The dual roles of uterine monocytes in regulation of tissue homeostasis throughout reproductive cycles in health and disease

Inflammation occurs during the recurring cycles of tissue degradation, repair and remodeling in the uterus, but the mechanisms by which the immune system contributes to uterine tissue integrity are unclear. We reveal that uterine monocytes have dual roles in both tissue remodeling and inflammation, depending on the reproductive cycle stage. Circulating inflammatory monocytes infiltrated the uterus before their differentiation into proinflammatory or pro-repair macrophages, depending on interferon-γ and transforming growth factor-β, respectively. Human monocyte numbers peaked before the window of implantation, when an inflammatory environment is required for embryo implantation. Uterine monocytes exhibited cytotoxic properties, regulating epithelial cell apoptosis. Bioinformatic analyses of receptor-ligand interactions indicated that monocytes dominated interactions between myeloid cells and fibroblasts. These pathways were disrupted in uterine fibrosis, marked by excess inflammatory monocytes or macrophages and a loss of rhythmicity through reproductive cycles. These data reveal a key role for monocytes and their progeny in the regulation of uterine tissue homeostasis.

Authors

Institutions

Publication Details

Journal
Nature Immunology
Published
2026-09-08
DOI
https://doi.org/10.1038/s41590-026-02651-y
Primary Topic
Reproductive System and Pregnancy
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

The dual roles of uterine monocytes in regulation of tissue homeostasis throughout reproductive cycles in health and disease

Elizabeth R. Mann, Nicholas A. Scott, Felicity K. Hunter, Syed Murtuza Baker et al.
Nature Immunology
Reproductive System and Pregnancy
article

The dual roles of uterine monocytes in regulation of tissue homeostasis throughout reproductive cycles in health and disease

Elizabeth R. Mann, Nicholas A. Scott, Felicity K. Hunter, Syed Murtuza Baker, Stefano Colombo, John Aplin, Gerard J. Graham, Lívia Lacerda Mariano, Lamiya Mohiyiddeen, Jenny Myers, Molly A. Ingersoll, Mariam Lokman, I‐Hsuan Lin, Laurence Pearmain, Ian Donaldson, Yousef Alebrahim, I. Paterson, Daxina Bhatt, Olivia Shorthouse, Olivia Moran, Peter Ruane, Daniel R. Brison, Zohra Amin, Catriona Laverty, Navneet Kaur, Michael Haley, Hannah Morgan, Abdullah Shahzad
article en

Abstract

Inflammation occurs during the recurring cycles of tissue degradation, repair and remodeling in the uterus, but the mechanisms by which the immune system contributes to uterine tissue integrity are unclear. We reveal that uterine monocytes have dual roles in both tissue remodeling and inflammation, depending on the reproductive cycle stage. Circulating inflammatory monocytes infiltrated the uterus before their differentiation into proinflammatory or pro-repair macrophages, depending on interferon-γ and transforming growth factor-β, respectively. Human monocyte numbers peaked before the window of implantation, when an inflammatory environment is required for embryo implantation. Uterine monocytes exhibited cytotoxic properties, regulating epithelial cell apoptosis. Bioinformatic analyses of receptor-ligand interactions indicated that monocytes dominated interactions between myeloid cells and fibroblasts. These pathways were disrupted in uterine fibrosis, marked by excess inflammatory monocytes or macrophages and a loss of rhythmicity through reproductive cycles. These data reveal a key role for monocytes and their progeny in the regulation of uterine tissue homeostasis.

Nature Immunology
Institut Pasteur (FR), Manchester Academic Health Science Centre (GB), University of Manchester (GB), St Mary's Hospital (GB), Manchester University NHS Foundation Trust (GB), Wythenshawe Hospital (GB), St. Mary's Hospital (GB), University of Glasgow (GB)
Wellcome Trust, National Institute for Health and Care Research, Royal Society, University of Manchester, University of Glasgow, Manchester Biomedical Research Centre, Medical Research Council
Good health and well-being
Openalex Percentile: Top 17%
Reproductive System and Pregnancy
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.