A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes
Erjing prescription (EJP) was an ancient formula that was recorded in the General Medical Collection of Royal Benevolence of the Song Dynasty. It has been frequently used to treat type 2 diabetes mellitus (T2DM) in the long history of China. The formula consists of Lycium barbarum L. and Polygonatum...
Main Authors: | , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Hindawi Limited
2021-01-01
|
Series: | Evidence-Based Complementary and Alternative Medicine |
Online Access: | http://dx.doi.org/10.1155/2021/9933236 |
id |
doaj-0c696773a0054fe08c37eb3bdcd96acb |
---|---|
record_format |
Article |
spelling |
doaj-0c696773a0054fe08c37eb3bdcd96acb2021-08-09T00:00:26ZengHindawi LimitedEvidence-Based Complementary and Alternative Medicine1741-42882021-01-01202110.1155/2021/9933236A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 DiabetesJiexin Wang0Haiqing Chu1Hangying Li2Wenqian Yang3Yu Zhao4Tong Shen5John Cary6Liming Zhang7College of PharmacyCollege of PharmacyCollege of PharmacyCollege of PharmacyCollege of PharmacyCollege of PharmacyNingxia Medical UniversityCollege of PharmacyErjing prescription (EJP) was an ancient formula that was recorded in the General Medical Collection of Royal Benevolence of the Song Dynasty. It has been frequently used to treat type 2 diabetes mellitus (T2DM) in the long history of China. The formula consists of Lycium barbarum L. and Polygonatum sibiricum F. Delaroche with a ratio of 1 : 1. This study aimed to identify the potential effects and mechanisms of EJP treatment T2DM. The target proteins and possible pathways of EJP in T2DM treatment were investigated by the approach of network pharmacology and real-time PCR (RT-PCR). 99 diabetes-related proteins were regulated by 56 bioactive constituents in EJP in 26 signal pathways by Cytoscape determination. According to GO analysis, 606 genes entries have been enriched. The PPI network suggested that AKT1, EGF, EGFR, MAPK1, and GSK3β proteins were core genes. Among the 26 signal pathways, the PI3K-AKT signal pathway was tested by the RT-PCR. The expression level of PI3K p85, AKT1, GSK3β, and Myc mRNA of this pathway was regulated by EJP. The study based on network pharmacology and RT-PCR analysis revealed that the blood sugar level was regulated by EJP via regulating the PI3K-AKT signal pathway. Plenty of new treatment methods for T2DM using EJP were provided by network pharmacology analysis.http://dx.doi.org/10.1155/2021/9933236 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiexin Wang Haiqing Chu Hangying Li Wenqian Yang Yu Zhao Tong Shen John Cary Liming Zhang |
spellingShingle |
Jiexin Wang Haiqing Chu Hangying Li Wenqian Yang Yu Zhao Tong Shen John Cary Liming Zhang A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes Evidence-Based Complementary and Alternative Medicine |
author_facet |
Jiexin Wang Haiqing Chu Hangying Li Wenqian Yang Yu Zhao Tong Shen John Cary Liming Zhang |
author_sort |
Jiexin Wang |
title |
A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes |
title_short |
A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes |
title_full |
A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes |
title_fullStr |
A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes |
title_full_unstemmed |
A Network Pharmacology Approach to Investigate the Mechanism of Erjing Prescription in Type 2 Diabetes |
title_sort |
network pharmacology approach to investigate the mechanism of erjing prescription in type 2 diabetes |
publisher |
Hindawi Limited |
series |
Evidence-Based Complementary and Alternative Medicine |
issn |
1741-4288 |
publishDate |
2021-01-01 |
description |
Erjing prescription (EJP) was an ancient formula that was recorded in the General Medical Collection of Royal Benevolence of the Song Dynasty. It has been frequently used to treat type 2 diabetes mellitus (T2DM) in the long history of China. The formula consists of Lycium barbarum L. and Polygonatum sibiricum F. Delaroche with a ratio of 1 : 1. This study aimed to identify the potential effects and mechanisms of EJP treatment T2DM. The target proteins and possible pathways of EJP in T2DM treatment were investigated by the approach of network pharmacology and real-time PCR (RT-PCR). 99 diabetes-related proteins were regulated by 56 bioactive constituents in EJP in 26 signal pathways by Cytoscape determination. According to GO analysis, 606 genes entries have been enriched. The PPI network suggested that AKT1, EGF, EGFR, MAPK1, and GSK3β proteins were core genes. Among the 26 signal pathways, the PI3K-AKT signal pathway was tested by the RT-PCR. The expression level of PI3K p85, AKT1, GSK3β, and Myc mRNA of this pathway was regulated by EJP. The study based on network pharmacology and RT-PCR analysis revealed that the blood sugar level was regulated by EJP via regulating the PI3K-AKT signal pathway. Plenty of new treatment methods for T2DM using EJP were provided by network pharmacology analysis. |
url |
http://dx.doi.org/10.1155/2021/9933236 |
work_keys_str_mv |
AT jiexinwang anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT haiqingchu anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT hangyingli anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT wenqianyang anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT yuzhao anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT tongshen anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT johncary anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT limingzhang anetworkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT jiexinwang networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT haiqingchu networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT hangyingli networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT wenqianyang networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT yuzhao networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT tongshen networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT johncary networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes AT limingzhang networkpharmacologyapproachtoinvestigatethemechanismoferjingprescriptionintype2diabetes |
_version_ |
1721215486965841920 |