | Huangqi |
| MOL000387 | Bifendate | 31.1 | 0.67 | Huangqi |
| MOL000392 | Formononetin | 69.67 | 0.21 | Huangqi |
| MOL000398 | Isoflavanone | 109.99 | 0.3 | Huangqi |
| MOL000417 | Calycosin | 47.75 | 0.24 | Huangqi |
| MOL000422 | Kaempferol | 41.88 | 0.24 | Huangqi, Baishao |
| MOL000433 | FA | 68.96 | 0.71 | Huangqi |
| MOL000438 | (3R)-3-(2-Hydroxy-3,4-dimethoxyphenyl)chroman-7-ol | 67.67 | 0.26 | Huangqi |
| MOL000439 | Isomucronulatol-7,2′-di-O-glucosiole | 49.28 | 0.62 | Huangqi |
| MOL000442 | 1,7-Dihydroxy-3,9-dimethoxy pterocarpene | 39.05 | 0.48 | Huangqi |
| MOL000098 | Quercetin | 46.43 | 0.28 | Huangqi, Dazao |
| MOL001736 | (-)-Taxifolin | 60.51 | 0.27 | Guizhi |
| MOL000358 | Beta-sitosterol | 36.91 | 0.75 | Guizhi、Baishao、Shengjiang、Dazao |
| MOL000359 | Sitosterol | 36.91 | 0.75 | Guizhi, Baishao |
| MOL000492 | (+)-Catechin | 54.83 | 0.24 | Guizhi, Baishao, Dazao |
| MOL000073 | ent-Epicatechin | 48.96 | 0.24 | Guizhi |
| MOL004576 | Taxifolin | 57.84 | 0.27 | Guizhi |
| MOL011169 | Peroxyergosterol | 44.39 | 0.82 | Guizhi |
| MOL001928 | Albiflorin_qt | 66.64 | 0.33 | Baishao |
| MOL001918 | Paeoniflorgenone | 87.59 | 0.37 | Baishao |
| MOL001910 | 11alpha,12alpha-Epoxy-3beta-23-dihydroxy-30-norolean-20-en-28,12beta-olide | 64.77 | 0.38 | Baishao |
| MOL001925 | Paeoniflorin_qt | 68.18 | 0.4 | Baishao |
| MOL001919 | (3S,5R,8R,9R,10S,14S)-3,17-Dihydroxy-4,4,8,10,14-pentamethyl-2,3,5,6,7,9-hexahydro-1H-cyclopenta[a]phenanthrene-15,16-dione | 43.56 | 0.53 | Baishao |
| MOL001930 | Benzoyl paeoniflorin | 31.27 | 0.75 | Baishao |
| MOL001924 | Paeoniflorin | 53.87 | 0.79 | Baishao |
| MOL001921 | Lactiflorin | 49.12 | 0.8 | Baishao |
| MOL006129 | 6-Methylgingediacetate2 | 48.73 | 0.32 | Shengjiang |
| MOL000449 | Stigmasterol | 43.83 | 0.76 | Shengjiang, Dazao |
| MOL001771 | Poriferast-5-en-3beta-ol | 36.91 | 0.75 | Shengjiang |
| MOL008698 | Dihydrocapsaicin | 47.07 | 0.19 | Shengjiang |
| MOL012921 | Stepharine | 31.55 | 0.33 | Dazao |
| MOL012940 | Spiradine A | 113.52 | 0.61 | Dazao |
| MOL012946 | Zizyphus saponin I_qt | 32.69 | 0.62 | Dazao |
| MOL012961 | Jujuboside A_qt | 36.67 | 0.62 | Dazao |
| MOL012976 | Coumestrol | 32.49 | 0.34 | Dazao |
| MOL012980 | Daechuine S6 | 46.48 | 0.79 | Dazao |
| MOL012981 | Daechuine S7 | 44.82 | 0.83 | Dazao |
| MOL012986 | Jujubasaponin V_qt | 36.99 | 0.63 | Dazao |
| MOL012989 | Jujuboside C_qt | 40.26 | 0.62 | Dazao |
| MOL012992 | Mauritine D | 89.13 | 0.45 | Dazao |
| MOL001454 | Berberine | 36.86 | 0.78 | Dazao |
| MOL001522 | (S)-Coclaurine | 42.35 | 0.24 | Dazao |
