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Updated: Jun 25, 2026

Isolation of Leukocytes from the Human Maternal-fetal Interface
Published on: May 21, 2015
Temporal changes in myeloid cells in the cervix during pregnancy and parturition
Brenda C Timmons1, Anna-Marie Fairhurst, Mala S Mahendroo
1Department of Obstetrics and Gynecology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Insights
Immune cells, particularly monocytes and eosinophils, increase in the cervix before birth, while neutrophils rise postpartum. Macrophages likely aid in postpartum cervical repair, not initiating labor.
Area of Science:
- Reproductive biology
- Immunology
- Extracellular matrix remodeling
Background:
- Preterm birth is a significant cause of infant morbidity and mortality.
- Cervical remodeling is essential for childbirth and postpartum repair.
- Immune cells, specifically leukocytes, are implicated in regulating cervical changes during parturition.
Purpose of the Study:
- To investigate the role of myeloid immune cells in cervical matrix remodeling.
- To determine the temporal changes and phenotypes of immune cells in the cervix before, during, and after parturition.
- To elucidate the involvement of immune cells in cervical ripening and postpartum repair.
Main Methods:
- Flow cytometry and cell sorting were utilized to analyze immune cell populations.
- Markers of myeloid cell differentiation and activation were assessed.
- Messenger RNA (mRNA) expression of specific genes (e.g., Csfr1) was measured.
Main Results:
- Tissue monocytes and eosinophils increased in the cervix pre-birth, influenced by progesterone.
- Macrophage numbers remained unchanged, but M1 and M2 phenotypes were present.
- Neutrophils increased postpartum, and M2 macrophages showed increased markers during labor/postpartum.
- Cervical immune cell changes were not mirrored in peripheral blood.
Conclusions:
- Myeloid-derived cells do not appear to initiate cervical ripening before birth.
- Macrophages, with diverse M1 and M2 phenotypes, are likely involved in postpartum cervical tissue repair.
- Understanding these immune cell dynamics is crucial for developing interventions against preterm birth.
Abstract:
Preterm birth occurs at a rate of 12.7% in the U.S. and is the primary cause of fetal morbidity in the first year of life as well as the cause of later health problems. Elucidation of mechanisms controlling cervical remodeling is critical for development of therapies to reduce the incidence of prematurity. The cervical extracellular matrix must be disorganized during labor to allow birth, followed by a rapid repair postpartum. Leukocytes infiltrate the cervix before and after birth and are proposed to regulate matrix remodeling during cervical ripening via release of proteolytic enzymes. In the current study, flow cytometry and cell sorting were used to determine the role of immune cells in cervical matrix remodeling before, during, and after parturition. Markers of myeloid cell differentiation and activation were assessed to define phenotype and function. Tissue monocytes and eosinophils increased in the cervix before birth in a progesterone-regulated fashion, whereas macrophage numbers were unchanged. Neutrophils increased in the postpartum period. Increased mRNA expression of Csfr1 and markers of alternatively activated M2 macrophages during labor or shortly postpartum suggest a function of M2 macrophages in postpartum tissue repair. Changes in cervical myeloid cell numbers are not reflected in the peripheral blood. These data along with our previous studies suggest that myeloid-derived cells do not orchestrate processes required for initiation of cervical ripening before birth. Additionally, macrophages with diverse phenotypes (M1 and M2) are present in the cervix and are most likely involved in the postpartum repair of tissue.
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