典型文献
Network pharmacological prediction and molecular docking analysis of the combination of Atractylodes macrocephala Koidz. and Paeonia lactiflora Pall. in the treatment of functional constipation and its verification
文献摘要:
Background : We aimed to reveal the mechanism of functional constipation in the treatment of Atractylodes macrocephala Koidz. (AMK) and Paeonia lactiflora Pall. (PLP). Methods : The main active ingredients of AMK and PLP were screened by the Traditional Chinese Medicine Systems Pharmacology (TCMSP) platform. A database of functional constipation targets was established by GeneCard and OMIM. An "ingredient- target" network map was constructed with Cytoscape software (version 3.7.1), and molecular docking analysis was performed on the components and genes with the highest scores. The rats in the normal group were given saline, and those in the other groups were given 10 mg/kg diphenoxylate once a day for 14 days. The serum and intestinal tissue levels of adenosine monophosphate (cAMP), protein kinase A (PKA), and adenylyl cyclase (AC) of the rats and aquaporin (AQP)1, AQP3, and AQP8 were measured.Results : AMK and PLP had a significant role in the regulation of targets in the treat-ment of functional constipation. After treatment with AMK, PLP, or mosapride, the serum and intestinal tissue levels of AC, cAMP, and PKA were significantly downregu-lated. Groups receiving AMK and PLP or mosapride exhibited a reduction in the level of AQP1, AQP3, and AQP8 to varying degrees. Conclusion : Molecular docking analysis revealed that AMK and PLP had a significant role in the regulation of targets in the treatment of functional constipation. Studies have confirmed that AMK and PLP can also affect AC, cAMP, and PKA. AC, cAMP, and PKA in model rats were significantly downregulated. AQP expression is closely related to AC, cAMP, and PKA. AMK and PLP can reduce the expression of AQP1, AQP3, and AQP9 in the colon of constipated rats.
文献关键词:
中图分类号:
作者姓名:
Yuxiao Meng;Xiaojun Li;Xiaoting Wang;Lu Zhang;Jiaqi Guan
作者机构:
School of Pharmacy,Zhejiang Chinese Medical University,Zhejiang,China
文献出处:
引用格式:
[1]Yuxiao Meng;Xiaojun Li;Xiaoting Wang;Lu Zhang;Jiaqi Guan-.Network pharmacological prediction and molecular docking analysis of the combination of Atractylodes macrocephala Koidz. and Paeonia lactiflora Pall. in the treatment of functional constipation and its verification)[J].动物模型与实验医学(英文),2022(02):120-132
A类:
diphenoxylate,mosapride,constipated
B类:
Network,pharmacological,prediction,molecular,docking,analysis,combination,Atractylodes,macrocephala,Koidz,Paeonia,lactiflora,Pall,treatment,functional,constipation,its,verification,Background,We,aimed,mechanism,AMK,PLP,Methods,main,active,ingredients,were,screened,by,Traditional,Chinese,Medicine,Systems,Pharmacology,TCMSP,platform,database,targets,was,established,GeneCard,OMIM,An,network,map,constructed,Cytoscape,software,version,performed,components,genes,highest,scores,rats,normal,given,saline,those,other,groups,once,days,serum,intestinal,tissue,levels,adenosine,monophosphate,cAMP,protein,kinase,PKA,adenylyl,cyclase,AC,aquaporin,AQP3,AQP8,measured,Results,had,role,regulation,After,significantly,Groups,receiving,exhibited,reduction,AQP1,varying,degrees,Conclusion,Molecular,revealed,that,Studies,have,confirmed,also,affect,model,downregulated,expression,closely,related,reduce,AQP9,colon
AB值:
0.436288
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