AI Article Synopsis

  • The study investigates how chronic unpredicted mild stress (CUMS) contributes to atherosclerosis by activating the TLR4 pathway, leading to lower levels of PPARγ and LXRα associated with lipid metabolism.
  • Using animal models, researchers found that stress increased levels of HMGB1, TLR4, and inflammatory markers while reducing protective proteins, which suggests a link between stress and atherosclerosis development.
  • Treatments with Ethyl pyruvate, TLR4 inhibitors, and PPARγ agonists showed promising results in reversing the effects of stress-induced atherosclerosis, highlighting a potential therapeutic target for managing the condition.

Article Abstract

Although our previous studies have confirmed that the activation of TLR4 is implicated in the development of atherosclerosis induced by chronic unpredicted mild stress (CUMS), the underling mechanism is largely unclear. Here, we hypothesized that CUMS accelerates atherosclerotic development through lowering PPARγ/LXRα-ABCA1 expression via HMGB1/TLR4 signaling. In present study, CUMS atherosclerotic animal models were established with AopE mice, and CUMS Raw 264.7 macrophage models were mimicked by high corticosterone treatment, These models were treated with Ethyl pyruvate (EP, an inhibitor of HMGB1), TLR4 inhibitor TAK-242, and PPARγ agonist RSG (Rosiglitazone) to test our hypothesis, respectively. Our results indicated that the protein levels of HMGB1, TLR4, and pro-inflammatory cytokines including IL-1β, TNF-α were elevated with the development of atherosclerosis in CUMS mice, while the expressions of PPARγ, LXRα, and ABCA1 declined. Notably, HMGB1 inhibition by EP reversed CUMS-induced atherosclerotic development, pro-inflammatory cytokines upregulation, and PPARγ/LXRα-ABCA1 downregulation. The same trend was observed in the stressed mice treatment with TAK-242. Further experimental evidences indicated that EP, TAK-242, and RSG treatment notably corrected foam cell formation, HMGB1 release, and down-regulation of LXRα and ABCA1 in CUMS Raw 264.7 macrophage model. These results indicate that CUMS exacerbates atherosclerosis is likely via HMGB1-mediated downregulation of PPARγ/LXRα-ABCA1 through TLR4. These data reveal a novel mechanism by which CUMS aggravates atherosclerosis and may offer a potential therapeutic target for this disease.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6405526PMC
http://dx.doi.org/10.3389/fphys.2019.00165DOI Listing

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