Sepsis Upregulates CD14 Expression in a MyD88-Dependent and Trif-Independent Pathway

Zhixia Chen1, Zhenzhen Shao, Shuya Mei

  • 1*East Hospital, Tongji University School of Medicine, Shanghai, China†Southern Medical University, Guangzhou, China‡University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania.

Insights

Toll-like receptor (TLR) activation upregulates CD14 expression via a MyD88-dependent pathway in sepsis. This pathway is crucial for the inflammatory response and survival, highlighting a key TLR-CD14 interaction in sepsis pathogenesis.

Area of Science:

  • Immunology
  • Molecular Biology
  • Pathophysiology

Background:

  • Sepsis involves an overwhelming immune response, critical for patient survival and organ damage.
  • Toll-like receptors (TLRs) recognize bacterial motifs, initiating immune signaling.
  • CD14 is essential for TLR-dependent pro-inflammatory cytokine production and sepsis progression.

Purpose of the Study:

  • To elucidate the signaling pathway of TLR activation-induced CD14 expression in polymicrobial sepsis.
  • To investigate the roles of MyD88 and TRIF in regulating CD14 expression during sepsis.

Main Methods:

  • Cecal ligation and puncture (CLP) model in mice for polymicrobial sepsis.
  • Primary peritoneal macrophage cultures stimulated with TLR agonists.
  • Analysis of CD14 expression in tissues and macrophages from wild-type, MyD88 knockout (KO), and TRIF KO mice.
  • Inhibition of TRIF signaling using resveratrol.

Main Results:

  • CD14 expression was upregulated in lung, liver, and kidney tissues of septic mice.
  • TLR agonists (except TLR3) increased CD14 expression in peritoneal macrophages.
  • LPS-induced CD14 upregulation was dependent on MyD88 but not TRIF.
  • MyD88 KO mice exhibited decreased CD14 expression, attenuated inflammation, and increased survival rates compared to TRIF KO mice.

Conclusions:

  • TLR activation upregulates CD14 expression through a MyD88-dependent and TRIF-independent pathway in sepsis.
  • This TLR-MyD88-CD14 axis is a critical regulator of the inflammatory response and survival in sepsis.
  • Deciphers a significant cross-talk between TLRs and CD14 in the context of sepsis.