The role of programmed death ligand 1 pathway in persistent biomaterial-associated infections

Agnieszka Magryś1, Jolanta Paluch-Oleś, Agnieszka Bogut

  • 1Chair and Department of Medical Microbiology, Medical University of Lublin, ul. Chodźki 1, 20-093, Lublin, Poland, agnieszka.magrys@umlub.pl.

Insights

Staphylococcus epidermidis small colony variants (SCVs) persist within macrophages, upregulating PD-L1 and suppressing inflammation. This intracellular survival and immune evasion contribute to chronic infections.

Area of Science:

  • Microbiology
  • Immunology
  • Infectious Diseases

Background:

  • Staphylococcus epidermidis frequently causes biomaterial-associated infections.
  • Bacterial small colony variants (SCVs) are adept at intracellular persistence within phagocytes, evading immune detection.

Purpose of the Study:

  • To investigate the expression of PD-L1/L2 on macrophages infected with S. epidermidis SCV and wild-type (WT) strains.
  • To analyze the cytokine patterns triggered by these S. epidermidis strains.

Main Methods:

  • Macrophages were infected with S. epidermidis WT and SCV strains.
  • Bacterial persistence was assessed using lysostaphin protection assays.
  • PD-L1/L2 expression was quantified by flow cytometry (FACS), and cytokine levels (IL-10, TNF-α) were measured via ELISA.

Main Results:

  • S. epidermidis SCV isolates persisted intracellularly in macrophages for at least 3 days, exhibiting lower cytotoxicity and reduced pro-inflammatory responses compared to WT strains.
  • SCV infection led to increased PD-L1/L2 expression on macrophages.
  • Elevated IL-10 and suppressed TNF-α transcriptional induction were observed in SCV-infected macrophages.

Conclusions:

  • S. epidermidis SCVs' ability to persist intracellularly, upregulate PD-L1 on macrophages, and induce an anti-inflammatory cytokine profile (IL-10) while suppressing TNF-α contributes to the chronicity of infections.
  • These mechanisms highlight SCVs' adaptation for immune evasion and long-term survival within host cells.

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