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International Journal of Traditional Chinese Medicine ; (6): 73-79, 2022.
Artigo em Chinês | WPRIM | ID: wpr-930102

RESUMO

Objective:To predict the main active constituent, targets and signaling pathways of Huanglian-Jiedu Decoction against Helicobacter pylori infection by using network pharmacology, and to explore its potential mechanism, so as to provide objective foundation for the following experimental research. Methods:Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP) was used to screen the main active constituent and potential targets of Coptidis Rhizoma, Scutellaria baicalensis, Phellodendri Chinensis Cortex and Gardeniae Fructus in Huanglian-Jiedu Decoction. The targets related to Helicobacter pylori infection were screened by GeneCards suite database and human Mendelian genetic database (OMIM), and the intersection of Chinese herbs and disease targets was obtained. The Intersecting target were import into Cytoscape 3.7.2 to construct the network of active constituents and targets related to Helicobacter pylori infection. The protein protein interaction (PPI) network was constructed and analyzed by using string online analysis platform. Use R language to search Bioconductor platform online to enrich go function of targets. The enrichment of KEGG pathway was analyzed by David database. Results:total of 85 active constituent were screened from Huanglian-Jiedu Decoction, including quercetin, berberine, kaempferol, wogonin and baicalein. There are 112 corresponding targets, 1 960 disease-related targets and 71 common targets for herbal medicine and disease. Quercetin is the active constituent with the highest degree in the network diagram, and the target with the highest degree is cyclooxygenase-1 (PTGS1). In 69 nodes of PPI graph, the target proteins with the highest degree included CASP3, IL6, MAPK8, MYC, VEGFA and EGFR. A total of 89 items were obtained by GO functional enrichment analysis, and 12 signaling pathways with significant differences were screened by KEGG pathway enrichment analysis. Among them, pathways in cancer, ErbB Signal pathway, p53 signal pathway, apoptosis, and focal adhesion, which play a major role. Conclusions:Huanglian-Jiedu Decoction may treatm Helicobacter pylori with multi-component, multi-target and multi-pathway charateristics. At the same time, it may regulate the process of gastric cancer through anti-tumor mechanism, which could lay a foundation for the study of active components and anti-HP mechanism.

2.
Journal of Chinese Physician ; (12): 71-73, 2010.
Artigo em Chinês | WPRIM | ID: wpr-388909

RESUMO

Objective To investigate the expression of 5-lipoxygenase (5-LOX) in endometriosis and analyze the relationship of 5-LOX and angionesis in endometriosis. Methods Immunochemical method was used to determine the expression of 5-LOX, VEGF, and the value of MVD in ectopic endometrium (ec-topic group) and eutopic endometrium (eutopic group) of 32 patients with EMs and in eutopic endometrium ( control group) of 25 patients without EMs. Result The expressions of 5-LOX and VECF and the value of MVD in ectopic groups were 0. 43 ± 0.09,0. 39 ±0.07 and 0.40 ± 0.09, respectively, which were higher than that of eutopic group and control group. The expressions of 5-LOX and VEGF and the value of MVD in eutopic group were 0. 35 ± 0. 08, 0.30 ± 0. 06 and 0. 33 ± 0. 08, respectively, which were higher than that of control group ( P <0.05). In ectopic group, the expressions of 5-LOX and VEGF, and the value of MVD in stage III/IV, were much higher than that of stage I/II ( P <0. 05); the expressions of 5-LOX and VEGF and the value of MVD were related to the severe of endometriosis through Spearman correlation analysis. The expressions of 5-LOX were shown to be significantly related to the expressions of VEGF and the value of MVD in ectopic and eutopic groups ( P <0. 05). Conclusion There is a high expression of 5-LOX in endometriosis, suggesting that 5-LOX may be participate in the pathogenesis of endometriosis. 5-LOX may promote angiogenesis of EMs through up - regulating the expression of VEGF.

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