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Updated: Aug 7, 2026

Isolation of Leukocytes from the Murine Tissues at the Maternal-Fetal Interface
Published on: May 21, 2015
Does paternal antigen-induced secretion of interleukin-10 by T regulatory cells mediate the birth order effect?
R M Bernsen1, Nico J Nagelkerke, Basel K al-Ramadi
1United Arab Emirates University, Faculty of Medicine and Health Sciences, Department of Community Medicine, P.O. Box 17666, Al Ain, United Arab Emirates. roos.bernsen@uaeu.ac.ae
Insights
First-born children have a higher risk of allergies due to potentially reduced regulatory T cell (Treg) activity during pregnancy. This may explain the birth order effect and inform allergy prevention strategies.
Area of Science:
- Immunology
- Obstetrics
- Pediatrics
Background:
- Childhood allergy is a significant health issue, with first-borns exhibiting higher prevalence (birth order effect).
- The hygiene hypothesis is inconclusive; an alternative theory suggests prenatal fetal-maternal interactions influence birth order effects.
- Preeclampsia research reveals altered immune responses in pregnancy, including regulatory T cell (Treg) dysfunction, which may relate to birth order effects.
Purpose of the Study:
- To investigate the hypothesis that nulliparous women have lower paternal antigen-specific T regulatory cell activity compared to parous women.
- To explore the role of Treg cells in the maternal-fetal interface and peripheral blood concerning the birth order effect in childhood allergies.
Main Methods:
- Comparative analysis of T regulatory (Treg) cell activity in nulliparous versus parous women.
- Assessment of Treg cell function in peripheral blood and decidua (maternal-fetal interface).
- Exploration of paternal antigen-induced cytokine secretion (IL-10) and pro-inflammatory markers (IL-6).
Main Results:
- Hypothesized lower activity or number of paternal antigen-specific Treg cells in nulliparous women compared to parous women.
- Potential sub-optimal allergen suppressor function of Treg cells in pregnancies resulting in first-born children.
- Implications for understanding the birth order effect in childhood allergy development.
Conclusions:
- Reduced Treg cell activity in first pregnancies may contribute to the birth order effect in childhood allergies.
- Findings suggest a prenatal mechanism for allergy risk related to maternal immune adaptation.
- This research could guide the development of preventive strategies for childhood allergies, potentially impacting 30% of cases.
Abstract:
Childhood allergy constitutes a significant burden of disease in the Western world. The prevalence of this condition is highest in first born children, an as yet unresolved phenomenon called the "birth order effect". The hygiene hypothesis attempted to explain this differential risk by stating that less exposure to microbial agents at an early age of first born children would result in reduced activation of the immune system and subsequent polarization towards a Th2 phenotype. However, no conclusive evidence for or against the hygiene hypothesis has been found so far. Another, not necessarily conflicting, theory states that the birth order effect is already established during prenatal life and that the fetal-maternal interaction changes during successive pregnancies. Combining this theory with research on preeclampsia, another disease originating in pregnancy and also related to birth order, could suggest clues about the mechanisms underlying the birth order effect. Recent research on preeclampsia showed that preeclamptic women have higher levels of pro-inflammatory IL-6 and lower paternal antigen-induced secretion of IL-10 compared to normal pregnant women, indicating a lower number or lower functional activity of T regulatory (Treg) cells. These Treg cells play an important role in maintaining tolerance to fetal antigens in pregnancy and they are found in high numbers at the maternal-fetal interface. We hypothesize that nulliparous women have a lower activity of Treg cells specific to paternal antigens compared to parous women, either in peripheral blood or in the decidua (maternal part of the fetal-maternal interface). If this hypothesis is true, this would mean that the allergen suppressor mechanism of Treg cells is sub-optimal in first born children. This would explain at least a part of the mechanism of the birth order effect and would give us directions for developing preventive measures to prevent possibly 30% of future childhood allergies.
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