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Updated: Oct 1, 2025

Establishment of an Experimental Mouse Model of Endometrioma to Study its Related Infertility
Published on: April 5, 2024
CSF-1-induced DC-SIGN+ macrophages are present in the ovarian endometriosis
Li Xiaocui1, Hong Wei1, Cai Yunlang2
1Department of Obstetrics and Gynecology, Shanghai First Maternity and Infant Hospital, Tongji University School of Medicine, Shanghai, 201204, P.R. China.
Background:
Researchers have found that macrophages are the predominant cells in the peritoneal fluid (PF) of endometriosis patients. CSF-1 has been found to accumulate in the lesions and PF of endometriosis patients, and CSF-1 induces THP-1-derived macrophages to polarize toward a CD169+ DC-SIGN+ phenotype. Does the cytokine CSF-1 induce monocytes to differentiate into macrophages with a DC-SIGN+ phenotype in endometriosis?
Methods:
The level of CSF-1 in the endometrium of control subjects, and the eutopic, and ectopic endometrium of endometriosis patients was evaluated by real-time polymerase chain reaction (qRT-PCR) and was determined by enzyme-linked immunosorbent assay (ELISA) in the PF of control and endometriosis patients. CSF-1 expression was examined with a MILLIPLEX MAP Mouse Cytokine/Chemokine Magnetic Bead Panel. DC-SIGN+ macrophages were detected by immunohistochemical staining of tissues and flow cytometric analysis of the PF of control subjects (N = 25) and endometriosis (N = 35) patients. The phenotypes and biological activities of CSF-1 -induced macrophages were compared in an in vitro coculture system with peripheral blood lymphocytes from control subjects.
Results:
In this study, we found that the proportion of DC-SIGN+ CD169+ macrophages was higher in the abdominal immune microenvironment of endometriosis patients. CSF-1 was primarily secreted from ectopic lesions and peritoneum in mice with endometriosis. In addition, CSF-1 induced the polarization of macrophages toward a DC-SIGN+ CD169+ phenotype; this effect was abolished by the addition of an anti-CSF-1R antibody. CSF-1 induced the generation of DC-SIGN+ macrophages, leading to a depressed status of peripheral blood lymphocytes, including a high percentage of Treg cells and a low percentage of CD8+ T cells. Similarly, blockade with the anti-CSF-1R antibody abrogated this biological effect.
Conclusions:
This is the first study on the role of DC-SIGN+ macrophages in the immune microenvironment of endometriosis. Further study of the mechanism and biological activities of CSF-1-induced DC-SIGN+ macrophages will enhance our understanding of the physiology of endometriosis.
Insights
Colony-stimulating factor 1 (CSF-1) drives the development of specific macrophages in endometriosis, impacting immune cell balance. This cytokine
Area of Science:
- Immunology
- Reproductive Biology
- Cell Biology
Background:
- Macrophages are the predominant cells in the peritoneal fluid of endometriosis patients.
- Colony-stimulating factor 1 (CSF-1) accumulates in endometriosis lesions and peritoneal fluid.
- CSF-1 influences macrophage polarization towards a CD169+ DC-SIGN+ phenotype.
Purpose of the Study:
- To investigate if CSF-1 induces monocyte differentiation into DC-SIGN+ macrophages in endometriosis.
- To explore the role of CSF-1 in shaping the immune microenvironment of endometriosis.
Main Methods:
- Quantified CSF-1 levels in endometrial and peritoneal fluid samples using qRT-PCR and ELISA.
- Examined CSF-1 expression via MILLIPLEX MAP Mouse Cytokine/Chemokine Magnetic Bead Panel.
- Detected DC-SIGN+ macrophages using immunohistochemistry and flow cytometry.
- Assessed CSF-1-induced macrophage phenotypes and biological activities in vitro.
Main Results:
- A higher proportion of DC-SIGN+ CD169+ macrophages were found in the peritoneal fluid of endometriosis patients.
- CSF-1, primarily secreted from ectopic lesions, induced macrophage polarization to a DC-SIGN+ CD169+ phenotype.
- CSF-1-induced macrophages led to suppressed peripheral blood lymphocytes, including increased Treg cells and decreased CD8+ T cells.
- Blocking CSF-1 receptor (CSF-1R) with an antibody abrogated these effects.
Conclusions:
- This study is the first to examine the role of DC-SIGN+ macrophages in the endometriosis immune microenvironment.
- CSF-1 plays a significant role in macrophage differentiation and immune modulation in endometriosis.
- Further research into CSF-1-induced DC-SIGN+ macrophages can advance understanding of endometriosis pathophysiology.
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