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Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
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.
Abstract:
Macrophages (Mϕs) play a central role in mucosal immunity by pathogen sensing and instruction of adaptive immune responses. Prior challenge to endotoxin can render Mφs refractory to secondary exposure, suppressing the inflammatory response. Previous studies demonstrated a differential subset-specific sensitivity to endotoxin tolerance (ET), mediated by LPS from the oral pathogen, Porphyromonas gingivalis (PG). The aim of this study was to investigate ET mechanisms associated with Mφ subsets responding to entropathogenic E. coli K12-LPS. M1- and M2-like Mφs were generated in vitro from the THP-1 cell line by differentiation with PMA and Vitamin D3, respectively. This study investigated ET mechanisms induced in M1 and M2 Mφ subsets, by measuring modulation of expression by RT-PCR, secretion of cytokines by sandwich ELISA, LPS receptor, TLR4, as well as endogenous TLR inhibitors, IRAK-M and Tollip by Western blotting. In contrast to PG-LPS tolerisation, E. coli K12-LPS induced ET failed to exhibit a subset-specific response with respect to the pro-inflammatory cytokine, TNFα, whereas exhibited a differential response for IL-10 and IL-6. TNFα expression and secretion was significantly suppressed in both M1- and M2-like Mφs. IL-10 and IL-6, on the other hand, were suppressed in M1s and refractory to suppression in M2s. ET suppressed TLR4 mRNA, but not TLR4 protein, yet induced differential augmentation of the negative regulatory molecules, Tollip in M1 and IRAK-M in M2 Mφs. In conclusion, E. coli K12-LPS differentially tolerises Mφ subsets at the level of anti-inflammatory cytokines, associated with a subset-specific divergence in negative regulators and independent of TLR4 down-regulation.
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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