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Quantification of Monocyte Chemotactic Activity In Vivo and Characterization of Blood Monocyte Derived Macrophages
Published on: August 12, 2019
Monocyte chemotactic protein-1 expression in human preovulatory follicles and ovarian cells
1Department of Obstetrics and Gynecology, Yale University School of Medicine, New Haven, CT 06520-8063, USA. aydin.arici@yale.edu
Abstract:
There is a considerable population of macrophages (5-15% of the cells) within the human ovarian follicle at the time of ovulation. Macrophages are also present within the ovarian stroma, mostly near perifollicular capillaries. We hypothesized that macrophage migration in and around the preovulatory follicle is hormonally regulated and that regulation of macrophage migration occurs through local modulation of monocyte chemotactic protein-1 (MCP-1) that chemoattracts and activates monocytes/macrophages. In this regard, we investigated the expression and regulation of MCP-1 in human follicular fluid and in ovarian stromal and granulosa-lutein cell cultures. The concentration of MCP-1 in follicular fluid samples obtained from women prior to the administration of hCG was (n = 4) 90 +/- 27 (mean +/- S.E.) pg/ml; in samples obtained 12 h after the hCG administration it was (n = 3) 135 +/- 23 pg/mL; in follicular fluids obtained 34 h after the hCG administration it was (n = 126) 322 +/- 46 pg/mL (P = 0.007 vs. pre-hCG). The mean ratio of follicular fluid/serum MCP-1 levels was 4.18. There was a correlation between follicular fluid MCP-1 levels and follicular fluid or serum progesterone levels (r = 0.21, P = 0.02; r = 0.29, P = 0.03, respectively). MCP-1 mRNA and the protein were expressed in ovarian stromal and granulosalutein cells in culture and were increased by interleukin-1 alpha and tumor necrosis factor-alpha in a time- and concentration-dependent manner. LH/hCG induced higher levels of MCP-1 mRNA expression and protein production in both cell cultures. We propose that regulation of MCP-1 in ovarian stromal and granulosa-lutein cells by cytokines may play a role in the physiology of periovulatory events.
Insights
Hormones regulate macrophage migration in the ovary by controlling monocyte chemotactic protein-1 (MCP-1). This protein is crucial for ovulation and is influenced by cytokines and LH/hCG signaling in ovarian cells.
Area of Science:
- Reproductive Biology
- Immunology
- Endocrinology
Background:
- Macrophages are abundant in human ovarian follicles during ovulation.
- Macrophage presence is noted in the ovarian stroma near capillaries.
- Hypothesis: Hormonal regulation of macrophage migration involves local monocyte chemotactic protein-1 (MCP-1) modulation.
Purpose of the Study:
- Investigate MCP-1 expression and regulation in human follicular fluid.
- Examine MCP-1 regulation in ovarian stromal and granulosa-lutein cell cultures.
- Determine the role of MCP-1 in periovulatory events.
Main Methods:
- Quantified MCP-1 levels in follicular fluid at different time points relative to hCG administration.
- Analyzed MCP-1 levels in relation to progesterone.
- Assessed MCP-1 mRNA and protein expression in cultured ovarian cells.
- Investigated the effect of cytokines (IL-1α, TNF-α) and LH/hCG on MCP-1 production.
Main Results:
- MCP-1 concentration in follicular fluid significantly increased post-hCG administration.
- Follicular fluid MCP-1 levels correlated with progesterone levels.
- Ovarian stromal and granulosa-lutein cells express MCP-1, with increased production stimulated by IL-1α, TNF-α, and LH/hCG.
- LH/hCG significantly upregulated MCP-1 mRNA and protein in both cell types.
Conclusions:
- Local regulation of MCP-1 by cytokines and LH/hCG in ovarian cells is implicated in periovulatory physiology.
- MCP-1 plays a key role in mediating macrophage migration during human ovulation.
- Hormonal control of MCP-1 is a significant factor in the ovulatory process.
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