Related Experiment Video
Updated: Aug 9, 2026

Isolation of Primary Mouse Trophoblast Cells and Trophoblast Invasion Assay
Published on: January 8, 2012
Paracrine regulation of distinct trophoblast functions in vitro by placental macrophages
M Cervar1, A Blaschitz, G Dohr
1Department of Obstetrics and Gynecology, Karl Franzens University of Graz, Auenbruggerplatz 14, A-8036 Graz, Austria.
Abstract:
In view of the accumulating evidence for paracrine mechanisms regulating trophoblast function, we tested the hypothesis that placental macrophages affect trophoblast activity in a paracrine fashion. Trophoblast was isolated from 17 term placentas (-IP). One aliquot of cells was further immunopurified (+IP) using an HLA class I antibody. This increased the proportion of trophoblast (+IP >97%; -IP approximately 70%) as identified by rigorous immunocytochemistry. Most (approximately 70%) non-trophoblast cells in -IP were macrophages. The cells were cultured for 5 days with a daily medium change. In addition, +IP cells from seven placentas were cultured with lipopolysaccharide (LPS)-stimulated or -unstimulated macrophage-conditioned media. The concentrations of lactate, trophoblast-specific hormones, human chorionic gonadotropin-beta (hCG-beta) and human placental lactogen (hPL), of several prostanoids and of endothelin-1 and angiotensin II were determined in the culture media. The accumulated amounts of substances released into the culture media, corrected for the greater proportion of trophoblast in +IP cultures, were on average two- to threefold higher (hCG-beta: 18-fold) in +IP than in -IP, with the exception of endothelin-1,2 (no change), angiotensin II (-70%) and 6-keto-prostaglandin-F1alpha (-40%). [3H]leucine incorporation into the trichloroacetic acid (TCA)-precipitable pool measured on day 5 was twofold higher in +IP than in -IP. Addition of conditioned media reverted these changes. The data demonstrate that placental macrophages in culture affect trophoblast biosynthetic activity in a paracrine fashion. We conclude that macrophages are important regulators of trophoblast activity.
Insights
Placental macrophages influence trophoblast activity through paracrine signaling. This study shows macrophages are key regulators of trophoblast function, impacting hormone production and biosynthesis.
Area of Science:
- Reproductive biology
- Immunology
- Cell biology
Background:
- Paracrine mechanisms are increasingly recognized for their role in regulating trophoblast function.
- Understanding the specific interactions between placental cells is crucial for comprehending pregnancy physiology.
Purpose of the Study:
- To investigate the hypothesis that placental macrophages modulate trophoblast activity via paracrine signaling.
- To elucidate the specific effects of placental macrophages on trophoblast biosynthetic activity.
Main Methods:
- Isolation and immunopurification of trophoblast cells from term placentas.
- Culture of trophoblast cells with and without placental macrophages, and with macrophage-conditioned media.
- Measurement of secreted substances (hormones, prostanoids, vasoactive peptides) and protein synthesis ([3H]leucine incorporation).
Main Results:
- Purified trophoblast cells (+IP) showed significantly higher release of substances like hCG-beta (18-fold) and hPL compared to less purified cells (-IP).
- Protein synthesis was twofold higher in purified trophoblast cultures.
- Macrophage-conditioned media partially reversed the observed differences, indicating paracrine effects.
Conclusions:
- Placental macrophages exert a paracrine influence on trophoblast biosynthetic activity.
- Macrophages are identified as critical regulators of trophoblast function.
- These findings highlight the importance of cell-cell communication in placental development and function.