| MOL003410 | Ziziphin_qt | 66.95 | 0.62 | Dazao |
| MOL004350 | Ruvoside_qt | 36.12 | 0.76 | Dazao |
| MOL005360 | Malkangunin | 57.71 | 0.63 | Dazao |
| MOL000627 | Stepholidine | 33.11 | 0.54 | Dazao |
| MOL007213 | Nuciferin | 34.43 | 0.4 | Dazao |
| MOL000783 | Protoporphyrin | 30.86 | 0.56 | Dazao |
| MOL000787 | Fumarine | 59.26 | 0.83 | Dazao |
| MOL008034 | 21302-79-4 | 73.52 | 0.77 | Dazao |
| MOL008647 | Moupinamide | 86.71 | 0.26 | Dazao |
| MOL002773 | Beta-carotene | 37.18 | 0.58 | Dazao |
| MOL000096 | (-)-Catechin | 49.68 | 0.24 | Dazao |
| MOL013357 | (3S,6R,8S,9S,10R,13R,14S,17R)-17-[(1R,4R)-4-Ethyl-1,5-dimethylhexyl]-10,13-dimethyl-2,3,6,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthrene-3,6-diol | 34.37 | 0.78 | Dazao |
Note. OB, oral bioavailability; DL, drug-likeness.
Figure 2Volcano plot of differentially expressed genes. The red and green dots represent the significant differentially expressed genes.
Figure 3Compound-target network of the HGWD formula. The blue triangles represent the targets, and the ellipses represent active compounds. The green, yellow, amaranth, wathet, and red colors represent compounds from Baishao, Dazao, Guizhi, Huangqi, and multidrug, respectively.
Figure 4Protein interaction network of the HGWD formula.
Figure 5Gene ontology terms of the candidate targets of the HGWD formula against RA. (a) Biological process. (b) Cellular component. (c) Molecular function.
Figure 6KEGG pathway enrichment of the candidate targets of the HGWD formula against RA.
Figure 7Gene-pathway network of the HGWD formula against RA. The yellow squares represent the target genes, and the red v-shapes represent pathways. The large size represents the larger betweenness centrality.
The binding energy of the main potential active ingredients in the HGWD formula.
| Compound | Molecular formula | Binding energy (VCAM1) | Binding energy (CTNNB1) | Binding energy (JUN) |
|---|---|---|---|---|
| Quercetin | C15H10O7 | −7.1 | −7.3 | −7.3 |
| Kaempferol | C15H10O6 | −7.1 | −6.5 | −7.4 |
| Beta-sitosterol | C29H50O | −7.3 | −7.1 | −7.8 |
| Formononetin | C16H12O4 | −7 | −6.3 | −6.9 |
| 7-O-Methylisomucronulatol | C18H20O5 | −6.7 | −6 | −6.9 |
| Isorhamnetin | C16H12O7 | −6.9 | −6.5 | −7.5 |
| Beta-carotene | C40H56 | −6.5 | −7.9 | −8.1 |
| Stepholidine | C19H21NO4 | −7.5 | −6.7 | −6.9 |
| (S)-Coclaurine | C17H19NO3 | −7.1 | −6.3 | −7.1 |
| Stigmasterol | C29H48O | −7.6 | −7 | −8.1 |
Figure 8Molecular docking diagram. (a) Stepholidine-VCAM1. (b) Stigmasterol-VCAM1. (c) Beta-carotene-CTNNB1. (d) Quercetin-CTNB1. (e) Stigmasterol-JUN. (f) Beta-carotene-JUN.