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Fluorescence-mediated Tomography for the Detection and Quantification of Macrophage-related Murine Intestinal Inflammation
Published on: December 15, 2017
Hemophagocytic macrophages in murine typhoid fever have an anti-inflammatory phenotype
Melissa W McCoy1, Sarah M Moreland, Corrella S Detweiler
1Department of Molecular Cellular and Developmental Biology, University of Colorado Boulder, Boulder, Colorado, USA.
Abstract:
Histiocytes are white blood cells of the monocytic lineage and include macrophages and dendritic cells. In patients with a variety of infectious and noninfectious inflammatory disorders, histiocytes can engulf nonapoptotic leukocytes and nonsenescent erythrocytes and thus become hemophagocytes. We report here the identification and characterization of splenic hemophagocytes in a natural model of murine typhoid fever. The development of a flow-cytometric method allowed us to identify hemophagocytes based on their greater than 6N (termed 6N+) DNA content. Characterization of the 6N+ population from infected mice showed that these cells consist primarily of macrophages rather than dendritic cells and contain T lymphocytes, consistent with hemophagocytosis. Most 6N+ macrophages from Salmonella enterica serovar Typhimurium-infected mice contain intact DNA, consistent with hemophagocytosis. In contrast, most 6N+ macrophages from control mice or mice infected with a different bacterial pathogen, Yersinia pseudotuberculosis, contain damaged DNA. Finally, 6N+ splenic macrophages from S. Typhimurium-infected mice express markers consistent with an anti-inflammatory M2 activation state rather than a classical M1 activation state. We conclude that macrophages are the predominant splenic hemophagocyte in this disease model but not in Y. pseudotuberculosis-infected mice. The anti-inflammatory phenotype of hemophagocytic macrophages suggests that these cells contribute to the shift from acute to chronic infection.
Insights
Splenic macrophages become hemophagocytes during Salmonella Typhimurium infection, engulfing cells with intact DNA. These anti-inflammatory macrophages may prolong infection, unlike in Yersinia infections.
Area of Science:
- Immunology
- Cell Biology
Background:
- Histiocytes, including macrophages and dendritic cells, are key immune cells.
- Hemophagocytes engulf blood cells during inflammatory conditions.
- Murine typhoid fever provides a model to study hemophagocytosis.
Purpose of the Study:
- To identify and characterize splenic hemophagocytes in a murine model of Salmonella Typhimurium infection.
- To investigate the phenotype and DNA content of hemophagocytic macrophages.
Main Methods:
- Development of a flow-cytometric method to identify hemophagocytes (6N+ DNA content).
- Analysis of splenic cell populations from Salmonella Typhimurium-infected mice.
- Characterization of macrophage activation states (M1 vs. M2).
Main Results:
- Hemophagocytes in Salmonella-infected mice were primarily macrophages, not dendritic cells.
- These macrophages contained intact DNA, suggesting active phagocytosis.
- Salmonella-induced hemophagocytic macrophages exhibited an anti-inflammatory M2 phenotype.
Conclusions:
- Macrophages are the predominant splenic hemophagocytes during Salmonella Typhimurium infection.
- The anti-inflammatory nature of these cells may contribute to the transition from acute to chronic infection.
- Hemophagocyte characteristics differ between Salmonella and Yersinia infections.

