Macrophage subsets exhibit distinct E. coli-LPS tolerisable cytokines associated with the negative regulators, IRAK-M

Khalid Al-Shaghdali1,2, Barbara Durante1, Christopher Hayward3

  • 1School of Biomedical Sciences, Faculty of Medicine & Dentistry, University of Plymouth, Drake Circus, Plymouth, United Kingdom.

Plos One
|May 24, 2019
PubMed

Insights

E. coli K12 lipopolysaccharide (LPS) induces endotoxin tolerance (ET) differently in macrophage subsets. This study reveals subset-specific regulation of anti-inflammatory cytokines and negative regulators, independent of TLR4.

Area of Science:

  • Immunology
  • Cell Biology
  • Microbiology

Background:

  • Macrophages are crucial for mucosal immunity, sensing pathogens and directing adaptive responses.
  • Endotoxin tolerance (ET) can suppress inflammatory responses upon secondary LPS exposure.
  • Previous research indicated subset-specific ET sensitivity to LPS from Porphyromonas gingivalis.

Purpose of the Study:

  • To investigate ET mechanisms in M1 and M2 macrophage subsets in response to E. coli K12 LPS.
  • To determine how E. coli K12 LPS affects cytokine secretion, TLR4 expression, and negative regulators in different macrophage subsets.

Main Methods:

  • Generation of M1 and M2-like macrophages in vitro from THP-1 cells.
  • Measurement of gene expression (RT-PCR), cytokine secretion (ELISA), and protein levels (Western blotting) of TLR4, IRAK-M, and Tollip.
  • Induction of endotoxin tolerance using E. coli K12 LPS.

Main Results:

  • E. coli K12 LPS-induced ET suppressed TNFα in both M1 and M2 macrophages.
  • IL-10 and IL-6 were suppressed in M1 macrophages but remained refractory to suppression in M2 macrophages.
  • ET suppressed TLR4 mRNA but not protein, and differentially augmented Tollip in M1s and IRAK-M in M2s.

Conclusions:

  • E. coli K12 LPS induces differential endotoxin tolerance in macrophage subsets at the level of anti-inflammatory cytokines.
  • This differential tolerance is linked to subset-specific regulation of negative regulators (Tollip, IRAK-M).
  • The observed effects are independent of TLR4 down-regulation.

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