Bacterial reprogramming of PBMCs impairs monocyte phagocytosis and modulates adaptive T cell responses

Maya C André1, Christian Gille, Philip Glemser

  • 1Department of Neonatology, University Children’s Hospital, Tuebingen, Germany. maya.andre@med.uni-tuebingen.de

Insights

Sepsis alters monocyte function, impairing their ability to engulf bacteria. This reprogramming, crucial for fighting secondary infections, highlights monocyte phagocytosis as a potential sepsis biomarker.

Area of Science:

  • Immunology
  • Cell Biology
  • Infectious Diseases

Background:

  • Sepsis involves a proinflammatory phase followed by anti-inflammation, during which monocytes exhibit hyporesponsiveness.
  • This monocyte dysfunction, including reduced TNF secretion and T cell stimulation, may hinder secondary infection clearance.

Purpose of the Study:

  • To investigate the functional reprogramming of peripheral blood mononuclear cell (PBMC)-derived monocytes in a sepsis model.
  • To specifically characterize the phagocytic activity of these reprogrammed monocytes.

Main Methods:

  • A surrogate model of early post-sepsis was created by exposing PBMCs to Escherichia coli, followed by rechallenge.
  • Monocyte phagocytosis, T cell stimulation, FcγR and SR expression, and T helper 17 (TH17) polarization were analyzed.

Main Results:

  • Bacterial exposure induced a monocyte phenotype with significantly impaired phagocytic activity but preserved naïve T cell stimulation.
  • Phagocytic impairment was specific to bacteria, required bacterial presence, and involved down-regulation of FcγR and SR.
  • This altered monocytic phenotype promoted a TH17-polarized adaptive immune response.

Conclusions:

  • Monocyte reprogramming during sepsis profoundly affects their phagocytic capacity.
  • The selective down-regulation of phagocytosis and its link to TH17 polarization offer new insights into sepsis pathogenesis.
  • Monocyte phagocytic function emerges as a potential biomarker for sepsis.