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12/15-Lipoxygenase regulates the inflammatory response to bacterial products in vivo
Vincent Dioszeghy1, Marcela Rosas, Benjamin H Maskrey
1Department of Medical Biochemistry and Immunology, School of Medicine, Cardiff University, Cardiff, United Kingdom.
Abstract:
The peritoneal macrophage (Mphi) is the site of greatest 12/15-lipoxygenase (12/15-LOX) expression in the mouse; however, its immunoregulatory role in this tissue has not been explored. Herein, we show that 12/15-LOX is expressed by 95% of resident peritoneal CD11b(high) cells, with the remaining 5% being 12/15-LOX(-). 12/15-LOX(+) cells are phenotypically defined by high F4/80, SR-A, and Siglec1 expression, and enhanced IL-10 and G-CSF generation. In contrast, 12/15-LOX(-) cells are a dendritic cell population. Resident peritoneal Mphi numbers were significantly increased in 12/15-LOX(-/-) mice, suggesting alterations in migratory trafficking or cell differentiation in vivo. In vitro, Mphi from 12/15-LOX(-/-) mice exhibit multiple abnormalities in the regulation of cytokine/growth factor production both basally and after stimulation with Staphylococcus epidermidis cell-free supernatant. Resident adherent cells from 12/15-LOX(-/-) mice generate more IL-1, IL-3, GM-CSF, and IL-17, but less CCL5/RANTES than do cells from wild-type mice, while Staphylococcus epidermidis cell-free supernatant-elicited 12/15-LOX(-/-) adherent cells release less IL-12p40, IL-12p70, and RANTES, but more GM-CSF. This indicates a selective effect of 12/15-LOX on peritoneal cell cytokine production. In acute sterile peritonitis, 12/15-LOX(+) cells and LOX products were cleared, then reappeared during the resolution phase. The peritoneal lavage of 12/15-LOX(-/-) mice showed elevated TGF-beta1, along with increased immigration of monocytes/Mphi, but decreases in several cytokines including RANTES/CCL5, MCP-1/CCL2, G-CSF, IL-12-p40, IL-17, and TNF-alpha. No changes in neutrophil or lymphocyte numbers were seen. In summary, endogenous 12/15-LOX defines the resident MPhi population and regulates both the recruitment of monocytes/Mphi and cytokine response to bacterial products in vivo.
Insights
Endogenous 12/15-lipoxygenase (12/15-LOX) defines resident peritoneal macrophages and controls their cytokine response. Mice lacking 12/15-LOX show altered macrophage recruitment and cytokine profiles, impacting immune responses.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Peritoneal macrophages (Mphi) are key immune cells in the peritoneum.
- 12/15-lipoxygenase (12/15-LOX) is highly expressed in peritoneal Mphi, but its role is unexplored.
- Resident peritoneal Mphi are a distinct population with unique functional characteristics.
Purpose of the Study:
- To investigate the immunoregulatory role of 12/15-LOX in peritoneal macrophages.
- To characterize the Mphi population expressing 12/15-LOX.
- To determine the impact of 12/15-LOX deficiency on peritoneal immune cell function and cytokine production.
Main Methods:
- Flow cytometry to identify and phenotype peritoneal cells.
- Gene knockout mouse models (12/15-LOX-/-) to study Mphi function in vitro and in vivo.
- Cytokine and growth factor analysis using cell culture and peritoneal lavage fluid.
- Induction of sterile peritonitis to assess immune response dynamics.
Main Results:
- 12/15-LOX is expressed by 95% of resident peritoneal CD11b(high) Mphi, which are characterized by high F4/80, SR-A, Siglec1, and enhanced IL-10/G-CSF production.
- Mphi from 12/15-LOX-/- mice exhibit dysregulated cytokine production, with increased IL-1, IL-3, GM-CSF, IL-17, and decreased CCL5/RANTES basally.
- In sterile peritonitis, 12/15-LOX-/- mice show elevated TGF-beta1, increased monocyte/Mphi immigration, and reduced levels of multiple cytokines (CCL5, CCL2, G-CSF, IL-12p40, IL-17, TNF-alpha).
Conclusions:
- Endogenous 12/15-LOX is crucial for defining the resident peritoneal Mphi population.
- 12/15-LOX regulates monocyte/Mphi recruitment into the peritoneal cavity.
- The enzyme selectively modulates cytokine responses to bacterial products and contributes to the resolution of sterile peritonitis.
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