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Updated: Feb 13, 2026

Isolation of Leukocytes from the Human Maternal-fetal Interface
Published on: May 21, 2015
The immunophenotype of amniotic fluid leukocytes in normal and complicated pregnancies
Nardhy Gomez-Lopez1,2,3, Roberto Romero1,4,5,6, Yi Xu1,2
1Perinatology Research Branch, Division of Obstetrics and Maternal-Fetal Medicine, Division of Intramural Research, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, US Department of Health and Human Services, Bethesda, MD and Detroit, MI, USA.
Insights
Amniotic fluid contains diverse immune cells, including T cells and innate lymphoid cells (ILCs), that change throughout pregnancy. Intra-amniotic infection/inflammation alters most of these immune cell populations.
Area of Science:
- Immunology
- Reproductive Biology
- Perinatology
Background:
- The immune cell composition of amniotic fluid is not well understood.
- Characterizing these cells is crucial for understanding pregnancy health and complications.
Purpose of the Study:
- To determine the immunophenotype of amniotic fluid immune cells during pregnancy.
- To compare amniotic fluid immune cells with peripheral blood cells.
- To investigate how intra-amniotic infection/inflammation affects these cells.
Main Methods:
- Amniotic fluid samples from 57 women (15-40 weeks gestation) were analyzed.
- Samples from 9 women with intra-amniotic infection/inflammation were included.
- Peripheral blood mononuclear cells from 3 healthy adults served as controls.
- Immunophenotyping was performed using flow cytometry.
Main Results:
- Amniotic fluid contains T cells, innate lymphoid cells (ILCs), B cells, NK cells, neutrophils, and monocytes/macrophages.
- T cells and ILCs are abundant in early to mid-pregnancy (15-30 weeks).
- Neutrophils increase with gestation, while monocytes/macrophages appear after 20 weeks.
- Intra-amniotic infection/inflammation increased most immune cells, except ILCs.
Conclusions:
- Amniotic fluid possesses a diverse immune cell population during normal pregnancy.
- This composition dynamically changes throughout gestation.
- Immune cell profiles are altered in the presence of intra-amniotic infection/inflammation, highlighting their role in pregnancy complications.
Problem:
The immune cellular composition of amniotic fluid is poorly understood. Herein, we determined: 1) the immunophenotype of amniotic fluid immune cells during the second and third trimester in the absence of intra-amniotic infection/inflammation; 2) whether amniotic fluid T cells and ILCs display different phenotypical characteristics to that of peripheral cells; and 3) whether the amniotic fluid immune cells are altered in women with intra-amniotic infection/inflammation.
Method Of Study:
Amniotic fluid samples (n = 57) were collected from 15 to 40 weeks of gestation in women without intra-amniotic infection/inflammation. Samples from women with intra-amniotic infection/inflammation were also included (n = 9). Peripheral blood mononuclear cells from healthy adults were used as controls (n = 3). Immunophenotyping was performed using flow cytometry.
Results:
In the absence of intra-amniotic infection/inflammation, the amniotic fluid contained several immune cell populations between 15 and 40 weeks. Among these immune cells: (i) T cells and ILCs were greater than B cells and natural killer (NK) cells between 15 and 30 weeks; (ii) T cells were most abundant between 15 and 30 weeks; (iii) ILCs were most abundant between 15 and 20 weeks; (iv) B cells were scarce between 15 and 20 weeks; yet, they increased and were constant after 20 weeks; (v) NK cells were greater between 15 and 30 weeks than at term; (vi) ILCs expressed high levels of RORγt, CD161, and CD103 (ie, group 3 ILCs); (vii) T cells expressed high levels of RORγt; (viii) neutrophils increased as gestation progressed; and (ix) monocytes/macrophages emerged after 20 weeks and remained constant until term. All of the amniotic fluid immune cells, except ILCs, were increased in the presence of intra-amniotic infection/inflammation.
Conclusion:
The amniotic fluid harbors a diverse immune cellular composition during normal and complicated pregnancies.
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