• Title of article

    Toll-like receptor 2 plays a critical role in the progression of atherosclerosis that is independent of dietary lipids

  • Author/Authors

    Xinyan Liu، نويسنده , , Takashi Ukai، نويسنده , , Hiromichi Yumoto، نويسنده , , Michael Davey، نويسنده , , Sulip Goswami، نويسنده , , Frank C. Gibson III، نويسنده , , Caroline A. Genco، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    9
  • From page
    146
  • To page
    154
  • Abstract
    Objective Toll-like receptors (TLRs), a group of pathogen-associated microbial pattern recognition receptors, play an important role in innate immune signaling and are differentially regulated in chronic inflammatory diseases such as atherosclerosis. However, the involvement of TLRs in the progression of atherosclerosis is still unclear. Methods and results TLR2 and apolipoprotein E double knockout (Tlr2−/−Apoe−/−) mice were generated and the progressive formation of atherosclerotic plaque in the aortas was examined in mice fed a normal chow diet. We demonstrate that inactivation of TLR2 resulted in reduced progression of atherosclerosis in both male and female Apoe−/− mice. Likewise, TLR2 deficiency resulted in a reduction in lipid accumulation and decreased macrophage recruitment to the aortic sinus, as well as reduced monocyte chemoattractant protein-1 (MCP-1) levels. Furthermore, macrophages isolated from Tlr2−/−Apoe−/− mice demonstrated significantly reduced MCP-1 production upon stimulation with a TLR2 ligand. However, no differences in acetylated low-density lipoprotein uptake and foam cell formation were observed in macrophages isolated from Tlr2−/−Apoe−/− mice as compared to Apoe−/− mice. Conclusions TLR2 plays a critical role in the progression of atherosclerosis in Apoe−/− mice, which is independent of dietary lipids and macrophage lipid uptake.
  • Keywords
    endothelial dysfunction , Connective tissue growth factor , Statins , Atherogenesis , shear stress
  • Journal title
    Atherosclerosis
  • Serial Year
    2008
  • Journal title
    Atherosclerosis
  • Record number

    632720