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Updated: Apr 23, 2026

Isolation and Characterization of Dendritic Cells and Macrophages from the Mouse Intestine
Published on: May 21, 2012
Dynamic changes in macrophage activation and proliferation during the development and resolution of intestinal
Matthew C Little1, Rebecca J M Hurst2, Kathryn J Else2
1Faculty of Life Sciences, University of Manchester, Manchester M13 9PT, United Kingdom matthew.c.little@manchester.ac.uk.
Abstract:
Macrophages (Mφs) accumulate at sites of inflammation, and, because they can assume several functionally distinct states of activation, they can either drive or restrain inflammatory responses. Once believed to depend on the recruitment of blood monocytes, it is now clear that the accumulation of Mφs in some tissues can result from the proliferation of resident Mφs in situ. However, little is known about the proliferation and activation state of Mφ subsets in the gut during the development and resolution of intestinal inflammation. We show that inflammatory Mφs accumulate in the large intestine of mice during the local inflammatory response to infection with the gastrointestinal nematode parasite Trichuris muris. Classically activated Mφs predominate initially (as the inflammation develops) and then, following worm expulsion (as the inflammation resolves), both the resident and inflammatory populations of Mφs become alternatively activated. A small but significant increase in the proliferation of inflammatory Mφs is seen but only during the resolution phase of the inflammatory response following both worm expulsion and the peak in Mφ accumulation. In contrast to recent studies in the pleural and peritoneal cavities, the proliferation of resident and alternatively activated Mφs does not increase during the inflammatory response. Furthermore, in CCR2(-/-) mice, monocyte recruitment to the gut is impeded, and the accumulation of alternatively activated Mφs is greatly reduced. In conclusion, the recruitment of blood monocytes is the principle mechanism of Mφ accumulation in the large intestine. This study provides a novel insight into the phenotype and behavior of intestinal Mφ during infection-driven inflammation.
Insights
Inflammation in the large intestine involves macrophage accumulation, primarily through blood monocyte recruitment. Resident macrophages do not proliferate during this inflammatory response to parasites.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- Macrophages (Mφs) play a dual role in inflammation, either promoting or resolving it.
- While tissue-resident Mφ proliferation can contribute to Mφ accumulation, its role in gut inflammation is unclear.
- Understanding Mφ behavior in the gut during inflammation is crucial.
Purpose of the Study:
- To investigate the proliferation and activation states of intestinal macrophage subsets during parasite-induced inflammation.
- To determine the primary mechanism of macrophage accumulation in the large intestine.
Main Methods:
- Induction of intestinal inflammation in mice using Trichuris muris infection.
- Analysis of macrophage populations, activation states (classical and alternative), and proliferation.
- Utilizing CCR2 knockout mice to assess the role of monocyte recruitment.
Main Results:
- Inflammatory macrophages accumulate in the large intestine during Trichuris muris infection.
- Classically activated Mφs dominate early inflammation, shifting to alternatively activated Mφs during resolution.
- A minor increase in inflammatory Mφ proliferation occurs during resolution, not resident Mφ proliferation.
- CCR2 deficiency significantly reduces monocyte recruitment and alternatively activated Mφ accumulation.
Conclusions:
- Blood monocyte recruitment is the principal driver of macrophage accumulation in the large intestine.
- Intestinal macrophages exhibit distinct activation phenotypes during the development and resolution of inflammation.
- This study offers new insights into intestinal macrophage dynamics during infection-induced inflammation.
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