Related Experiment Video
Updated: Jun 3, 2025

Postoperative Ileus Murine Model
Published on: July 12, 2024
Large Peritoneal Macrophages Play No Role in the Pathogenesis of Postoperative Ileus Induced by Intestinal
Zheng Wang1, Elodie Modave1, Marcello Delfini1
1Center for Intestinal Neuro-Immune Interactions, Translational Research Center for GI Disorders (TARGID), Department of Chronic Diseases, Metabolism and Ageing, KU Leuven, Leuven, Belgium.
Introduction:
Postoperative ileus (POI) is an iatrogenic disorder marked by temporary impaired gastrointestinal (GI) motility post-abdominal surgery. Surgical handling of the intestine activates resident macrophages (Mfs), leading to inflammatory cytokine release and leukocyte recruitment into the muscularis, which compromises intestinal contractility. The mechanisms behind this activation are unclear. Recent studies suggest peritoneal Mfs, particularly large peritoneal macrophages (LPMs), might play a role in sterile intestinal inflammation by rapidly recruiting to the serosal layer of the gut and aiding in tissue damage resolution.
Methods:
To identify immune cells involved in the early phase of POI, single-cell RNA sequencing (scRNA-seq) was conducted. The migration of LPMs post-surgery was studied using adoptive transfer techniques. LPMs were depleted via intraperitoneal injection of clodronate liposomes. Subsequently, flow cytometry, quantitative PCR (qPCR), and immunofluorescence were performed to assess the impact of LPM depletion and analyze cell populations and inflammatory effects.
Results:
(1) Intestinal manipulation (IM) leads to the accumulation of monocytes, neutrophils, mature Mfs, CD8+ T cells, and LPMs within 2 h post-surgery. (2) Heparin treatment does not affect gut transit or reduce IL-6, IL-1a, and IL-1b expression in the early phase of POI. (3) Depletion of LPMs via clodronate liposome does not prevent monocyte, neutrophil, and Mfs infiltration in the muscularis externa, nor does it improve gut transit or reduce cytokine expression. (4) LPMs migrate to the serosa after IM but do not enter the muscularis externa.
Conclusion And Inferences:
LPMs adhere to the intestinal serosa following intestinal manipulation but do not migrate into the intestinal muscularis or participate in the inflammatory response and delayed transit. Consequently, LPMs are not involved in the pathogenesis of POI.
Insights
Large peritoneal macrophages (LPMs) adhere to the intestinal serosa after surgery but do not contribute to postoperative ileus (POI). These macrophages are not involved in the inflammatory response or delayed gut transit characteristic of POI.
Area of Science:
- Gastroenterology
- Immunology
- Surgical Pathophysiology
Background:
- Postoperative ileus (POI) impairs gastrointestinal motility after abdominal surgery.
- Surgical handling activates macrophages, causing inflammation and reduced intestinal contractility.
- The role of peritoneal macrophages, especially large peritoneal macrophages (LPMs), in POI is unclear.
Purpose of the Study:
- To investigate the involvement of immune cells, particularly LPMs, in the early stages of POI.
- To determine if LPMs migrate into the intestinal wall and contribute to POI pathogenesis.
Main Methods:
- Single-cell RNA sequencing (scRNA-seq) to identify immune cells.
- Adoptive transfer and depletion (clodronate liposomes) of LPMs to study their function.
- Flow cytometry, qPCR, and immunofluorescence to analyze cellular and inflammatory changes.
Main Results:
- Intestinal manipulation rapidly recruits monocytes, neutrophils, macrophages, T cells, and LPMs.
- LPM depletion did not affect immune cell infiltration, gut transit, or cytokine expression.
- LPMs were observed in the serosa but not within the muscularis externa after surgery.
Conclusions:
- LPMs adhere to the intestinal serosa post-surgery but do not infiltrate the muscularis externa.
- LPMs do not participate in the inflammatory response or delayed transit associated with POI.
- Therefore, LPMs are not involved in the pathogenesis of POI.
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