Selected article for: "acute injury and expression level"

Author: Liang, Xu; Luo, Changyong; Li, Yan; Li, Xin; Wang, Qian; Zhang, Shujing; Sun, Qingqiao; Ma, Yuanhong; Xiong, Caihua; Zeng, Yanpeng
Title: Study on Intervention Mechanism of Yiqi Huayu Jiedu Decoction on ARDS Based on Network Pharmacology
  • Cord-id: 8h7yglnq
  • Document date: 2020_8_11
  • ID: 8h7yglnq
    Snippet: BACKGROUND: Yiqi Huayu Jiedu (YQHYJD) is a traditional Chinese medicine decoction made up of eight traditional Chinese medicines. Although YQHYJD is effectively used to prevent and treat ARDS/acute lung injury (ALI) in rats, the molecular mechanisms supporting its clinical application remain elusive. The purpose of the current study was to understand its lung protective effects at the molecular level using network pharmacology approach. METHODS: In an ARDS animal model, the beneficial pharmacolo
    Document: BACKGROUND: Yiqi Huayu Jiedu (YQHYJD) is a traditional Chinese medicine decoction made up of eight traditional Chinese medicines. Although YQHYJD is effectively used to prevent and treat ARDS/acute lung injury (ALI) in rats, the molecular mechanisms supporting its clinical application remain elusive. The purpose of the current study was to understand its lung protective effects at the molecular level using network pharmacology approach. METHODS: In an ARDS animal model, the beneficial pharmacological activities of YQHYJD were confirmed by reduced lung tissue damage levels observed on drug treated rats versus control group. We then proposed a network analysis to discover the key nodes based on drugs and disease network. Subsequently, we analyzed interaction networks and screened key targets. Using Western blot to detect the expression level of key targets, the intervention effect of changes in expression level of key targets on ARDS was evaluated. RESULTS: Pathway enrichment analysis of highly ranked genes showed that ErbB pathways were highly related to ARDS. Finally, western blot results showed decreased level of the AKT1 and KRAS/NRAS/HRAS protein in the lung after treatment which confirmed the hypothesis. CONCLUSION: In conclusion, our results suggest that YQHYJD can exert lung tissue protective effect against the severe injury through multiple pathways, including the endothelial cells permeability improvement, inflammatory reaction inhibition, edema, and lung tissue hemorrhage reduction.

    Search related documents:
    Co phrase search for related documents
    • action mechanism and acute ards respiratory distress syndrome: 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17
    • action mechanism and acute lung injury: 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16
    • action potential and acute ards respiratory distress syndrome: 1, 2, 3, 4
    • action potential and acute critical illness: 1
    • action potential and acute lung injury: 1, 2
    • activation differentiation and acute ards respiratory distress syndrome: 1, 2
    • activation differentiation and acute lung injury: 1
    • activation protein and acute ards respiratory distress syndrome: 1, 2, 3, 4, 5, 6, 7, 8, 9
    • activation protein and acute lung injury: 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13
    • active compound and acute ards respiratory distress syndrome: 1, 2
    • active compound and acute lung injury: 1, 2, 3
    • active ingredient and acute ards respiratory distress syndrome: 1
    • active ingredient and acute lung injury: 1, 2
    • acute ards respiratory distress syndrome and administration significantly reduce: 1