Selected article for: "inflammatory cytokine and MAP kinase"

Author: Lu, Xiaying; Wang, Juan; Chen, Xiaohuan; Jiang, Yong; Pan, Zhixing K.
Title: Rolipram Protects Mice from Gram-negative Bacterium Escherichia coli-induced Inflammation and Septic Shock
  • Cord-id: ujzrqzv3
  • Document date: 2020_1_13
  • ID: ujzrqzv3
    Snippet: Sepsis is typically triggered by an overwhelming systemic inflammatory response to pathogens, and may lead to severe organ dysfunction and/or death. Sepsis consequently has a high mortality rate and a high rate of complications for survivors, despite modern medical advances. Therefore, drug identification and validation for the treatment of sepsis is of the utmost importance. As a selective phosphodiesterase-4 inhibitor, rolipram also exhibits the abilities of inhibiting multiple pro-inflammator
    Document: Sepsis is typically triggered by an overwhelming systemic inflammatory response to pathogens, and may lead to severe organ dysfunction and/or death. Sepsis consequently has a high mortality rate and a high rate of complications for survivors, despite modern medical advances. Therefore, drug identification and validation for the treatment of sepsis is of the utmost importance. As a selective phosphodiesterase-4 inhibitor, rolipram also exhibits the abilities of inhibiting multiple pro-inflammatory cytokines production in macrophages and toxin-induced inflammation in mice. However, this drug has never been studied as a sepsis treatment method. We found that rolipram significantly improves survival in mice challenged with gram-negative bacterium E. coli, CLP, or E. coli derived lipopolysaccharide. We have also found that rolipram inhibits organ damage, pro-inflammatory cytokine production, and intracellular migration of early-stage inflammatory elements. Our results also show that rolipram increases anti-inflammatory cytokine production. The protective effects of rolipram on septic mice may result from inhibition of the MAP kinase and NF-κB signaling pathways. Rolipram may therefore be a potential novel sepsis treatment, one that would bypass the time-consuming and costly drug-discovery process.

    Search related documents:
    Co phrase search for related documents
    • adhesion molecule and lps challenge: 1
    • adhesion molecule and lps induce: 1
    • adhesion molecule and lps induce inflammation: 1
    • adhesion molecule and lps injection: 1, 2
    • adhesion molecule and lps kidney: 1
    • liver tissue and lps administration: 1
    • liver tissue and lps injection: 1