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Updated: Apr 29, 2026

Isolation of Leukocytes from the Human Maternal-fetal Interface
Published on: May 21, 2015
A new role for monocytes in modulating myometrial inflammation during human labor
Khetsopon Srikhajon1, Oksana Shynlova2, Anyarin Preechapornprasert3
1Faculty of Science, Mahidol University, Bangkok, Thailand.
Insights
Monocytes are recruited to the uterus during labor by cytokines. Activated monocytes then limit their own accumulation by disrupting cytokine gradients, preventing excessive inflammation and promoting healing.
Area of Science:
- Reproductive immunology
- Myometrial physiology
- Inflammatory signaling
Background:
- Labor involves complex immune cell interactions within the myometrium.
- Cytokine profiles during labor are not fully understood.
- Monocyte regulation of uterine inflammation is a key area of investigation.
Purpose of the Study:
- To characterize the cytokine profile of laboring human myometrium.
- To investigate the role of monocytes in regulating myometrial inflammation during labor.
- To elucidate the mechanism by which monocytes control their accumulation in the uterus.
Main Methods:
- Luminex analysis of 48 cytokine proteins in laboring myometrium.
- Stereological quantification of monocyte and neutrophil infiltration.
- Co-culture of human myometrial cells with monocytic (THP-1) and lymphocytic (U937) cells.
- Quantitative PCR, Luminex assay, and ELISA for molecular analysis.
Main Results:
- Laboring myometrium shows elevated levels of IL-6, IL-9, IL-18, IL-1RA, CCL2, CCL7, CXCL8, CSF3, and TNF-alpha.
- Direct contact with THP-1 monocytes reduced CCL2 and increased IL-1RA secretion by myometrial cells.
- Monocyte-myometrial cell contact inversely correlated with CCL2 levels, suggesting a regulatory mechanism.
Conclusions:
- Monocytes are recruited to the myometrium by various cytokines, contributing to labor's inflammatory state.
- Activated monocytes may limit their own accumulation by disrupting CCL2 gradients via CCR2-mediated consumption.
- This represents a novel negative feedback loop controlling uterine inflammation and promoting postpartum homeostasis.
Abstract:
Here we fully characterize the cytokine profile of laboring human myometrium using Luminex analysis of 48 cytokine proteins, and stereologically quantified infiltration of monocytes and neutrophils into the myometrium. We hypothesized that monocytes can regulate their accumulation in the myometrium by disruption of proinflammatory cytokines to prevent an uncontrolled inflammatory response after labor onset. We isolated primary human myometrial cells (HMCs) from term, nonlaboring myometrial biopsies. Confluent HMCs were cocultured directly with human monocytic (THP-1) or lymphocytic (U937) cells, and with the same cells spatially separated by a membrane insert. After 72 h, HMCs and THP-1 were harvested separately, and RNA was extracted and analyzed by quantitative PCR. Coculture supernatants were collected and analyzed by Luminex assay and ELISA. We found that the laboring human myometrium produces significantly higher amounts of interleukin (IL) 6, IL9, IL18, IL1RA, CCL2, CCL7, CXCL8, CSF3, and tumor necrosis factor alpha, which coincides with the influx of immune cells. The direct contact or presence of THP-1 monocytes (but not U937 cells) significantly decreased CCL2 protein levels and increased IL1RA protein levels secreted by HMCs. This time-dependent decrease of CCL2 was greater with increasing number of monocytes being in direct contact with HMCs. We suggest a novel mechanism by which monocytes are first recruited to the myometrium by multiple cytokines and contribute to the physiologic inflammation of labor. After completing transmigration, activated monocytes disrupt locally established CCL2 gradients (possible by CCR2-mediated consumption) to limit their accumulation in the uterus. This mechanism may serve as a negative feedback loop to control the local inflammation and promote a return to homeostasis.
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