Bone marrow-derived cells repopulate the human peritoneal cavity after allogeneic stem cell transplantation

Abstract In end-stage liver disease, disruption of the gut–liver axis leads to intestinal dysbiosis and impaired barrier function, promoting translocation of bacterial products into the peritoneal cavity and contributing to spontaneous bacterial peritonitis (SBP). The peritoneal cavity harbors a distinct immune landscape dominated by tissue-resident peritoneal macrophages (PMs), which are crucial for pathogen clearance. Severe infections or medical interventions can drastically alter this landscape. While strong evidence from previous studies suggests that PMs originate from infiltrating monocytes, direct experimental proof is still lacking. Here, we studied a patient with allogeneic stem cell transplantation and decompensated cirrhosis. Genetic chimerism enabled tracking of immune cell origin. One year post-transplant, PMs were almost entirely donor-derived yet displayed all features of mature tissue-resident macrophages. A minor fraction of patient-derived small PMs persisted, indicating resilience. Additionally, peritoneal fluid supported macrophage differentiation, underscoring the role of environmental milieu. Our findings provide direct evidence that circulating monocytes can fully replenish PMs.

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Publication Details

Journal
npj gut and liver.
Published
2026-09-30
DOI
https://doi.org/10.1038/s44355-026-00082-y
Primary Topic
Immune cells in cancer
Type
article
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article

Bone marrow-derived cells repopulate the human peritoneal cavity after allogeneic stem cell transplantation

Sven Stengel, Gita Mall, Peter Huppke, Benjamin Giszas et al.
npj gut and liver.
Immune cells in cancer
article

Bone marrow-derived cells repopulate the human peritoneal cavity after allogeneic stem cell transplantation

Sven Stengel, Gita Mall, Peter Huppke, Benjamin Giszas, Stefanie Quickert, Tino Schenk, Juliane Sanft, Arndt Steube, Michael Rooney, Lamia S. Albesais, Philipp Reuken, Andreas Stallmach, Tony Bruns
article en

Abstract

Abstract In end-stage liver disease, disruption of the gut–liver axis leads to intestinal dysbiosis and impaired barrier function, promoting translocation of bacterial products into the peritoneal cavity and contributing to spontaneous bacterial peritonitis (SBP). The peritoneal cavity harbors a distinct immune landscape dominated by tissue-resident peritoneal macrophages (PMs), which are crucial for pathogen clearance. Severe infections or medical interventions can drastically alter this landscape. While strong evidence from previous studies suggests that PMs originate from infiltrating monocytes, direct experimental proof is still lacking. Here, we studied a patient with allogeneic stem cell transplantation and decompensated cirrhosis. Genetic chimerism enabled tracking of immune cell origin. One year post-transplant, PMs were almost entirely donor-derived yet displayed all features of mature tissue-resident macrophages. A minor fraction of patient-derived small PMs persisted, indicating resilience. Additionally, peritoneal fluid supported macrophage differentiation, underscoring the role of environmental milieu. Our findings provide direct evidence that circulating monocytes can fully replenish PMs.

npj gut and liver.Vol. 3(1)
Universitätsklinikum Aachen (DE), Jena University Hospital (DE), RWTH Aachen University (DE)
Life in Land
Openalex Percentile: Top 19%
Immune cells in cancer
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Bone marrow-derived cells repopulate the human peritoneal cavity after allogeneic stem cell transplantation — Sven Stengel, Gita Mall, et al. · npj gut and liver. (2026) | TGRS Research Map | TGRS